create a website

The relevance of biomass‐based gases as energy carriers: A review. (2024). Harasek, Michael ; Ajanovic, Amela ; Radosits, Frank K.
In: Wiley Interdisciplinary Reviews: Energy and Environment.
RePEc:bla:wireae:v:13:y:2024:i:4:n:e527.

Full description at Econpapers || Download paper

Cited: 0

Citations received by this document

Cites: 162

References cited by this document

Cocites: 57

Documents which have cited the same bibliography

Coauthors: 0

Authors who have wrote about the same topic

Citations

Citations received by this document

    This document has not been cited yet.

References

References cited by this document

  1. Abdalla, N., Bürck, S., Fehrenbach, H., Köppen, S., & Janosch Staigl, T. (2022). Biomethane in Europe. IfEU—Institut für Energie‐und Umweltforschung Heidelberg gGmbH.
    Paper not yet in RePEc: Add citation now
  2. Ahlström, J. M., Walter, V., Göransson, L., & Papadokonstantakis, S. (2022). The role of biomass gasification in the future flexible power system—BECCS or CCU? Renewable Energy, 190, 596–605. https://doi.org/10.1016/j.renene.2022.03.100.

  3. Ahmadvand, S., & Sowlati, T. (2023). The attractiveness of syngas production from forest‐based biomass for pulp mills considering carbon pricing and government regulations. Renewable Energy Focus, 45, 287–306. https://doi.org/10.1016/j.ref.2023.04.007.
    Paper not yet in RePEc: Add citation now
  4. Ajanovic, A., & Haas, R. (2021). Prospects and impediments for hydrogen and fuel cell vehicles in the transport sector. International Journal of Hydrogen Energy, 46(16), 10049–10058. https://doi.org/10.1016/j.ijhydene.2020.03.122.
    Paper not yet in RePEc: Add citation now
  5. Akbarian, A., Andooz, A., Kowsari, E., Ramakrishna, S., Asgari, S., & Cheshmeh, Z. A. (2022). Challenges and opportunities of lignocellulosic biomass gasification in the path of circular bioeconomy. Bioresource Technology, 362, 127774. https://doi.org/10.1016/j.biortech.2022.127774.
    Paper not yet in RePEc: Add citation now
  6. Al‐Qahtani, A., Parkinson, B., Hellgardt, K., Shah, N., & Guillen‐Gosalbez, G. (2021). Uncovering the true cost of hydrogen production routes using life cycle monetisation. Applied Energy, 281, 115958. https://doi.org/10.1016/j.apenergy.2020.115958.

  7. Allen, E., Browne, J., Hynes, S., & Murphy, J. D. (2013). The potential of algae blooms to produce renewable gaseous fuel. Waste Management, 33(11), 2425–2433. https://doi.org/10.1016/j.wasman.2013.06.017.
    Paper not yet in RePEc: Add citation now
  8. Amanatidis, G. (2019). European policies on climate and energy towards 2020, 2030 and 2050—Think Tank. https://www.europarl.europa.eu/thinktank/en/document.html?reference=IPOL_BRI(2019)631047.
    Paper not yet in RePEc: Add citation now
  9. Amato, A., Tsigkou, K., Becci, A., Beolchini, F., Ippolito, N. M., & Ferella, F. (2023). Life ecycle assessment of biomethane vs. fossil methane production and supply. Energies, 16(12), 12. https://doi.org/10.3390/en16124555.

  10. Anca‐Couce, A., Hochenauer, C., & Scharler, R. (2021). Bioenergy technologies, uses, market and future trends with Austria as a case study. Renewable and Sustainable Energy Reviews, 135, 110237. https://doi.org/10.1016/j.rser.2020.110237.
    Paper not yet in RePEc: Add citation now
  11. Andreides, D., Fliegerova, K. O., Pokorna, D., & Zabranska, J. (2022). Biological conversion of carbon monoxide and hydrogen by anaerobic culture: Prospect of anaerobic digestion and thermochemical processes combination. Biotechnology Advances, 58, 107886. https://doi.org/10.1016/j.biotechadv.2021.107886.
    Paper not yet in RePEc: Add citation now
  12. Ardolino, F., & Arena, U. (2019). Biowaste‐to‐Biomethane: An LCA study on biogas and syngas roads. Waste Management, 87, 441–453. https://doi.org/10.1016/j.wasman.2019.02.030.
    Paper not yet in RePEc: Add citation now
  13. Arena, U., Di Gregorio, F., & Santonastasi, M. (2010). A techno‐economic comparison between two design configurations for a small scale, biomass‐to‐energy gasification based system. Chemical Engineering Journal, 162(2), 580–590. https://doi.org/10.1016/j.cej.2010.05.067.
    Paper not yet in RePEc: Add citation now
  14. Arpia, A. A., Nguyen, T.‐B., Chen, W.‐H., Dong, C.‐D., & Ok, Y. S. (2022). Microwave‐assisted gasification of biomass for sustainable and energy‐efficient biohydrogen and biosyngas production: A state‐of‐the‐art review. Chemosphere, 287, 132014. https://doi.org/10.1016/j.chemosphere.2021.132014.
    Paper not yet in RePEc: Add citation now
  15. Assunção, L. R. C., Mendes, P. A. S., Matos, S., & Borschiver, S. (2021). Technology roadmap of renewable natural gas: Identifying trends for research and development to improve biogas upgrading technology management. Applied Energy, 292, 116849. https://doi.org/10.1016/j.apenergy.2021.116849.

  16. Auer, A., Burgt, N. H. V., Abram, F., Barry, G., Fenton, O., Markey, B. K., Nolan, S., Richards, K., Bolton, D., Waal, T. D., Gordon, S. V., O'Flaherty, V., Whyte, P., & Zintl, A. (2017). Agricultural anaerobic digestion power plants in Ireland and Germany: Policy and practice. Journal of the Science of Food and Agriculture, 97(3), 719–723. https://doi.org/10.1002/jsfa.8005.
    Paper not yet in RePEc: Add citation now
  17. Awasthi, M. K., Sarsaiya, S., Wainaina, S., Rajendran, K., Awasthi, S. K., Liu, T., Duan, Y., Jain, A., Sindhu, R., Binod, P., Pandey, A., Zhang, Z., & Taherzadeh, M. J. (2021). Techno‐economics and life‐cycle assessment of biological and thermochemical treatment of bio‐waste. Renewable and Sustainable Energy Reviews, 144, 110837. https://doi.org/10.1016/j.rser.2021.110837.
    Paper not yet in RePEc: Add citation now
  18. Baena‐Moreno, F. M., Gonzalez‐Castaño, M., Arellano‐García, H., & Reina, T. R. (2021). Exploring profitability of bioeconomy paths: Dimethyl ether from biogas as case study. Energy, 225, 120230. https://doi.org/10.1016/j.energy.2021.120230.

  19. Bagnoud‐Velásquez, M., Refardt, D., Vuille, F., & Ludwig, C. (2015). Opportunities for Switzerland to contribute to the production of algal biofuels: The hydrothermal pathway to bio‐methane. Chimia International Journal for Chemistry, 69(10), 614–621. https://doi.org/10.2533/chimia.2015.614.
    Paper not yet in RePEc: Add citation now
  20. Bakkaloglu, S., Cooper, J., & Hawkes, A. (2022). Methane emissions along biomethane and biogas supply chains are underestimated. One Earth, 5(6), 724–736. https://doi.org/10.1016/j.oneear.2022.05.012.
    Paper not yet in RePEc: Add citation now
  21. Barroso Soares, R., Ferreira Martins, M., & Franci Gonçalves, R. (2020). Experimental investigation of wastewater microalgae in a pilot‐scale downdraft gasifier. Algal Research, 51, 102049. https://doi.org/10.1016/j.algal.2020.102049.
    Paper not yet in RePEc: Add citation now
  22. Barsanti, L., & Gualtieri, P. (2018). Is exploitation of microalgae economically and energetically sustainable? Algal Research, 31, 107–115. https://doi.org/10.1016/j.algal.2018.02.001.
    Paper not yet in RePEc: Add citation now
  23. Batidzirai, B., Schotman, G. S., van der Spek, M. W., Junginger, M., & Faaij, A. P. C. (2019). Techno‐economic performance of sustainable international bio‐SNG production and supply chains on short and longer term. Biofuels, Bioproducts and Biorefining, 13(2), 325–357. https://doi.org/10.1002/bbb.1911.
    Paper not yet in RePEc: Add citation now
  24. Baumann, M., Fazeni‐Fraisl, K., Kienberger, T., Nagovnak, P., Pauritsch, P., Rosenfeld, D., Sejkora, C., & Tichler, R. (2021). Erneuerbares Gas in Österreich 2040. https://www.bmk.gv.at/themen/energie/publikationen/erneuerbares-gas-2040.html.
    Paper not yet in RePEc: Add citation now
  25. BEST. (2022, May 20). BEST bioenergy and sustainable technologies. https://best-research.eu/de/news_presse/news_aktuell/view/397.
    Paper not yet in RePEc: Add citation now
  26. Bhatt, A. H., & Tao, L. (2020). Economic perspectives of biogas production via anaerobic digestion. Bioengineering, 7(3), 3. https://doi.org/10.3390/bioengineering7030074.
    Paper not yet in RePEc: Add citation now
  27. Billig, E., & Thraen, D. (2017). Renewable methane – A technology evaluation by multi‐criteria decision making from a European perspective. Energy, 139, 468–484. https://doi.org/10.1016/j.energy.2017.07.164.
    Paper not yet in RePEc: Add citation now
  28. Binder, M., Kraussler, M., Kuba, M., & Luisser, M. (2018). Hydrogen from biomass gasification. IEA Bioenergy Task 33 report.
    Paper not yet in RePEc: Add citation now
  29. Bond, T., & Templeton, M. R. (2011). History and future of domestic biogas plants in the developing world. Energy for Sustainable Development, 15(4), 347–354. https://doi.org/10.1016/j.esd.2011.09.003.
    Paper not yet in RePEc: Add citation now
  30. Bose, A., O'Shea, R., Lin, R., Long, A., Rajendran, K., Wall, D., De, S., & Murphy, J. D. (2022). The marginal abatement cost of co‐producing biomethane, food and biofertiliser in a circular economy system. Renewable and Sustainable Energy Reviews, 169, 112946. https://doi.org/10.1016/j.rser.2022.112946.
    Paper not yet in RePEc: Add citation now
  31. Boujjat, H., Rodat, S., & Abanades, S. (2021). Techno‐economic assessment of solar‐driven steam gasification of biomass for large‐scale hydrogen production. Processes, 9(3), 462. https://doi.org/10.3390/pr9030462.
    Paper not yet in RePEc: Add citation now
  32. Breault, R. (2010). Gasification processes old and new: A basic review of the major technologies. Energies, 3, 216–240. https://doi.org/10.3390/en3020216.

