create a website

The Biogas Potential of Oxytree Leaves. (2022). Mazurkiewicz, Jakub.
In: Energies.
RePEc:gam:jeners:v:15:y:2022:i:23:p:8872-:d:982769.

Full description at Econpapers || Download paper

Cited: 2

Citations received by this document

Cites: 86

References cited by this document

Cocites: 20

Documents which have cited the same bibliography

Coauthors: 0

Authors who have wrote about the same topic

Citations

Citations received by this document

  1. The Impact of Manure Use for Energy Purposes on the Economic Balance of a Dairy Farm. (2023). Mazurkiewicz, Jakub.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:18:p:6735-:d:1244458.

    Full description at Econpapers || Download paper

  2. Loss of Energy and Economic Potential of a Biogas Plant Fed with Cow Manure due to Storage Time. (2023). Mazurkiewicz, Jakub.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:18:p:6686-:d:1242419.

    Full description at Econpapers || Download paper

References

References cited by this document

  1. A Study of Selected Features of Shan Tong Variety of Plantation Paulownia. Available online: https://wulsannals.com/resources/ html/article/details?id=212736&language=en (accessed on 5 November 2022).
    Paper not yet in RePEc: Add citation now
  2. Adach, W.; Żuchowski, J.; Moniuszko-Szajwaj, B.; Szumacher-Strabel, M.; Stochmal, A.; Olas, B.; Cieslak, A. In Vitro Antiplatelet Activity of Extract and Its Fractions of Paulownia Clone in Vitro 112 Leaves. Biomed. Pharmacother. Biomed. Pharmacother. 2021, 137, 111301. [CrossRef] [PubMed] Energies 2022, 15, 8872 15 of 16
    Paper not yet in RePEc: Add citation now
  3. Al-Sagheer, A.A.; Abd El-Hack, M.E.; Alagawany, M.; Naiel, M.A.; Mahgoub, S.A.; Badr, M.M.; Hussein, E.O.S.; Alowaimer, A.N.; Swelum, A.A. Paulownia Leaves as A New Feed Resource: Chemical Composition and Effects on Growth, Carcasses, Digestibility, Blood Biochemistry, and Intestinal Bacterial Populations of Growing Rabbits. Animals 2019, 9, 95. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  4. Alagawany, M.; Farag, M.R.; Sahfi, M.E.; Elnesr, S.S.; Alqaisi, O.; El-Kassas, S.; Al-wajeeh, A.S.; Taha, A.E.; Abd E-Hack, M.E. Phytochemical Characteristics of Paulownia Trees Wastes and Its Use as Unconventional Feedstuff in Animal Feed. Anim. Biotechnol. 2022, 33, 586–593. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  5. Andersen, J.K.; Boldrin, A.; Christensen, T.H.; Scheutz, C. Mass Balances and Life-Cycle Inventory for a Garden Waste Windrow Composting Plant (Aarhus, Denmark). Waste Manag. Res. 2010, 28, 1010–1020. [CrossRef]
    Paper not yet in RePEc: Add citation now
  6. Ashori, A.; Nourbakhsh, A. Studies on Iranian Cultivated Paulownia—A Potential Source of Fibrous Raw Material for Paperindustry. Eur. J. Wood Wood Prod. 2009, 67, 323–327. [CrossRef]
    Paper not yet in RePEc: Add citation now
  7. Ates, S.; Ni, Y.; Akgul, M.; Tozluoglu, A. Characterization and Evaluation of Paulownia Elongota as a Raw Material for Paper Production. Afr. J. Biotechnol. 2008, 7, 4153–4158. [CrossRef]
    Paper not yet in RePEc: Add citation now
  8. Biogas from Waste and Renewable Resources—Resources • SuSanA. Available online: https://www.susana.org/en/knowledgehub /resources-and-publications/library/details/3038# (accessed on 7 November 2022).
    Paper not yet in RePEc: Add citation now
  9. Bodnár, A.; Pajor, F.; Steier, J.; Kispál, T.; Póti, P. Nutritive Value of Paulownia (Paulownia Spp.) Hybrid Tree Leaves. Hung. Agric. Res. 2014, 23, 27–32.
    Paper not yet in RePEc: Add citation now
  10. Cárdenas-Talero, J.L.; Silva-Leal, J.A.; Pérez-Vidal, A.; Torres-Lozada, P. The Influence of Municipal Wastewater Treatment Technologies on the Biological Stabilization of Sewage Sludge: A Systematic Review. Sustainability 2022, 14, 5910. [CrossRef]