  33. Brienza, C., Sigurnjak, I., Meier, T., Michels, E., Adani, F., Schoumans, O., Vaneeckhaute, C., & Meers, E. (2021). Techno‐economic assessment at full scale of a biogas refinery plant receiving nitrogen rich feedstock and producing renewable energy and biobased fertilisers. Journal of Cleaner Production, 308, 127408. https://doi.org/10.1016/j.jclepro.2021.127408.
    Paper not yet in RePEc: Add citation now
  34. Cappiello, F. L., Cimmino, L., Napolitano, M., & Vicidomini, M. (2022). Thermoeconomic analysis of biomethane production plants: A dynamic approach. Sustainability, 14(10), 10. https://doi.org/10.3390/su14105744.

  35. Cavaignac, R. S., Ferreira, N. L., & Guardani, R. (2021). Techno‐economic and environmental process evaluation of biogas upgrading via amine scrubbing. Renewable Energy, 171, 868–880. https://doi.org/10.1016/j.renene.2021.02.097.

  36. Chasnyk, O., Sołowski, G., & Shkarupa, O. (2015). Historical, technical and economic aspects of biogas development: Case of Poland and Ukraine. Renewable and Sustainable Energy Reviews, 52, 227–239. https://doi.org/10.1016/j.rser.2015.07.122.
    Paper not yet in RePEc: Add citation now
  37. Colantoni, A., Villarini, M., Monarca, D., Carlini, M., Mosconi, E. M., Bocci, E., & Rajabi Hamedani, S. (2021). Economic analysis and risk assessment of biomass gasification CHP systems of different sizes through Monte Carlo simulation. Energy Reports, 7, 1954–1961. https://doi.org/10.1016/j.egyr.2021.03.028.
    Paper not yet in RePEc: Add citation now
  38. Copa, J. R., Tuna, C. E., Silveira, J. L., Boloy, R. a. M., Brito, P., Silva, V., Cardoso, J., & Eusébio, D. (2020). Techno‐economic assessment of the use of syngas generated from biomass to feed an internal combustion engine. Energies, 13(12), 12. https://doi.org/10.3390/en13123097.

  39. Costa, M., Piazzullo, D., Di Battista, D., & De Vita, A. (2022). Sustainability assessment of the whole biomass‐to‐energy chain of a combined heat and power plant based on biomass gasification: Biomass supply chain management and life cycle assessment. Journal of Environmental Management, 317, 115434. https://doi.org/10.1016/j.jenvman.2022.115434.
    Paper not yet in RePEc: Add citation now
  40. D'Adamo, I., Falcone, P. M., Huisingh, D., & Morone, P. (2021). A circular economy model based on biomethane: What are the opportunities for the municipality of Rome and beyond? Renewable Energy, 163, 1660–1672. https://doi.org/10.1016/j.renene.2020.10.072.

  41. D'Adamo, I., Ribichini, M., & Tsagarakis, K. P. (2023). Biomethane as an energy resource for achieving sustainable production: Economic assessments and policy implications. Sustainable Production and Consumption, 35, 13–27. https://doi.org/10.1016/j.spc.2022.10.014.
    Paper not yet in RePEc: Add citation now
  42. Dawood, F., Anda, M., & Shafiullah, G. M. (2020). Hydrogen production for energy: An overview. International Journal of Hydrogen Energy, 45(7), 3847–3869. https://doi.org/10.1016/j.ijhydene.2019.12.059.
    Paper not yet in RePEc: Add citation now
  43. de Jong, S., Hoefnagels, R., Wetterlund, E., Pettersson, K., Faaij, A., & Junginger, M. (2017). Cost optimization of biofuel production—The impact of scale, integration, transport and supply chain configurations. Applied Energy, 195, 1055–1070. https://doi.org/10.1016/j.apenergy.2017.03.109.

  44. Deutscher Bundestag. (2023). Treibhausgasemissionen von Erdgas—Exemplarischer Vergleich von Flüssiggas und anderen Erdgasqualitäten abhängig vom Förderland.
    Paper not yet in RePEc: Add citation now
  45. Đurđević, D., & Hulenić, I. (2020). Anaerobic digestate treatment selection model for biogas plant costs and emissions reduction. Processes, 8(2), 2. https://doi.org/10.3390/pr8020142.
    Paper not yet in RePEc: Add citation now
  46. EBA. (2022). EBA Statistical Report 2022—Open interactive versionn. EBA statistical report 2022—Open interactive version. https://www.europeanbiogas.eu.
    Paper not yet in RePEc: Add citation now
  47. EBA. (2023). New record for biomethane production in Europeshows EBA/GIE Biomethane Map 2022–2023|European Biogas Association. https://www.europeanbiogas.eu/strongnew-record-for-biomethane-production-in-europebrshows-eba-gie-biomethane-map-2022-2023-strong/.
    Paper not yet in RePEc: Add citation now
  48. EEA. (2022, October). Greenhouse gas emissions from transport in Europe. https://www.eea.europa.eu/ims/greenhouse-gas-emissions-from-transport.
    Paper not yet in RePEc: Add citation now
  49. EEA. (2023, October). Greenhouse gas emission intensity of electricity generation in Europe. https://www.eea.europa.eu/en/analysis/indicators/greenhouse-gas-emission-intensity-of-1.
    Paper not yet in RePEc: Add citation now
  50. Eggemann, L., Escobar, N., Peters, R., Burauel, P., & Stolten, D. (2020). Life cycle assessment of a small‐scale methanol production system: A power‐to‐fuel strategy for biogas plants. Journal of Cleaner Production, 271, 122476. https://doi.org/10.1016/j.jclepro.2020.122476.
    Paper not yet in RePEc: Add citation now
  51. ENGIE. (2020, December). Green gas: A world first for ENGIE!|ENGIE. Engie.Com. https://www.engie.com/en/news/gaya-energy-waste-gas-renewable.
    Paper not yet in RePEc: Add citation now
  52. Escobar, N., & Laibach, N. (2021). Sustainability check for bio‐based technologies: A review of process‐based and life cycle approaches. Renewable and Sustainable Energy Reviews, 135, 110213. https://doi.org/10.1016/j.rser.2020.110213.
    Paper not yet in RePEc: Add citation now
  53. European Commisison. (2022a). Commission staff working document implementing the repower EU action plan: Investment needs, hydrogen accelerator and achieving the bio‐methane targets. European Commission.
    Paper not yet in RePEc: Add citation now
  54. European Commission. (2021a). Quarterly report on European gas markets with focus on the European barriers in retail gas markets. DG Energy, 13(4). https://ec.europa.eu/energy/sites/default/files/quarterly_report_on_european_gas_markets_q4_2020_final.pdf.
    Paper not yet in RePEc: Add citation now
  55. European Commission. (2021b, December 15). New EU framework to decarbonise gas markets. European Commission. https://ec.europa.eu/commission/presscorner/detail/en/ip_21_6682.
    Paper not yet in RePEc: Add citation now
  56. Eurostat. (2023b, March 7). Natural gas price statistics. https://ec.europa.eu/eurostat/statistics-explained/index.php?title=Natural_gas_price_statistics.
    Paper not yet in RePEc: Add citation now
  57. Feiz, R., Johansson, M., Lindkvist, E., Moestedt, J., Påledal, S. N., & Ometto, F. (2022). The biogas yield, climate impact, energy balance, nutrient recovery, and resource cost of biogas production from household food waste—A comparison of multiple cases from Sweden. Journal of Cleaner Production, 378, 124536. https://doi.org/10.1016/j.jclepro.2022.134536.
    Paper not yet in RePEc: Add citation now
  58. Ferreira, S. F., Buller, L. S., Berni, M., & Forster‐Carneiro, T. (2019). Environmental impact assessment of end‐uses of biomethane. Journal of Cleaner Production, 230, 613–621. https://doi.org/10.1016/j.jclepro.2019.05.034.
    Paper not yet in RePEc: Add citation now
  59. Festel, G., Würmseher, M., Rammer, C., Boles, E., & Bellof, M. (2014). Modelling production cost scenarios for biofuels and fossil fuels in Europe. Journal of Cleaner Production, 66, 242–253. https://doi.org/10.1016/j.jclepro.2013.10.038.
    Paper not yet in RePEc: Add citation now
  60. Florio, C., Fiorentino, G., Corcelli, F., Ulgiati, S., Dumontet, S., Güsewell, J., & Eltrop, L. (2019). A life cycle assessment of biomethane production from waste feedstock through different upgrading technologies. Energies, 12(4), Article 4. https://doi.org/10.3390/en12040718.