  11. Chen, L.; Wang, S.; Meng, H.; Wu, Z.; Zhao, J. Study on Gas Products Distributions During Fast Co-Pyrolysis of Paulownia Wood and PET at High Temperature. Energy Procedia 2017, 105, 391–397. [CrossRef]
    Paper not yet in RePEc: Add citation now
  12. Czekała, W. Agricultural Biogas Plants as a Chance for the Development of the Agri-Food Sector. J. Ecol. Eng. 2018, 19, 179–183. [CrossRef]
    Paper not yet in RePEc: Add citation now
  13. Czekała, W.; Bartnikowska, S.; Dach, J.; Janczak, D.; Smurzyńska, A.; Kozłowski, K.; Bugała, A.; Lewicki, A.; Cieślik, M.; Typańska, D.; et al. The Energy Value and Economic Efficiency of Solid Biofuels Produced from Digestate and Sawdust. Energy 2018, 159, 1118–1122. [CrossRef]

  14. Czekała, W.; Janczak, D.; Cieślik, M.; Mazurkiewicz, J.; Pulka, J. Food Waste Management Using Hermetia Illucens Insect. J. Ecol. Eng. 2020, 21, 214–216. [CrossRef]
    Paper not yet in RePEc: Add citation now
  15. Dach, J.; Mazurkiewicz, J.; Janczak, D.; Pulka, J.; Pochwatka, P.; Kowalczyk-Juśko, A. Cow Manure Anaerobic Digestion or Composting–Energetic and Economic Analysis. In Proceedings of the 2020 4th International Conference on Green Energy and Applications (ICGEA), Singapore, 7–9 March 2020; pp. 143–147.
    Paper not yet in RePEc: Add citation now
  16. De Jesús Vargas-Soplín, A.; Prochnow, A.; Herrmann, C.; Tscheuschner, B.; Kreidenweis, U. The Potential for Biogas Production from Autumn Tree Leaves to Supply Energy and Reduce Greenhouse Gas Emissions—A Case Study from the City of Berlin. Resour. Conserv. Recycl. 2022, 187, 106598. [CrossRef]
    Paper not yet in RePEc: Add citation now
  17. Demonstration Des Quantitativen Nachweises von Salmonellen—VDLUFA. Available online: https://www.vdlufa.de/ schulungen-2/schulungen-2013/demonstration-des-quantitativen-nachweises-von-salmonellen/ (accessed on 30 October 2022).
    Paper not yet in RePEc: Add citation now
  18. Domínguez, E.; del Río, P.G.; Romaní, A.; Garrote, G.; Domingues, L. Hemicellulosic Bioethanol Production from Fast-Growing Paulownia Biomass. Processes 2021, 9, 173. [CrossRef]
    Paper not yet in RePEc: Add citation now
  19. Drzewiecka, K.; G ˛ asecka, M.; Magdziak, Z.; Budzyńska, S.; Szostek, M.; Niedzielski, P.; Budka, A.; Roszyk, E.; Doczekalska, B.; Górska, M.; et al. The Possibility of Using Paulownia elongata S. Y. Hu × Paulownia fortunei Hybrid for Phytoextraction of Toxic Elements from Post-Industrial Wastes with Biochar. Plants 2021, 10, 2049. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  20. Dubrovskis, V.; Plume, I.; Kazulis, V.; Celms, A.; Kotelenecs, V.; Zabarovskis, E. Biogas Production Potential from Agricultural Biomass and Organic Residues in Latvia. Renewable Energy and Energy Efficiency. In Proceedings of the International Scientific Conference: Renewable Energy and Energy Efficiency, Jelgava, Latvia, 28–30 May 2012; Latvia University of Agriculture: Jelgava, Latvia, 2012; pp. 115–120. Available online: https://www.tf.llu.lv/conference/proceedings2012/Papers/100_Dubrovskis_V.pdf (accessed on 7 November 2022).
    Paper not yet in RePEc: Add citation now
  21. Dżugan, M.; Miłek, M.; Grabek-Lejko, D.; H˛ eclik, J.; Jacek, B.; Litwińczuk, W. Antioxidant Activity, Polyphenolic Profiles and Antibacterial Properties of Leaf Extract of Various Paulownia Spp. Clones. Agronomy 2021, 11, 2001. [CrossRef]
    Paper not yet in RePEc: Add citation now
  22. Frankowski, J.; Zaborowicz, M.; Dach, J.; Czekała, W.; Przybył, J. Biological Waste Management in the Case of a Pandemic Emergency and Other Natural Disasters. Determination of Bioenergy Production from Floricultural Waste and Modeling of Methane Production Using Deep Neural Modeling Methods. Energies 2020, 13, 3014. [CrossRef]