  61. Francesco Zito, P., Brunetti, A., & Barbieri, G. (2022). Renewable biomethane production from biogas upgrading via membrane separation: Experimental analysis and multistep configuration design. Renewable Energy, 200, 777–787. https://doi.org/10.1016/j.renene.2022.09.124.

  62. Fraunhofer IEE, DBFZ, & Büro für EnergieSystemEffizienz (ESE). (2023, February 8). Kurzfristanalyse zu den Kostensteigerungen von Biomasseanlagen. https://www.bmwk.de/Redaktion/DE/Publikationen/Energie/kurzfristanalyse-biomasse-kosten.html.
    Paper not yet in RePEc: Add citation now
  63. Fuhrmann, M., Dißauer, C., Strasser, C., & Schmid, E. (2022). Techno‐economic assessment of wood‐based processes with feedstock price scenarios in Austria. Austrian Journal of Agricultural Economics and Rural Studies, 31, 15. https://doi.org/10.15203/OEGA_31.15.
    Paper not yet in RePEc: Add citation now
  64. Full, J., Hohmann, S., Ziehn, S., Gamero, E., Schließ, T., Schmid, H.‐P., Miehe, R., & Sauer, A. (2023). Perspectives of biogas plants as BECCS facilities: A comparative analysis of biomethane vs. biohydrogen production with carbon capture and storage or use (CCS/CCU). Energies, 16(13), 5066. https://doi.org/10.3390/en16135066.

  65. Gebrezgabher, S. A., Meuwissen, M. P. M., Prins, B. A. M., & Lansink, A. G. J. M. O. (2010). Economic analysis of anaerobic digestion—A case of Green power biogas plant in The Netherlands. NJAS ‐ Wageningen Journal of Life Sciences, 57(2), 109–115. https://doi.org/10.1016/j.njas.2009.07.006.
    Paper not yet in RePEc: Add citation now
  66. Gemmecke, B. (2009). Johann Heinrich von Thünen‐Institut, Institut für Agrartechnologie und Biosystemtechnik, Fachagentur Nachwachsende Rohstoffe.
    Paper not yet in RePEc: Add citation now
  67. Giwa, A. S., Ali, N., Ahmad, I., Asif, M., Guo, R.‐B., Li, F.‐L., & Lu, M. (2020). Prospects of China's biogas: Fundamentals, challenges and considerations. Energy Reports, 6, 2973–2987. https://doi.org/10.1016/j.egyr.2020.10.027.
    Paper not yet in RePEc: Add citation now
  68. Gkotsis, P., Kougias, P., Mitrakas, M., & Zouboulis, A. (2023). Biogas upgrading technologies – Recent advances in membrane‐based processes. International Journal of Hydrogen Energy, 48(10), 3965–3993. https://doi.org/10.1016/j.ijhydene.2022.10.228.
    Paper not yet in RePEc: Add citation now
  69. Götz, M., Lefebvre, J., Mörs, F., Koch, A., Graf, F., Bajohr, S., Reimert, R., & Kolb, T. (2016). Renewable power‐to‐gas: A technological and economic review. Renewable Energy, 85, 1371–1390. https://doi.org/10.1016/j.renene.2015.07.066.
    Paper not yet in RePEc: Add citation now
  70. Guerrero, J., Sala, S., Fresneda‐Cruz, A., Bolea, I., Carmona‐Martínez, A. A., & Jarauta‐Córdoba, C. (2023). Techno‐economic feasibility of biomass gasification for the decarbonisation of energy‐intensive industries. Energies, 16(17), 17. https://doi.org/10.3390/en16176271.

  71. Gupta, R., Miller, R., Sloan, W., & You, S. (2022). Economic and environmental assessment of organic waste to biomethane conversion. Bioresource Technology, 345, 126500. https://doi.org/10.1016/j.biortech.2021.126500.
    Paper not yet in RePEc: Add citation now
  72. Hannula, I. (2016). Hydrogen enhancement potential of synthetic biofuels manufacture in the European context: A techno‐economic assessment. Energy, 104, 199–212. https://doi.org/10.1016/j.energy.2016.03.119.

  73. Heaven, S., Milledge, J., & Zhang, Y. (2011). Comments on ‘Anaerobic digestion of microalgae as a necessary step to make microalgal biodiesel sustainable’. Biotechnology Advances, 29(1), 164–167. https://doi.org/10.1016/j.biotechadv.2010.10.005.
    Paper not yet in RePEc: Add citation now
  74. Hofbauer, H., Mauerhofer, A., Bartik, A., Hammerschmid, M., Benedikt, F., Veress, M., Haas, R., Siebenhofer, M., & Resch, G. (2020). Reallabor zur Herstellung von Holzdiesel und Holzgas aus Biomasse und biogenen Reststoffen für die Land‐ und Forstwirtschaft. 220.
    Paper not yet in RePEc: Add citation now
  75. Holmgren, K. M., Berntsson, T., & Lönnqvist, T. (2018). Profitability and greenhouse gas emissions of gasification‐based biofuel production—Analysis of sector specific policy instruments and comparison to conventional biomass conversion technologies. Energy, 165, 997–1007. https://doi.org/10.1016/j.energy.2018.09.105.