  23. Grosser, A.; Neczaj, E. Sewage Sludge and Fat Rich Materials Co-Digestion—Performance and Energy Potential. J. Clean. Prod. 2018, 198, 1076–1089. [CrossRef]
    Paper not yet in RePEc: Add citation now
  24. Gu, Y.; Chen, X.; Liu, Z.; Zhou, X.; Zhang, Y. Effect of Inoculum Sources on the Anaerobic Digestion of Rice Straw. Bioresour. Technol. 2014, 158, 149–155. [CrossRef]
    Paper not yet in RePEc: Add citation now
  25. He, T.; Vaidya, B.N.; Perry, Z.D.; Parajuli, P.; Joshee, N. Paulownia as a Medicinal Tree: Traditional Uses and Current Advances. Eur. J. Med. Plants 2016, 14, 1–15. [CrossRef]
    Paper not yet in RePEc: Add citation now
  26. Home. Available online: https://www.mels-project.eu/ (accessed on 1 November 2022).
    Paper not yet in RePEc: Add citation now
  27. Huang, H.; Szumacher-Strabel, M.; Patra, A.K.; Ślusarczyk, S.; Lechniak, D.; Vazirigohar, M.; Varadyova, Z.; Kozłowska, M.; Cieślak, A. Chemical and Phytochemical Composition, in Vitro Ruminal Fermentation, Methane Production, and Nutrient Degradability of Fresh and Ensiled Paulownia Hybrid Leaves. Anim. Feed Sci. Technol. 2021, 279, 115038. [CrossRef]
    Paper not yet in RePEc: Add citation now
  28. Huseinovic, S.; Osmanović, Z.; Bektić, S.; Ahmetbegović, S. Paulownia Elongata Sy Hu in Function of Improving the Quality of the Environment. Period. Eng. Nat. Sci. PEN 2017, 5, 117–123. [CrossRef]
    Paper not yet in RePEc: Add citation now
  29. Icka, P.; Damo, R.; Icka, E. Paulownia Tomentosa, a Fast Growing Timber. Ann. Valahia Univ. Targoviste Agric. 2016, 10, 14. [CrossRef]
    Paper not yet in RePEc: Add citation now
  30. Jakubowski, M. Cultivation Potential and Uses of Paulownia Wood: A Review. Forests 2022, 13, 668. [CrossRef]
    Paper not yet in RePEc: Add citation now
  31. Jiang, M.; Qiao, W.; Wang, Y.; Zou, T.; Lin, M.; Dong, R. Balancing Acidogenesis and Methanogenesis Metabolism in Thermophilic Anaerobic Digestion of Food Waste under a High Loading Rate. Sci. Total Environ. 2022, 824, 153867. [CrossRef]
    Paper not yet in RePEc: Add citation now
  32. Kadlec, J.; Novosadová, K.; Pokorný, R. The Estimate of the Required Amount of Water on the Growth of Five Species of Paulownia at the First Year of Cultivation in a Central Europe. Res. Sq. 2022. [CrossRef]
    Paper not yet in RePEc: Add citation now
  33. Klimek, K.E.; Wrzesińska-Jedrusiak, E.; Kapłan, M.; Łaska-Zieja, B. Management of biomass of selected grape leaves varieties in the process of methane fermentation. J. Water Land Dev. 2022, 55, 17–27. [CrossRef]
    Paper not yet in RePEc: Add citation now
  34. KTBL: Ktbl.De. Available online: https://www.ktbl.de/ (accessed on 30 October 2022).
    Paper not yet in RePEc: Add citation now
  35. Kujawa, S.; Mazurkiewicz, J.; Czekała, W. Using Convolutional Neural Networks to Classify the Maturity of Compost Based on Sewage Sludge and Rapeseed Straw. J. Clean. Prod. 2020, 258, 120814. [CrossRef]
    Paper not yet in RePEc: Add citation now
  36. Kupryaniuk, K.; Oniszczuk, T.; Combrzyński, M.; Wójtowicz, A.; Mitrus, M. Effect of Extrusion-Cooking Conditions on the Physical Properties of Jerusalem Artichoke Straw. Int. Agrophys. 2020, 34, 441–449. [CrossRef]
    Paper not yet in RePEc: Add citation now
  37. Lachowicz, H.; Giedrowicz, A. Charakterystyka jakości technicznej drewna paulowni COTE-2. Sylwan 2020, 164, 414–423. [CrossRef]
    Paper not yet in RePEc: Add citation now
  38. Liew, L.N.; Shi, J.; Li, Y. Enhancing the Solid-State Anaerobic Digestion of Fallen Leaves through Simultaneous Alkaline Treatment. Bioresour. Technol. 2011, 102, 8828–8834. [CrossRef]
    Paper not yet in RePEc: Add citation now
  39. Marks, S.; Dach, J.; Morales, F.J.F.; Mazurkiewicz, J.; Pochwatka, P.; Gierz, Ł. New Trends in Substrates and Biogas Systems in Poland. J. Ecol. Eng. 2020, 21, 19–25. [CrossRef]
    Paper not yet in RePEc: Add citation now
  40. Mazurkiewicz, J. Energy and Economic Balance between Manure Stored and Used as a Substrate for Biogas Production. Energies 2022, 15, 413. [CrossRef] Energies 2022, 15, 8872 16 of 16

  41. Mazurkiewicz, J.; Marczuk, A.; Pochwatka, P.; Kujawa, S. Maize Straw as a Valuable Energetic Material for Biogas Plant Feeding. Materials 2019, 12, 3848. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  42. Microbial Diversity of Paulownia Spp. Leaves—A New Source of Green Manure: BioResources. Available online: https:// bioresources.cnr.ncsu.edu/ (accessed on 4 November 2022).
    Paper not yet in RePEc: Add citation now
  43. Neczaj, E.; Grosser, A. Circular Economy in Wastewater Treatment Plant–Challenges and Barriers. Proceedings 2018, 2, 614. [CrossRef]
    Paper not yet in RePEc: Add citation now
  44. OECD. Energy: The Next Fifty Years; OECD: Paris, France, 1999; Available online: https://www.oecd.org/futures/17738498.pdf (accessed on 23 October 2022).
    Paper not yet in RePEc: Add citation now
  45. Oxytree—Strona Główna. Available online: https://oxytree.pl/ (accessed on 4 November 2022).
    Paper not yet in RePEc: Add citation now
  46. Özelçam, H.; İpçak, H.H.; Özüretmen, S.; Canbolat, Ö. Feed Value of Dried and Ensiled Paulownia (Paulownia Spp.) Leaves and Their Relationship to Rumen Fermentation, in Vitro Digestibility, and Gas Production Characteristics. Rev. Bras. Zootec. 2021, 50, e20210057. [CrossRef]
    Paper not yet in RePEc: Add citation now
  47. Palma, A.; Loaiza, J.M.; Díaz, M.J.; García, J.C.; Giráldez, I.; López, F. Tagasaste, Leucaena and Paulownia: Three Industrial Crops for Energy and Hemicelluloses Production. Biotechnol. Biofuels 2021, 14, 89. [CrossRef]
    Paper not yet in RePEc: Add citation now
  48. Paulownia Trees Best Cultivars for Timber Bellissia & Paulemia. Paulownia Trees. Available online: https://paulowniatrees.eu/ products/paulownia-planting-material/ (accessed on 23 October 2022).
    Paper not yet in RePEc: Add citation now
  49. Pavliukh, L.; Boichenko, S.; Onopa, V.; Tykhenko, O.; Topilnytskyy, P.; Romanchuk, V.; Samsin, I. Resource Potential for Biogas Production in Ukraine. Chem. Chem. Technol. 2019, 13, 101–106. [CrossRef]
    Paper not yet in RePEc: Add citation now
  50. Pikoń, K.; Bogacka, M. Contemporary Problems of Power Engineering and Environmental Protection 2020; Department of Technologies and Installations for Waste Management: Gliwice, Poland, 2021; ISBN 978-83-950087-9-5.
    Paper not yet in RePEc: Add citation now
  51. Pilarska, A.A.; Wolna-Maruwka, A.; Niewiadomska, A.; Pilarski, K.; Olesienkiewicz, A. A Comparison of the Influence of Kraft Lignin and the Kraft Lignin/Silica System as Cell Carriers on the Stability and Efficiency of the Anaerobic Digestion Process. Energies 2020, 13, 5803. [CrossRef]