  76. Hrbek, J. (2022). Status report on thermal gasification of biomass and waste 2021 (IEA Bioenergy: Task 33). IEA Bioenergy.
    Paper not yet in RePEc: Add citation now
  77. IEA Bioenergy. (2023). How bioenergy contributes to a sustainable future. IEA Bioenergy.
    Paper not yet in RePEc: Add citation now
  78. IEA. (2018). Hydrogen production costs using natural gas in selected regions, 2018—Charts—Data & Statistics. IEA. https://www.iea.org/data-and-statistics/charts/hydrogen-production-costs-using-natural-gas-in-selected-regions-2018-2.
    Paper not yet in RePEc: Add citation now
  79. IEA. (2020). Outlook for biogas and biomethane: Prospects for organic growth – Analysis. IEA. https://www.iea.org/reports/outlook-for-biogas-and-biomethane-prospects-for-organic-growth.
    Paper not yet in RePEc: Add citation now
  80. IEA. (2021). Global hydrogen review 2021. OECD. https://doi.org/10.1787/39351842-en.
    Paper not yet in RePEc: Add citation now
  81. IEA. (2023). Renewables data explorer—Data tools. IEA. https://www.iea.org/data-and-statistics/data-tools/renewables-data-explorer.
    Paper not yet in RePEc: Add citation now
  82. Imperial College London, Maniatis, K., & Panoutsou, C. (2021). Sustainable biomass availability in the EU towards 2050. https://www.concawe.eu/publication/sustainable-biomass-availability-in-the-eu-to-2050/.
    Paper not yet in RePEc: Add citation now
  83. Jafri, Y., Waldheim, L., & Lundgren, J. (2020). Emerging gasification technologies for waste & biomass. 83.
    Paper not yet in RePEc: Add citation now
  84. Janke, L., Ruoss, F., Hahn, A., Weinrich, S., & Nordberg, Å. (2022). Modelling synthetic methane production for decarbonising public transport buses: A techno‐economic assessment of an integrated power‐to‐gas concept for urban biogas plants. Energy Conversion and Management, 259, 115574. https://doi.org/10.1016/j.enconman.2022.115574.
    Paper not yet in RePEc: Add citation now
  85. Jens, J., Graf, D., & Schimmel, M. (2021). Market state and trends in renewable and low‐carbon gases in Europe—A gas for climate report. Guidehouse.
    Paper not yet in RePEc: Add citation now
  86. Jung, J.‐H., Sim, Y.‐B., Ko, J., Park, S. Y., Kim, G.‐B., & Kim, S.‐H. (2022). Biohydrogen and biomethane production from food waste using a two‐stage dynamic membrane bioreactor (DMBR) system. Bioresource Technology, 352, 127094. https://doi.org/10.1016/j.biortech.2022.127094.
    Paper not yet in RePEc: Add citation now
  87. Kaijser, A. (2021). Driving on wood: The Swedish transition to wood gas during World War Two. History and Technology, 37(4), 468–486. https://doi.org/10.1080/07341512.2022.2033387.
    Paper not yet in RePEc: Add citation now
  88. Kaltschmitt, M., Hartmann, H., & Hofbauer, H. (Eds.). (2009). Energie aus Biomasse: Grundlagen, Techniken und Verfahren (2nd ed.). Springer‐Verlag. https://doi.org/10.1007/978-3-540-85095-3.
    Paper not yet in RePEc: Add citation now
  89. Kampman, B., Leguijt, C., Scholten, T., Tallat‐Kelpsaite, J., Brückmann, R., Maroulis, G., Lesschen, J. P., Meesters, K., Sikirica, N., & Elbersen, B. (2017). An assessment of the potential of biogas from digestion in the EU beyond 2020. 158.
    Paper not yet in RePEc: Add citation now
  90. Kargbo, H., Harris, J. S., & Phan, A. N. (2021). “Drop‐in” fuel production from biomass: Critical review on techno‐economic feasibility and sustainability. Renewable and Sustainable Energy Reviews, 135, 110168. https://doi.org/10.1016/j.rser.2020.110168.
    Paper not yet in RePEc: Add citation now
  91. Keskin, T., Abo‐Hashesh, M., & Hallenback, P. C. (2011). Photofermentative hydrogen production from wastes. Bioresource Technology, 102(18), 8557–8568. https://doi.org/10.1016/j.biortech.2011.04.004.
    Paper not yet in RePEc: Add citation now
  92. Khadivi, M., & Sowlati, T. (2022). Biomass gasification investment: A multi‐criteria decision considering uncertain conditions. Biomass Conversion and Biorefinery, 14, 4211–4243. https://doi.org/10.1007/s13399-022-02700-0.
    Paper not yet in RePEc: Add citation now
  93. Klackenberg, L., & Swedish Gas Association. (2023). Biomethane in Sweden—Market overview and policies. The Swedish Gas Association.
    Paper not yet in RePEc: Add citation now
  94. Koch, K., Höfner, P., & Gaderer, M. (2020). Techno‐economic system comparison of a wood gas and a natural gas CHP plant in flexible district heating with a dynamic simulation model. Energy, 202, 117710. https://doi.org/10.1016/j.energy.2020.117710.
    Paper not yet in RePEc: Add citation now
  95. Kolb, S., Plankenbühler, T., Hofmann, K., Bergerson, J., & Karl, J. (2021). Life cycle greenhouse gas emissions of renewable gas technologies: A comparative review. Renewable and Sustainable Energy Reviews, 146, 111147. https://doi.org/10.1016/j.rser.2021.111147.
    Paper not yet in RePEc: Add citation now
  96. Koornneef, J., van Breevoort, P., Noothout, P., Hendriks, C., Luning, u., & Camps, A. (2013). Global potential for biomethane production with carbon capture, transport and storage up to 2050. Energy Procedia, 37, 6043–6052. https://doi.org/10.1016/j.egypro.2013.06.533.
    Paper not yet in RePEc: Add citation now
  97. Kopyscinski, J., Schildhauer, T. J., & Biollaz, S. M. A. (2010). Production of synthetic natural gas (SNG) from coal and dry biomass—A technology review from 1950 to 2009. Fuel, 89(8), 1763–1783. https://doi.org/10.1016/j.fuel.2010.01.027.
    Paper not yet in RePEc: Add citation now
  98. Kramer, B., & Haspel, A. (2022). Introducing small scale waste‐to‐energy technology in microgrids. National Renewable Energy Lab. (NREL), Cogent Energy Systems. https://doi.org/10.2172/1855173.
    Paper not yet in RePEc: Add citation now
  99. Kruse, A. (2009). Hydrothermal biomass gasification. The Journal of Supercritical Fluids, 47(3), 391–399. https://doi.org/10.1016/j.supflu.2008.10.009.
    Paper not yet in RePEc: Add citation now
  100. Lebuhn, M., Munk, B., & Effenberger, M. (2014). Agricultural biogas production in Germany—From practice to microbiology basics. Energy, Sustainability and Society, 4(1), 10. https://doi.org/10.1186/2192-0567-4-10.
    Paper not yet in RePEc: Add citation now
  101. Lepage, T., Kammoun, M., Schmetz, Q., & Richel, A. (2021). Biomass‐to‐hydrogen: A review of main routes production, processes evaluation and techno‐economical assessment. Biomass and Bioenergy, 144, 105920. https://doi.org/10.1016/j.biombioe.2020.105920.
    Paper not yet in RePEc: Add citation now
  102. Liebetrau, J., Reinelt, T., Agostini, A., & Linke, B. (2017). Methane emissions from biogas plants—Methods for measurement, results and effect on greenhouse gas balance of electricity produced|Bioenergy.
    Paper not yet in RePEc: Add citation now
  103. Lombardi, L., & Francini, G. (2020). Techno‐economic and environmental assessment of the main biogas upgrading technologies. Renewable Energy, 156, 440–458. https://doi.org/10.1016/j.renene.2020.04.083.

  104. Lourinho, G., Alves, O., Garcia, B., Rijo, B., Brito, P., & Nobre, C. (2023). Costs of gasification technologies for energy and fuel production: Overview, analysis, and numerical estimation. Recycling, 8(3), 3. https://doi.org/10.3390/recycling8030049.
    Paper not yet in RePEc: Add citation now
  105. Lübken, M., Gehring, T., & Wichern, M. (2010). Microbiological fermentation of lignocellulosic biomass: Current state and prospects of mathematical modeling. Applied Microbiology and Biotechnology, 85(6), 1643–1652. https://doi.org/10.1007/s00253-009-2365-1.
    Paper not yet in RePEc: Add citation now
  106. Malek, A. B. M., Hasanuzzaman, M., & Rahim, N. A. (2020). Prospects, progress, challenges and policies for clean power generation from biomass resources. Clean Technologies and Environmental Policy, 22(6), 1229–1253. https://doi.org/10.1007/s10098-020-01873-4.
    Paper not yet in RePEc: Add citation now
  107. Markou, G., Ilkiv, B., Brulé, M., Antonopoulos, D., Chakalis, L., Arapoglou, D., & Chatzipavlidis, I. (2022). Methane production through anaerobic digestion of residual microalgal biomass after the extraction of valuable compounds. Biomass Conversion and Biorefinery, 12(2), 419–426. https://doi.org/10.1007/s13399-020-00703-3.
    Paper not yet in RePEc: Add citation now
  108. Martinez‐Hernandez, E., Sadhukhan, J., Aburto, J., Amezcua‐Allieri, M. A., Morse, S., & Murphy, R. (2022). Modelling to analyse the process and sustainability performance of forestry‐based bioenergy systems. Clean Technologies and Environmental Policy, 24, 1709–1725. https://doi.org/10.1007/s10098-022-02278-1.
    Paper not yet in RePEc: Add citation now
  109. Mathieu, C., & Eyl‐Mazzega, M.‐A. (2019). Biogas and biomethane in Europe: Lessons from Denmark, Germany and Italy. 76.
    Paper not yet in RePEc: Add citation now
  110. Matschoss, P., Wern, B., & Baur, F. (2020). Die Rolle des Biogases in der Energiewende. Energiewirtschaftliche Tagesfragen, 10, 37–41.
    Paper not yet in RePEc: Add citation now
  111. Mauerhofer, A. M., Müller, S., Bartik, A., Benedikt, F., Fuchs, J., Hammerschmid, M., & Hofbauer, H. (2021). Conversion of CO2 during the DFB biomass gasification process. Biomass Conversion and Biorefinery, 11(1), 15–27. https://doi.org/10.1007/s13399-020-00822-x.
    Paper not yet in RePEc: Add citation now
  112. Mauerhofer, A. M., Müller, S., Benedikt, F., Fuchs, J., Bartik, A., & Hofbauer, H. (2019). CO2 gasification of biogenic fuels in a dual fluidized bed reactor system. Biomass Conversion and Biorefinery, 11, 1101–1116. https://doi.org/10.1007/s13399-019-00493-3.
    Paper not yet in RePEc: Add citation now
  113. Mian, A., Ensinas, A. V., & Marechal, F. (2015). Multi‐objective optimization of SNG production from microalgae through hydrothermal gasification. Computers and Chemical Engineering, 76, 170–183. https://doi.org/10.1016/j.compchemeng.2015.01.013.
    Paper not yet in RePEc: Add citation now
  114. Millinger, M., Ponitka, J., Arendt, O., & Thrän, D. (2017). Competitiveness of advanced and conventional biofuels: Results from least‐cost modelling of biofuel competition in Germany. Energy Policy, 107, 394–402. https://doi.org/10.1016/j.enpol.2017.05.013.
    Paper not yet in RePEc: Add citation now
  115. Miltner, M., Makaruk, A., & Harasek, M. (2017). Review on available biogas upgrading technologies and innovations towards advanced solutions. Journal of Cleaner Production, 161, 1329–1337. https://doi.org/10.1016/j.jclepro.2017.06.045.
    Paper not yet in RePEc: Add citation now
  116. Mittal, S., Ahlgren, E. O., & Shukla, P. R. (2018). Barriers to biogas dissemination in India: A review. Energy Policy, 112, 361–370. https://doi.org/10.1016/j.enpol.2017.10.027.
    Paper not yet in RePEc: Add citation now
  117. Molino, A., Chianese, S., & Musmarra, D. (2016). Biomass gasification technology: The state of the art overview. Journal of Energy Chemistry, 25(1), 10–25. https://doi.org/10.1016/j.jechem.2015.11.005.
    Paper not yet in RePEc: Add citation now
  118. Muscat, A., de Olde, E. M., de Boer, I. J. M., & Ripoll‐Bosch, R. (2020). The battle for biomass: A systematic review of food‐feed‐fuel competition. Global Food Security, 25, 100330. https://doi.org/10.1016/j.gfs.2019.100330.
    Paper not yet in RePEc: Add citation now
  119. Naaz, F., Samuchiwal, S., Dalvi, V., Bhattacharya, A., Kishore Pant, K., & Malik, A. (2023). Hydrothermal liquefaction could be a sustainable approach for valorization of wastewater grown algal biomass into cleaner fuel. Energy Conversion and Management, 283, 116887. https://doi.org/10.1016/j.enconman.2023.116887.
    Paper not yet in RePEc: Add citation now
  120. Oehmichen, K., Majer, S., & Thrän, D. (2021). Biomethane from Manure, Agricultural Residues and Biowaste—GHG Mitigation Potential from Residue‐Based Biomethane in the European Transport Sector. Sustainability, 13(24), 24. https://doi.org/10.3390/su132414007.
    Paper not yet in RePEc: Add citation now
  121. Okolie, J. A., Nanda, S., Dalai, A. K., & Kozinski, J. A. (2020). Optimization and modeling of process parameters during hydrothermal gasification of biomass model compounds to generate hydrogen‐rich gas products. International Journal of Hydrogen Energy, 45(36), 18275–18288. https://doi.org/10.1016/j.ijhydene.2019.05.132.
    Paper not yet in RePEc: Add citation now
  122. Olsson, O., Bang, C., Borchers, M., Hahn, A., Karjunen, H., Thrän, D., & Tynjälä, T. (2020). Deployment of BECCS/U value chains—Technological pathways, policy options and business models|Bioenergy. https://www.ieabioenergy.com/blog/publications/new-publication-deployment-of-beccs-u-value-chains-technological-pathways-policy-options-and-business-models/.
    Paper not yet in RePEc: Add citation now
  123. Özdenkçi, K., De Blasio, C., Sarwar, G., Melin, K., Koskinen, J., & Alopaeus, V. (2019). Techno‐economic feasibility of supercritical water gasification of black liquor. Energy, 189, 116284. https://doi.org/10.1016/j.energy.2019.116284.