  52. Pochwatka, P.; Kowalczyk-Juśko, A.; Sołowiej, P.; Wawrzyniak, A.; Dach, J. Biogas Plant Exploitation in a Middle-Sized Dairy Farm in Poland: Energetic and Economic Aspects. Energies 2020, 13, 6058. [CrossRef]

  53. Popova, T.P.; Baykov, B.D. Antimicrobial Activity of Aqueous Extracts of Leaves and Silage from Paulownia Elongata. Am. J. Biol. Chem. Pharm. Sci. 2013, 1, 8–15.
    Paper not yet in RePEc: Add citation now
  54. Ren, L.; Hou, Z.; Gao, Y.; Fu, X.; Yu, D.; Lin, M.; Dong, R.; Qiao, W. Maintaining the Long Term Stability of Anaerobic Digestion of Maize Straw in a Continuous Plug Flow Reactor by Verifying the Key Role of Trace Elements. Res. Sq. 2022. [CrossRef] Energies 2022, 15, 8872 14 of 16
    Paper not yet in RePEc: Add citation now
  55. Rencoret, J.; Marques, G.; Gutiérrez, A.; Nieto, L.; Jiménez-Barbero, J.; Martínez, .T.; del Río, J.C. Isolation and Structural Characterization of the Milled-Wood Lignin from Paulownia Fortunei Wood. Ind. Crops Prod. 2009, 30, 137–143. [CrossRef]
    Paper not yet in RePEc: Add citation now
  56. Ritchie, H.; Roser, M.; Rosado, P. CO2 and Greenhouse Gas Emissions. Our World Data. 2020. Available online: https: //ourworldindata.org/greenhouse-gas-emissions (accessed on 23 October 2022).
    Paper not yet in RePEc: Add citation now
  57. Ritchie, H.; Roser, M.; Rosado, P. Energy. Our World Data. 2022. Available online: https://ourworldindata.org/energy (accessed on 23 October 2022).
    Paper not yet in RePEc: Add citation now
  58. Rouf, M.A.; Islam, M.S.; Rabeya, T.; Mondal, A. Anaerobic Digestion of Mixed Dried Fallen Leaves by Mixing with Cow Dung. Bangladesh J. Sci. Ind. Res. 2015, 50, 163–168. [CrossRef]
    Paper not yet in RePEc: Add citation now
  59. Rozakis, S.; Juvančič, L.; Kovacs, B. Bioeconomy for Resilient Post-COVID Economies. Energies 2022, 15, 2958. [CrossRef]
    Paper not yet in RePEc: Add citation now
  60. Song, Z.; Liu, X.; Yan, Z.; Yuan, Y.; Liao, Y. Comparison of Seven Chemical Pretreatments of Corn Straw for Improving Methane Yield by Anaerobic Digestion. PLoS ONE 2014, 9, e93801. [CrossRef]
    Paper not yet in RePEc: Add citation now
  61. Stochmal, A.; Moniuszko-Szajwaj, B.; Zuchowski, J.; Pecio, Ł.; Kontek, B.; Szumacher-Strabel, M.; Olas, B.; Cieslak, A. Qualitative and Quantitative Analysis of Secondary Metabolites in Morphological Parts of Paulownia Clon In Vitro 112 and Their Anticoagulant Properties in Whole Human Blood. Molecules 2022, 27, 980. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  62. Styszko, K.; Durak, J.; Kończak, B.; Głodniok, M.; Borgulat, A. The Impact of Sewage Sludge Processing on the Safety of Its Use. Sci. Rep. 2022, 12, 12227. [CrossRef]
    Paper not yet in RePEc: Add citation now
  63. Świechowski, K.; Liszewski, M.; B ˛ abelewski, P.; Koziel, J.A.; Białowiec, A. Fuel Properties of Torrefied Biomass from Pruning of Oxytree. Data 2019, 4, 55. [CrossRef]

  64. Sytnyk, S.; Lovynska, V.; Kharytonov, M.; Rula, I.; Poliakh, V.; Roubík, H. Thermal Analysis of Aboveground Biomass of the Two Species Cultivated in Artificial Forest Plantations in Marginal Lands of Ukraine. Int. J. Environ. Stud. 2021, 1–10. [CrossRef]
    Paper not yet in RePEc: Add citation now
  65. Tahir, N.; Nadeem, F.; Jabeen, F.; Rani Singhania, R.; Yaqub Qazi, U.; Kumar Patel, A.; Javaid, R.; Zhang, Q. Enhancing Biohydrogen Production from Lignocellulosic Biomass of Paulownia Waste by Charge Facilitation in Zn Doped SnO2 Nanocatalysts. Bioresour. Technol. 2022, 355, 127299. [CrossRef]
    Paper not yet in RePEc: Add citation now
  66. Technical Possibilities of Biogas Production from Olive and Date Waste in Jordan: BioResources. Available online: https:// bioresources.cnr.ncsu.edu/ (accessed on 19 November 2022).
    Paper not yet in RePEc: Add citation now
  67. Verner, V.; Mazancová, J.; Jelínek, M.; Phung, L.D.; Van Dung, D.; Banout, J.; Roubík, H. Economics and Perception of Small-Scale Biogas Plant Benefits Installed among Peri-Urban and Rural Areas in Central Vietnam. Biomass Convers. Biorefin. 2021. [CrossRef]
    Paper not yet in RePEc: Add citation now
  68. Vityi, A.; Marosvölgyi, B. New Tree Species for Agroforestry and Energy Purposes. In Proceedings of the 2014 International Conference on Energy, Environment, Ecosystems and Development II (EEED ‘14)/2014 International Conference on Biology and Biomedicine II (BIO ‘14), Prague, Czech Republic, 2–4 April 2014.
    Paper not yet in RePEc: Add citation now
  69. Wang, J.; Yin, Y. Principle and Application of Different Pretreatment Methods for Enriching Hydrogen-Producing Bacteria from Mixed Cultures. Int. J. Hydrogen Energy 2017, 42, 4804–4823. [CrossRef]
    Paper not yet in RePEc: Add citation now
  70. Witaszek, K.; Herkowiak, M.; Pilarska, A.A.; Czekała, W. Methods of Handling the Cup Plant (Silphium perfoliatum L.) for Energy Production. Energies 2022, 15, 1897. [CrossRef]

  71. Witaszek, K.; Pilarski, K.; Niedbała, G.; Pilarska, A.A.; Herkowiak, M. Energy Efficiency of Comminution and Extrusion of Maize Substrates Subjected to Methane Fermentation. Energies 2020, 13, 1887. [CrossRef]