  124. Pääkkönen, A., Tolvanen, H., & Rintala, J. (2018). Techno‐economic analysis of a power to biogas system operated based on fluctuating electricity price. Renewable Energy, 117, 166–174. https://doi.org/10.1016/j.renene.2017.10.031.
    Paper not yet in RePEc: Add citation now
  125. Paris, B., Papadakis, G., Janssen, R., & Rutz, D. (2021). Economic analysis of advanced biofuels, renewable gases, electrofuels and recycled carbon fuels for the Greek transport sector until 2050. Renewable and Sustainable Energy Reviews, 144, 111038. https://doi.org/10.1016/j.rser.2021.111038.
    Paper not yet in RePEc: Add citation now
  126. Patinvoh, R. J., Osadolor, O. A., Chandolias, K., Sárvári Horváth, I., & Taherzadeh, M. J. (2017). Innovative pretreatment strategies for biogas production. Bioresource Technology, 224, 13–24. https://doi.org/10.1016/j.biortech.2016.11.083.
    Paper not yet in RePEc: Add citation now
  127. Patrizio, P., Fajardy, M., Bui, M., & Dowell, N. M. (2021). CO2 mitigation or removal: The optimal uses of biomass in energy system decarbonization. iScience, 24(7), 102765. https://doi.org/10.1016/j.isci.2021.102765.
    Paper not yet in RePEc: Add citation now
  128. Patuzzi, F., Prando, D., Vakalis, S., Rizzo, A. M., Chiaramonti, D., Tirler, W., Mimmo, T., Gasparella, A., & Baratieri, M. (2016). Small‐scale biomass gasification CHP systems: Comparative performance assessment and monitoring experiences in South Tyrol (Italy). Energy, 112, 285–293. https://doi.org/10.1016/j.energy.2016.06.077.

  129. Perta, E. S. d., Cervelli, E., Campagna, M. P. d., & Pindozzi, S. (2019). From biogas to biomethane: Techno‐economic analysis of an anaerobic digestion power plant in a cattle/buffalo farm in central Italy. Journal of Agricultural Engineering, 50(3), 3. https://doi.org/10.4081/jae.2019.939.
    Paper not yet in RePEc: Add citation now
  130. Piętak, A., Duda, K., & Chraplewska, N. (2010). Possibilities of supplying internal combustion engines by wood gas. Journal of KONES, 17(3), 369–376.
    Paper not yet in RePEc: Add citation now
  131. Pio, D. T., & Tarelho, L. A. C. (2021). Industrial gasification systems (>3 MWth) for bioenergy in Europe: Current status and future perspectives. Renewable and Sustainable Energy Reviews, 145, 111108. https://doi.org/10.1016/j.rser.2021.111108.
    Paper not yet in RePEc: Add citation now
  132. Poore, J., & Nemecek, T. (2018). Reducing food's environmental impacts through producers and consumers. Science, 360(6392), 987–992. https://doi.org/10.1126/science.aaq0216.
    Paper not yet in RePEc: Add citation now
  133. Quintino, F. M., Nascimento, N., & Fernandes, E. C. (2021). Aspects of Hydrogen and Biomethane Introduction in Natural Gas Infrastructure and Equipment. Hydrogen, 2(3), 3. https://doi.org/10.3390/hydrogen2030016.
    Paper not yet in RePEc: Add citation now
  134. Rauch, R., Hrbek, J., & Hofbauer, H. (2014). Biomass gasification for synthesis gas production and applications of the syngas. WIREs Energy and Environment, 3(4), 343–362. https://doi.org/10.1002/wene.97.

  135. Rivas, M. J. A. R., Capuano, D., & Miranda, C. (2022). Economic and environmental performance of biowaste‐to‐energy technologies for small‐scale electricity generation. Journal of Modern Power Systems and Clean Energy, 10(1), 12–18. https://doi.org/10.35833/MPCE.2020.000315.
    Paper not yet in RePEc: Add citation now
  136. Roach, M., & Meeus, L. (2023). An energy system model to study the impact of combining carbon pricing with direct support for renewable gases. Ecological Economics, 210, 107855. https://doi.org/10.1016/j.ecolecon.2023.107855.

  137. Rogala, Z., Stanclik, M., Łuszkiewicz, D., & Malecha, Z. (2023). Perspectives for the use of biogas and biomethane in the context of the green energy transformation on the example of an EU country. Energies, 16(4), 4. https://doi.org/10.3390/en16041911.

  138. Salkuyeh, Y. K., Saville, B. A., & MacLean, H. L. (2018). Techno‐economic analysis and life cycle assessment of hydrogen production from different biomass gasification processes. International Journal of Hydrogen Energy, 43(20), 9514–9528. https://doi.org/10.1016/j.ijhydene.2018.04.024.
    Paper not yet in RePEc: Add citation now
  139. Schipfer, F., Mäki, E., Schmieder, U., Lange, N., Schildhauer, T., Hennig, C., & Thrän, D. (2022). Status of and expectations for flexible bioenergy to support resource efficiency and to accelerate the energy transition. Renewable and Sustainable Energy Reviews, 158, 112094. https://doi.org/10.1016/j.rser.2022.112094.
    Paper not yet in RePEc: Add citation now
  140. Schmid, C., Horschig, T., Pfeiffer, A., Szarka, N., & Thrän, D. (2019). Biogas upgrading: A review of national biomethane strategies and support policies in selected countries. Energies, 12(19), 19. https://doi.org/10.3390/en12193803.

  141. Schmid, J. C., Benedikt, F., Fuchs, J., Mauerhofer, A. M., Müller, S., & Hofbauer, H. (2021). Syngas for biorefineries from thermochemical gasification of lignocellulosic fuels and residues—5 years' experience with an advanced dual fluidized bed gasifier design. Biomass Conversion and Biorefinery, 11(6), 2405–2442. https://doi.org/10.1007/s13399-019-00486-2.
    Paper not yet in RePEc: Add citation now
  142. Schumacher, B., Oechsner, H., Senn, T., & Jungbluth, T. (2010). Life cycle assessment of the conversion of Zea mays and x Triticosecale into biogas and bioethanol. Engineering in Life Sciences, 10(6), 577–584. https://doi.org/10.1002/elsc.201000069.
    Paper not yet in RePEc: Add citation now
  143. Schweitzer, D., Beirow, M., Gredinger, A., Armbrust, N., Waizmann, G., Dieter, H., & Scheffknecht, G. (2016). Pilot‐scale demonstration of Oxy‐SER steam gasification: Production of syngas with pre‐combustion CO2 capture. Energy Procedia, 86, 56–68. https://doi.org/10.1016/j.egypro.2016.01.007.
    Paper not yet in RePEc: Add citation now
  144. Singlitico, A., Goggins, J., & Monaghan, R. F. D. (2019). The role of life cycle assessment in the sustainable transition to a decarbonised gas network through green gas production. Renewable & Sustainable Energy Reviews, 99, 16–28. https://doi.org/10.1016/j.rser.2018.09.040.
    Paper not yet in RePEc: Add citation now
  145. Singlitico, A., Kilgallon, I., Goggins, J., & Monaghan, R. F. D. (2019). GIS‐based techno‐economic optimisation of a regional supply chain for large‐scale deployment of bio‐SNG in a natural gas network. Applied Energy, 250, 1036–1052. https://doi.org/10.1016/j.apenergy.2019.05.026.
    Paper not yet in RePEc: Add citation now
  146. Skorek‐Osikowska, A., Martín‐Gamboa, M., & Dufour, J. (2020). Thermodynamic, economic and environmental assessment of renewable natural gas production systems. Energy Conversion and Management: X, 7, 100046. https://doi.org/10.1016/j.ecmx.2020.100046.
    Paper not yet in RePEc: Add citation now
  147. Solarte‐Toro, J. C., Chacón‐Pérez, Y., & Cardona‐Alzate, C. A. (2018). Evaluation of biogas and syngas as energy vectors for heat and power generation using lignocellulosic biomass as raw material. Electronic Journal of Biotechnology, 33, 52–62. https://doi.org/10.1016/j.ejbt.2018.03.005.
    Paper not yet in RePEc: Add citation now
  148. Speirs, J., Balcombe, P., Johnson, E., Martin, J., Brandon, N., & Hawkes, A. (2018). A greener gas grid: What are the options. Energy Policy, 118, 291–297. https://doi.org/10.1016/j.enpol.2018.03.069.