  72. Xu, S.; Bi, G.; Liu, X.; Yu, Q.; Li, D.; Yuan, H.; Chen, Y.; Xie, J. Anaerobic Co-Digestion of Sugarcane Leaves, Cow Dung and Food Waste: Focus on Methane Yield and Synergistic Effects. Fermentation 2022, 8, 399. [CrossRef]
    Paper not yet in RePEc: Add citation now
  73. Yadav, N.K.; Vaidya, B.N.; Henderson, K.; Lee, J.F.; Stewart, W.M.; Dhekney, S.A.; Joshee, N. A Review of Paulownia Biotechnology: A Short Rotation, Fast Growing Multipurpose Bioenergy Tree. Am. J. Plant Sci. 2013, 4, 2070–2082. [CrossRef]
    Paper not yet in RePEc: Add citation now
  74. Yang, G.; Hu, Y.; Wang, J. Biohydrogen Production from Co-Fermentation of Fallen Leaves and Sewage Sludge. Bioresour. Technol. 2019, 285, 121342. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  75. Yang, G.; Wang, J. Co-Fermentation of Sewage Sludge with Ryegrass for Enhancing Hydrogen Production: Performance Evaluation and Kinetic Analysis. Bioresour. Technol. 2017, 243, 1027–1036. [CrossRef]
    Paper not yet in RePEc: Add citation now
  76. Yao, Y.; Chen, S.; Kafle, G.K. Importance of “Weak-Base” Poplar Wastes to Process Performance and Methane Yield in Solid-State Anaerobic Digestion. J. Environ. Manag. 2017, 193, 423–429. [CrossRef]
    Paper not yet in RePEc: Add citation now
  77. Yao, Y.; He, M.; Ren, Y.; Ma, L.; Luo, Y.; Sheng, H.; Xiang, Y.; Zhang, H.; Li, Q.; An, L. Anaerobic Digestion of Poplar Processing Residues for Methane Production after Alkaline Treatment. Bioresour. Technol. 2013, 134, 347–352. [CrossRef]
    Paper not yet in RePEc: Add citation now
  78. Yavorov, N.; Petrin, S.; Valchev, I.; Nenkova, S. Potential of Fast Growing Poplar, Willow and Paulownia for Bioenergy Production. Bulg. Chem. Commun. 2015, 47, 5–9.
    Paper not yet in RePEc: Add citation now
  79. Yi, W.; Nadeem, F.; Xu, G.; Zhang, Q.; Joshee, N.; Tahir, N. Modifying Crystallinity, and Thermo-Optical Characteristics of Paulownia Biomass through Ultrafine Grinding and Evaluation of Biohydrogen Production Potential. J. Clean. Prod. 2020, 269, 122386. [CrossRef]
    Paper not yet in RePEc: Add citation now
  80. Yin, Y.; Hu, Y.; Wang, J. Co-Fermentation of Sewage Sludge and Lignocellulosic Biomass for Production of Medium-Chain Fatty Acids. Bioresour. Technol. 2022, 361, 127665. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  81. Yin, Y.; Wang, J. Production of Medium-Chain Fatty Acids by Co-Fermentation of Antibiotic Fermentation Residue with Fallen Ginkgo Leaves. Bioresour. Technol. 2022, 360, 127607. [CrossRef]
    Paper not yet in RePEc: Add citation now
  82. Yorgun, S.; Yıldız, D. Slow Pyrolysis of Paulownia Wood: Effects of Pyrolysis Parameters on Product Yields and Bio-Oil Characterization. J. Anal. Appl. Pyrolysis 2015, 114, 68–78. [CrossRef]
    Paper not yet in RePEc: Add citation now
  83. Zhang, M.; Chen, Y.; Du, L.; Wu, Y.; Liu, Z.; Han, L. The Potential of Paulownia Fortunei Seedlings for the Phytoremediation of Manganese Slag Amended with Spent Mushroom Compost. Ecotoxicol. Environ. Saf. 2020, 196, 110538. [CrossRef]
    Paper not yet in RePEc: Add citation now
  84. Zhang, Q.; Jin, P.; Li, Y.; Zhang, Z.; Zhang, H.; Ru, G.; Jiang, D.; Jing, Y.; Zhang, X. Analysis of the Characteristics of Paulownia Lignocellulose and Hydrogen Production Potential via Photo Fermentation. Bioresour. Technol. 2022, 344, 126361. [CrossRef] [PubMed]
    Paper not yet in RePEc: Add citation now
  85. Zhang, S.; Wang, Y.; Liu, S. Process Optimization for the Anaerobic Digestion of Poplar (Populus L.) Leaves. Bioengineered 2020, 11, 439–448. [CrossRef]
    Paper not yet in RePEc: Add citation now
  86. Żukowska, G.; Mazurkiewicz, J.; Myszura, M.; Czekała, W. Heat Energy and Gas Emissions during Composting of Sewage Sludge. Energies 2019, 12, 4782. [CrossRef]

Cocites

Documents in RePEc which have cited the same bibliography

  1. Thermochemical processing of digestate derived from anaerobic digestion of lignocellulosic biomass: A review. (2024). Cheng, Zhanjun ; Zhu, Xiaochao ; Zhou, Shengquan ; Li, Jian ; Yan, Beibei ; Wang, Zhi.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:199:y:2024:i:c:s1364032124002417.

    Full description at Econpapers || Download paper

  2. Sewage sludge thermal hydrolysis impact on the quality of biogas in anaerobic digestion process – siloxanes and VOCs studies. (2024). Gaska, Krzysztof ; Pajk, Tadeusz ; Bana, Marian ; Rzepecki, Tadeusz ; Mukawa, Jakub.
    In: Energy.
    RePEc:eee:energy:v:311:y:2024:i:c:s0360544224032262.

    Full description at Econpapers || Download paper

  3. Toward New Value-Added Products Made from Anaerobic Digestate: Part 2—Effect of Loading Level on the Densification of Solid Digestate. (2023). Kulig, Ryszard ; Ysiak, Grzegorz ; Kowalczyk-Juko, Alina.
    In: Sustainability.
    RePEc:gam:jsusta:v:15:y:2023:i:9:p:7396-:d:1136355.