  149. Sridhar, A., Kapoor, A., Senthil Kumar, P., Ponnuchamy, M., Balasubramanian, S., & Prabhakar, S. (2021). Conversion of food waste to energy: A focus on sustainability and life cycle assessment. Fuel, 302, 121069. https://doi.org/10.1016/j.fuel.2021.121069.
    Paper not yet in RePEc: Add citation now
  150. Struk, M., Kushkevych, I., & Vítězová, M. (2020). Biogas upgrading methods: Recent advancements and emerging technologies. Reviews in Environmental Science and Bio/Technology, 19(3), 651–671. https://doi.org/10.1007/s11157-020-09539-9.
    Paper not yet in RePEc: Add citation now
  151. Stürmer, B. (2017). Biogas—Part of Austria's future energy supply or political experiment? Renewable and Sustainable Energy Reviews, 79, 525–532. https://doi.org/10.1016/j.rser.2017.05.106.
    Paper not yet in RePEc: Add citation now
  152. Taboada, S., Clark, L., Lindberg, J., Tonjes, D. J., & Mahajan, D. (2021). Quantifying the potential of renewable natural gas to support a reformed energy landscape: Estimates for New York state. Energies, 14(13), 13. https://doi.org/10.3390/en14133834.

  153. Taifouris, M., & Martín, M. (2023). Towards energy security by promoting circular economy: A holistic approach. Applied Energy, 333, 120544. https://doi.org/10.1016/j.apenergy.2022.120544.

  154. Tartakovsky, B., Mehta, P., Bourque, J.‐S., & Guiot, S. R. (2011). Electrolysis‐enhanced anaerobic digestion of wastewater. Bioresource Technology, 102(10), 5685–5691. https://doi.org/10.1016/j.biortech.2011.02.097.
    Paper not yet in RePEc: Add citation now
  155. Thrän, D., Deprie, K., Dotzauer, M., Kornatz, P., Nelles, M., Radtke, K. S., & Schindler, H. (2023). The potential contribution of biogas to the security of gas supply in Germany. Energy, Sustainability and Society, 13(1), 12. https://doi.org/10.1186/s13705-023-00389-1.
    Paper not yet in RePEc: Add citation now
  156. Thunman, H., Gustavsson, C., Larsson, A., Gunnarsson, I., & Tengberg, F. (2019). Economic assessment of advanced biofuel production via gasification using cost data from the GoBiGas plant. Energy Science & Engineering, 7, 217–229. https://doi.org/10.1002/ese3.271.
    Paper not yet in RePEc: Add citation now
  157. Veress, M., Bartik, A., Benedikt, F., Hammerschmid, M., Fuchs, J., Müller, S., & Hofbauer, H. (2020, July 6). Development and techno‐economic evaluation of an optimized concept for industrial bio‐SNG production from sewage sludge. https://doi.org/10.5071/28thEUBCE2020-5AV.3.10.
    Paper not yet in RePEc: Add citation now
  158. Wall, D. M., Dumont, M., & Murphy, J. D. (2018). Green gas: Facilitating a future green gas grid through the production of renewable gas. IEA Bioenergy Task 37 report.
    Paper not yet in RePEc: Add citation now
  159. Watanabe, M. D. B., Cherubini, F., & Cavalett, O. (2022). Climate change mitigation of drop‐in biofuels for deep‐sea shipping under a prospective life‐cycle assessment. Journal of Cleaner Production, 364, 132662. https://doi.org/10.1016/j.jclepro.2022.132662.
    Paper not yet in RePEc: Add citation now
  160. Weiland, P. (2010). Biogas production: Current state and perspectives. Applied Microbiology and Biotechnology, 85(4), 849–860. https://doi.org/10.1007/s00253-009-2246-7.
    Paper not yet in RePEc: Add citation now
  161. Yukesh Kannah, R., Kavitha, S., Preethi, Parthiba Karthikeyan, O., Kumar, G., Dai‐Viet, N. V., & Rajesh Banu, J. (2021). Techno‐economic assessment of various hydrogen production methods—A review. Bioresource Technology, 319, 124175. https://doi.org/10.1016/j.biortech.2020.124175.
    Paper not yet in RePEc: Add citation now
  162. Zetterholm, J., Bryngemark, E., Ahlström, J., Söderholm, P., Harvey, S., & Wetterlund, E. (2020). Economic evaluation of large‐scale biorefinery deployment: A framework integrating dynamic biomass market and techno‐economic models. Sustainability, 12(17), 17. https://doi.org/10.3390/su12177126.

Cocites

Documents in RePEc which have cited the same bibliography

  1. The role of hydrogen in integrated assessment models: A review of recent developments. (2025). Wang, Qianpu ; Trpanier, Martin ; Neshat, Najmeh ; Mousseau, Normand ; Baker, Ryan C ; Bahn, Olivier ; Amirmoeini, Kamyar ; Zare, Sara Ghaboulian.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:215:y:2025:i:c:s1364032125002175.

    Full description at Econpapers || Download paper

  2. Converting underground natural gas storage for hydrogen: A review of advantages, challenges and economics. (2025). Chen, Zhangxin ; Liu, Benjieming ; Zhu, Suyang ; Peng, Xiaolong ; Deng, Peng ; Di, Chaojie ; Lei, Xuantong.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:213:y:2025:i:c:s136403212500111x.

    Full description at Econpapers || Download paper

  3. Hydrogen energy prospects in Gulf cooperation council states: Opportunities and challenges. (2025). Al-Qassimi, M ; Massardo, F ; Magistri, L ; Rivarolo, M ; Barberis, S ; Bellotti, D ; Dewil, R ; Constantinou, A ; Alsayegh, O ; van Haute, M ; Al-Salem, S M ; Alshawaf, Mohammad.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:212:y:2025:i:c:s1364032125000942.

    Full description at Econpapers || Download paper

  4. Sustainable and feasible carbon capture and utilization pathways towards net-zero. (2025). An, Jihong ; Cherif, Ali ; Suh, Sangwon ; Lee, Chul-Jin ; Zarei, Mohammadamin ; Yoon, Taeksang ; Atsbha, Tesfalem Aregawi ; Shin, Dongkyoung.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:211:y:2025:i:c:s1364032125000048.

    Full description at Econpapers || Download paper

  5. Design and multi-objective optimization of co-production system of hydrogen and electricity via integration of methanol steam reforming, fuel cell and electrochemical hydrogen pump. (2025). He, Gaohong ; Ruan, Xuehua ; Xiao, WU ; Yi, Huijun ; Cheng, Andi ; Jiang, Xiaobin.
    In: Energy.
    RePEc:eee:energy:v:324:y:2025:i:c:s036054422501566x.

    Full description at Econpapers || Download paper

  6. Low-carbon planning for integrated power-gas-hydrogen system with Wasserstein-distance based scenario generation method. (2025). Wang, Hong ; Qiu, Jing ; Wu, Ting ; Zhang, Xian ; Wen, Ziyi.
    In: Energy.
    RePEc:eee:energy:v:316:y:2025:i:c:s0360544225000301.

    Full description at Econpapers || Download paper

  7. Smells like Green Energy: The Impact of Bioenergy Production on Residential Property Values in Germany. (2025). Hoffmann, Christin ; Msgens, Felix ; Byrukuri, Shanmukha Srinivas.
    In: Energy Economics.
    RePEc:eee:eneeco:v:145:y:2025:i:c:s0140988325002282.

    Full description at Econpapers || Download paper

  8. Leveraging synergies for energy-flexible operated electrolysis: A techno-economic analysis of power purchase agreement procurement with battery energy storage systems for renewable hydrogen production. (2025). Kaiser, Matthias ; Buhl, Hans Ulrich ; Eiser, Niklas ; Frster, Robert.
    In: Applied Energy.
    RePEc:eee:appene:v:393:y:2025:i:c:s0306261925007597.

    Full description at Econpapers || Download paper

  9. Life cycle external cost assessment of an onshore wind farm in South Africa. (2025). Thopil, George Alex ; Ibrahim, Hanif Auwal.
    In: Applied Energy.
    RePEc:eee:appene:v:388:y:2025:i:c:s0306261925004386.

    Full description at Econpapers || Download paper

  10. Investments in green hydrogen as a flexibility source for the European power system by 2050: Does it pay off?. (2025). Tomasgard, Asgeir ; del Granado, Pedro Crespo ; Ahang, Mohammadreza.
    In: Applied Energy.
    RePEc:eee:appene:v:378:y:2025:i:pa:s0306261924020397.

    Full description at Econpapers || Download paper

  11. Hydrogen as an energy carrier: properties, storage methods, challenges, and future implications. (2024). Algburi, Sameer ; Hassan, Qusay ; Jaszczur, Marek ; Salman, Hayder M ; Sameen, Aws Zuhair.
    In: Environment Systems and Decisions.
    RePEc:spr:envsyd:v:44:y:2024:i:2:d:10.1007_s10669-023-09932-z.

    Full description at Econpapers || Download paper

  12. Impact of global heterogeneity of renewable energy supply on heavy industrial production and green value chains. (2024). Verpoort, Philipp C ; Gast, Lukas ; Ueckerdt, Falko ; Hofmann, Anke.
    In: Nature Energy.
    RePEc:nat:natene:v:9:y:2024:i:4:d:10.1038_s41560-024-01492-z.

    Full description at Econpapers || Download paper

  13. Profitability Model of Green Hydrogen Production on an Existing Wind Power Plant Location. (2024). Lenz, Nela Vlahini ; Wagmann, Lahorko ; Dumani, Andrea.
    In: Sustainability.
    RePEc:gam:jsusta:v:16:y:2024:i:4:p:1424-:d:1335494.

    Full description at Econpapers || Download paper

  14. Greenhouse Gas Reduction Potential and Economics of Green Hydrogen via Water Electrolysis: A Systematic Review of Value-Chain-Wide Decarbonization. (2024). Yang, Yanmei ; Liu, Min ; Zhou, Luli ; Du, Lifeng.
    In: Sustainability.
    RePEc:gam:jsusta:v:16:y:2024:i:11:p:4602-:d:1404349.

    Full description at Econpapers || Download paper

  15. Potentials of Mixed-Integer Linear Programming (MILP)-Based Optimization for Low-Carbon Hydrogen Production and Development Pathways in China. (2024). Ling, Zhongqian ; Liu, Maosheng ; Mao, Jiani ; Xu, Jiangrong ; Zhang, Guangxue ; Yuan, Dingkun.
    In: Energies.
    RePEc:gam:jeners:v:17:y:2024:i:7:p:1694-:d:1369024.

    Full description at Econpapers || Download paper

  16. Green Hydrogen Value Chain: Modelling of a PV Power Plant Integrated with H 2 Production for Industry Application. (2024). Teixeira, Senhorinha F ; Machado, Hugo ; Ferreira, Ana Cristina.
    In: Energies.
    RePEc:gam:jeners:v:17:y:2024:i:6:p:1414-:d:1357414.

    Full description at Econpapers || Download paper

  17. Waste Heat Utilization in Marine Energy Systems for Enhanced Efficiency. (2024). Kostecka, Ewelina ; Miller, Tymoteusz ; Durlik, Irmina ; Kozlovska, Polina ; Jakubowski, Andrzej ; Obodziska, Adrianna.
    In: Energies.
    RePEc:gam:jeners:v:17:y:2024:i:22:p:5653-:d:1519331.

    Full description at Econpapers || Download paper

  18. Renewable Hydrogen from Biomass: Technological Pathways and Economic Perspectives. (2024). Ferreira, Paulo ; Brito, Paulo ; Copa, Jose Ramon ; Mateos-Pedrero, Cecilia ; Nobre, Catarina ; Rijo, Bruna ; Longo, Andrei.
    In: Energies.
    RePEc:gam:jeners:v:17:y:2024:i:14:p:3530-:d:1437876.

    Full description at Econpapers || Download paper

  19. A SWOT Analysis of the Green Hydrogen Market. (2024). , Francisco.
    In: Energies.
    RePEc:gam:jeners:v:17:y:2024:i:13:p:3114-:d:1421304.

    Full description at Econpapers || Download paper

  20. Life cycle assessment of power-to-methane and renewable methane production technologies. (2024). Evans, Tim J ; Strezov, Vladimir ; Cho, Hannah Hyunah.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:206:y:2024:i:c:s1364032124005823.

    Full description at Econpapers || Download paper

  21. Enabling industrial decarbonization: Framework for hydrogen integration in the industrial energy systems. (2024). Mezher, Toufic ; El-Fadel, Mutasem ; Ramadan, Mohamad ; Zaiter, Issa ; Bouabid, Ali ; Mayyas, Ahmad.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:203:y:2024:i:c:s1364032124005082.

    Full description at Econpapers || Download paper

  22. A bottom-up estimation of woody biomass energy potential including forest growth in Japan. (2024). Nakata, Toshihiko ; Ono, Ryoga ; Delage, Remi.
    In: Renewable Energy.
    RePEc:eee:renene:v:229:y:2024:i:c:s0960148124007456.

    Full description at Econpapers || Download paper

  23. Biohydrogen production by a novel strain Petroclostridium sp. X23 isolated from the production water of oil reservoirs. (2024). Pan, Xu-Jie ; Yang, Shi-Zhong ; Zhou, Lei ; Gu, Ji-Dong ; Fang, BO ; Mu, Bo-Zhong ; Liu, Yi-Fan.
    In: Renewable Energy.
    RePEc:eee:renene:v:228:y:2024:i:c:s0960148124006694.

    Full description at Econpapers || Download paper

  24. Experimental investigation of solar hydrogen production via photo-thermal driven steam methane reforming. (2024). Liu, Xunliang ; Yan, Xiangyu ; Fang, Juan ; Dong, Hao ; Lu, Buchu.
    In: Applied Energy.
    RePEc:eee:appene:v:368:y:2024:i:c:s0306261924009152.

    Full description at Econpapers || Download paper

  25. “Selectivity and reaction kinetics of methane pyrolysis to produce hydrogen in catalytically active molten salts”. (2024). Smart, Simon ; Konarova, Muxina ; McConnachie, Mark ; Sheil, Alister.
    In: Applied Energy.
    RePEc:eee:appene:v:364:y:2024:i:c:s0306261924005208.

    Full description at Econpapers || Download paper

  26. On the future relevance of green hydrogen in Europe. (2024). Haas, Reinhard ; Sayer, Marlene ; Ajanovic, Amela.
    In: Applied Energy.
    RePEc:eee:appene:v:358:y:2024:i:c:s0306261923019505.

    Full description at Econpapers || Download paper

  27. Carbon Capture and Storage in Hydrogen Production: World Experience and Growth of Export Opportunities of the Russian Hydrogen Sector. (2024). Matyushok, Vladimir M ; Chavarry, Diana Pamela ; Sinelnikova, Anastasiia V.
    In: International Journal of Energy Economics and Policy.
    RePEc:eco:journ2:2024-01-55.

    Full description at Econpapers || Download paper

  28. The relevance of biomass‐based gases as energy carriers: A review. (2024). Harasek, Michael ; Ajanovic, Amela ; Radosits, Frank K.
    In: Wiley Interdisciplinary Reviews: Energy and Environment.
    RePEc:bla:wireae:v:13:y:2024:i:4:n:e527.

    Full description at Econpapers || Download paper

  29. Life cycle assessment of hydrogen production, storage, and utilization toward sustainability. (2024). Farghali, Mohamed ; Ayati, Ali ; Abdelhaleem, Amal ; Mohamed, A R ; Nasr, Mahmoud ; Osman, Ahmed I ; Rooney, David W ; Alfatesh, Ahmed S ; Ala'a H. Al‐Muhtaseb, .
    In: Wiley Interdisciplinary Reviews: Energy and Environment.
    RePEc:bla:wireae:v:13:y:2024:i:3:n:e526.

    Full description at Econpapers || Download paper

  30. Analysis of iron and steel production paths on the energy demand and carbon emission in China’s iron and steel industry. (2023). Ji, Wei ; Wang, QI ; Yue, Qiang ; Zhao, Feng ; Lu, Yuqi ; Zhang, Yujie ; Chai, Xicui.
    In: Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development.
    RePEc:spr:endesu:v:25:y:2023:i:5:d:10.1007_s10668-022-02234-5.

    Full description at Econpapers || Download paper

  31. Ammonia Production from Clean Hydrogen and the Implications for Global Natural Gas Demand. (2023). Lathwal, Priyank ; Rouwenhorst, Kevin ; Cordonnier, Joseph ; Blanco, Herib ; Boshell, Francisco ; Gielen, Dolf ; Saygin, Deger.
    In: Sustainability.
    RePEc:gam:jsusta:v:15:y:2023:i:2:p:1623-:d:1035497.

    Full description at Econpapers || Download paper

  32. Hydrogen Horizons: A Bibliometric Review of Trends in Diverse Emission Sectors. (2023). Safronova, Alna ; Barisa, Aiga.
    In: Sustainability.
    RePEc:gam:jsusta:v:15:y:2023:i:19:p:14355-:d:1250316.

    Full description at Econpapers || Download paper

  33. Energy, Exergy and Thermoeconomic Analyses on Hydrogen Production Systems Using High-Temperature Gas-Cooled and Water-Cooled Nuclear Reactors. (2023). Lee, Won-Yong ; Kim, Taehun ; Oh, Si-Doek ; Seo, Seok-Ho ; Kwak, Ho-Young.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:24:p:8090-:d:1301248.

    Full description at Econpapers || Download paper

  34. A Pragmatic Approach to the Economic Assessment of Green Synthetic Methane Power in the Baltics. (2023). Petrichenko, Roman ; Zima-Bockarjova, Marija ; Sauhats, Antans.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:22:p:7479-:d:1275742.

    Full description at Econpapers || Download paper

  35. Potential Business Models of Carbon Capture and Storage (CCS) for the Oil Refining Industry in Thailand. (2023). Wongsapai, Wongkot ; Thepsaskul, Waranya ; Raksakulkan, Varoon ; Jaitiang, Tassawan ; Daroon, Sopit ; Muangjai, Phitsinee ; Suttakul, Pana ; Sirisrisakulchai, Jirakom ; Wattakawigran, Gengwit ; Ritkrerkkrai, Chaichan.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:19:p:6955-:d:1253917.

    Full description at Econpapers || Download paper

  36. Massive Green Hydrogen Production Using Solar and Wind Energy: Comparison between Europe and the Middle East. (2023). Wieteska, Szymon ; Hassan, Qusay ; Olapade, Olushola Tomilayo ; Jaszczur, Marek ; Salman, Hayder M ; Sameen, Aws Zuhair.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:14:p:5445-:d:1196400.

    Full description at Econpapers || Download paper

  37. Techno-economic analysis of different shades of renewable and non-renewable energy-based hydrogen for fuel cell electric vehicles. (2023). Mohideen, Mohamedazeem M ; Sun, Jingyi ; Ge, Jing ; Guo, Han ; Subramanian, Balachandran ; Radhamani, Adiyodi Veettil ; Liu, Yong ; Ramakrishna, Seeram.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:174:y:2023:i:c:s1364032123000096.

    Full description at Econpapers || Download paper

  38. Hydrogen production, storage and transport for renewable energy and chemicals: An environmental footprint assessment. (2023). van Fan, Yee ; Hren, Robert ; Uek, Lidija ; Kleme, Jii Jaromir ; Krajnc, Damjan ; Vujanovi, Annamaria.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:173:y:2023:i:c:s1364032122009947.

    Full description at Econpapers || Download paper

  39. A multi-period sustainable hydrogen supply chain model considering pipeline routing and carbon emissions: The case study of Oman. (2023). Nejatbakhsh, Yousef ; Kia, Reza ; Forghani, Kamran.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:173:y:2023:i:c:s1364032122009327.

    Full description at Econpapers || Download paper

  40. Formation and transformation of mineral phases in biomass ashes and evaluation of the feedstocks for application in high-temperature processes. (2023). Reinmoller, Markus ; Schreiner, Marcus ; Laabs, Marcel ; Neuroth, Manuela ; Scharm, Christoph ; Meyer, Bernd ; Yao, Zhitong ; Guhl, Stefan ; Grabner, Martin.
    In: Renewable Energy.
    RePEc:eee:renene:v:210:y:2023:i:c:p:627-639.

    Full description at Econpapers || Download paper

  41. Fuel-cycle based environmental and economic assessment of hydrogen fuel cell vehicles in China. (2023). Wang, Zhengzao ; Chi, Yuanying ; Chen, Yahui ; Zhang, Xufeng ; Xu, Weiyue ; Xiao, Meng.
    In: Energy.
    RePEc:eee:energy:v:282:y:2023:i:c:s0360544223021679.

    Full description at Econpapers || Download paper

  42. Co-processing of petcoke and producer gas obtained from RDF gasification in a white cement plant: A techno-economic analysis. (2023). Sheth, Pratik N ; Sharma, Prateek ; Mohapatra, B N.
    In: Energy.
    RePEc:eee:energy:v:265:y:2023:i:c:s0360544222031346.

    Full description at Econpapers || Download paper

  43. Methane pyrolysis and carbon formation mechanisms in molten manganese chloride mixtures. (2023). Ju, Seung ; Kim, Minkyu ; Lee, Jae W ; Ko, Eun Hee ; Kang, Dohyung ; Bae, Dasol.
    In: Applied Energy.
    RePEc:eee:appene:v:336:y:2023:i:c:s0306261923001745.

    Full description at Econpapers || Download paper

  44. How Green Are the National Hydrogen Strategies?. (2022). Cheng, Wenting ; Lee, Sora.
    In: Sustainability.
    RePEc:gam:jsusta:v:14:y:2022:i:3:p:1930-:d:744577.

    Full description at Econpapers || Download paper

  45. On the Potential of Blue Hydrogen Production in Colombia: A Fossil Resource-Based Assessment for Low-Emission Hydrogen. (2022). Dominguez, Sara ; Cantillo, Nelly M ; Cobo, Martha ; Bustamante, Felipe ; Barraza-Botet, Cesar L ; Cifuentes, Bernay.
    In: Sustainability.
    RePEc:gam:jsusta:v:14:y:2022:i:18:p:11436-:d:913049.

    Full description at Econpapers || Download paper

  46. Simulation and Techno-Economic Assessment of Hydrogen Production from Biomass Gasification-Based Processes: A Review. (2022). Pang, Shusheng ; Leaver, Jonathan ; Castro, Jhulimar.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:22:p:8455-:d:970719.

    Full description at Econpapers || Download paper

  47. Latest eco-friendly avenues on hydrogen production towards a circular bioeconomy: Currents challenges, innovative insights, and future perspectives. (2022). Chelliapan, Shreeshivadasan ; Joo, Sang-Woo ; Yusuf, Mohammad ; Kamyab, Hesam ; Qureshi, Fazil ; Vo, Dai-Viet N ; Vasseghian, Yasser.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:168:y:2022:i:c:s1364032122007973.

    Full description at Econpapers || Download paper

  48. System integration of multi-grade exploitation of biogas chemical energy driven by solar energy. (2022). Han, Wei ; Huang, Sheng Hua ; Ma, Jingyuan ; Wang, Hongsheng ; Lin, Feng ; Su, Bosheng ; Zhang, Xiaodong.
    In: Energy.
    RePEc:eee:energy:v:241:y:2022:i:c:s0360544221031066.

    Full description at Econpapers || Download paper

  49. Conceptual design for methanol steam reforming in serial packed-bed reactors and membrane filters: Economic and environmental perspectives. (2022). Byun, Manhee ; Lee, Hyunjun ; Kim, Heehyang ; Lim, Hankwon.
    In: Energy.
    RePEc:eee:energy:v:241:y:2022:i:c:s0360544221027651.

    Full description at Econpapers || Download paper

  50. Sustainable process integration of electrification technologies with industrial energy systems. (2022). Kim, Mi Ae ; Son, Hyunsoo.
    In: Energy.
    RePEc:eee:energy:v:239:y:2022:i:pb:s0360544221023082.

    Full description at Econpapers || Download paper

  51. Smart power-to-gas deployment strategies informed by spatially explicit cost and value models. (2022). Gupta, Ruchi ; Rudisuli, Martin ; Patel, Martin Kumar ; Parra, David.
    In: Applied Energy.
    RePEc:eee:appene:v:327:y:2022:i:c:s0306261922012727.

    Full description at Econpapers || Download paper

  52. The Economics of Fruit and Vegetable Production Irrigated with Reclaimed Water Incorporating the Hidden Costs of Life Cycle Environmental Impacts. (2021). Canaj, Kledja ; Berbel, Julio ; Mehmeti, Andi.
    In: Resources.
    RePEc:gam:jresou:v:10:y:2021:i:9:p:90-:d:628611.

    Full description at Econpapers || Download paper

  53. A new design with preheating and layered porous ceramic for hydrogen production through methane steam reforming process. (2021). Siavashi, Majid ; Talesh, Hamid Reza ; Hosseini, Farzad.
    In: Energy.
    RePEc:eee:energy:v:231:y:2021:i:c:s0360544221012007.

    Full description at Econpapers || Download paper

  54. Impact of fuel cell range extender powertrain design on greenhouse gases and NOX emissions in automotive applications. (2021). Novella, R ; Lopez-Juarez, M ; Desantes, J M ; Pla, B.
    In: Applied Energy.
    RePEc:eee:appene:v:302:y:2021:i:c:s0306261921009041.

    Full description at Econpapers || Download paper

  55. Prospective hydrogen-based microgrid systems for optimal leverage via metaheuristic approaches. (2021). Guerrero, Josep M ; Ramadan, Haitham S ; Abo-Elyousr, Farag K.
    In: Applied Energy.
    RePEc:eee:appene:v:300:y:2021:i:c:s030626192100787x.

    Full description at Econpapers || Download paper

  56. The Role of Green and Blue Hydrogen in the Energy Transition—A Technological and Geopolitical Perspective. (2020). Scita, Rossana ; Raimondi, Pier Paolo ; Noussan, Michel ; Hafner, Manfred.
    In: Sustainability.
    RePEc:gam:jsusta:v:13:y:2020:i:1:p:298-:d:472767.

    Full description at Econpapers || Download paper

  57. Too much cocited documents. This list is not complete

Coauthors

Authors registered in RePEc who have wrote about the same topic

Report date: 2025-09-29 12:23:19 || Missing content? Let us know

CitEc is a RePEc service, providing citation data for Economics since 2001. Last updated August, 3 2024. Contact: Jose Manuel Barrueco.