    Full description at Econpapers || Download paper

  4. Toward New Value-Added Products Made from Anaerobic Digestate: Part 1—Study on the Effect of Moisture Content on the Densification of Solid Digestate. (2023). Kulig, Ryszard ; al Aridhee, Jawad Kadhim ; Ysiak, Grzegorz.
    In: Sustainability.
    RePEc:gam:jsusta:v:15:y:2023:i:5:p:4548-:d:1086857.

    Full description at Econpapers || Download paper

  5. Air Pollutants Emission during Co-Combustion of Animal Manure and Wood Pellets in 15 kW Boiler. (2023). Rzenik, Wojciech ; Mielcarek-Bocheska, Paulina ; Urbaski, Mateusz.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:18:p:6691-:d:1242576.

    Full description at Econpapers || Download paper

  6. A Review on Characteristics, Techniques, and Waste-to-Energy Aspects of Municipal Solid Waste Management: Bangladesh Perspective. (2022). Naddeo, Vincenzo ; Prantika, Tonima Rahman ; Alam, Samiha Raisa ; Bin-Masud, Rayhan ; Islam, Md Shahinoor ; Pervez, Md Nahid ; Roy, Hridoy.
    In: Sustainability.
    RePEc:gam:jsusta:v:14:y:2022:i:16:p:10265-:d:891479.

    Full description at Econpapers || Download paper

  7. Application of Post-Flotation Dairy Sludge in the Production of Wood Pellets: Pelletization and Combustion Analysis. (2022). Czekaa, Wojciech ; Dbrowski, Sebastian ; Obidziski, Sawomir ; Yildiz, Magdalena Joka ; Jasiski, Jan.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:24:p:9427-:d:1001886.

    Full description at Econpapers || Download paper

  8. The Biogas Potential of Oxytree Leaves. (2022). Mazurkiewicz, Jakub.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:23:p:8872-:d:982769.

    Full description at Econpapers || Download paper

  9. The hydropower sector in Poland: Historical development and current status. (2022). Hammerling, Mateusz ; Sojka, Mariusz ; Ptak, Mariusz ; Mokwa, Marian ; Dach, Jacek ; Szkudlarek, Arkadiusz ; Czekaa, Wojciech ; Kaua, Tomasz ; Kasperek, Robert ; Zawadzki, Pawe ; Czechlowski, Mirosaw.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:158:y:2022:i:c:s1364032122000788.

    Full description at Econpapers || Download paper

  10. Chemical Characteristics of Selected Grass Species from Polish Meadows and Their Potential Utilization for Energy Generation Purposes. (2021). Czekaa, Wojciech ; Grzelak, Mieczysaw ; Gawe, Eliza ; Waliszewska, Bogusawa ; Spek-Dwigaa, Agnieszka ; Sieradzka, Agnieszka.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:6:p:1669-:d:519156.

    Full description at Econpapers || Download paper

  11. Assessment of Cow Dung Pellets as a Renewable Solid Fuel in Direct Combustion Technologies. (2021). Joka, Magdalena ; Aska, Grayna ; Szymajda, Aneta.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:4:p:1192-:d:504127.

    Full description at Econpapers || Download paper

  12. On the Effect of the Distances between Coal and Wood Particles during Their Joint Pyrolysis on Sulfur Oxides Formation. (2021). Yankovsky, Stanislav ; Kuznetsov, Geniy ; Tolokolnikov, Anton ; Misyukova, Albina.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:24:p:8321-:d:699388.

    Full description at Econpapers || Download paper

  13. Solid Fraction of Digestate from Biogas Plant as a Material for Pellets Production. (2021). Czekaa, Wojciech.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:16:p:5034-:d:615663.

    Full description at Econpapers || Download paper

  14. Assessing the Cost of Biomass and Bioenergy Production in Agroindustrial Processes. (2021). Amezcua-Allieri, Myriam A ; Aburto, Jorge ; Martinez-Hernandez, Elias.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:14:p:4181-:d:592168.

    Full description at Econpapers || Download paper

  15. Economic Determinants of Low-Carbon Development in the Visegrad Group Countries. (2021). Wyrobek, Joanna ; Popawski, Ukasz ; Dziku, Maciej.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:13:p:3823-:d:582025.

    Full description at Econpapers || Download paper

  16. “Drop-in” fuel production from biomass: Critical review on techno-economic feasibility and sustainability. (2021). Harris, Jonathan Stuart ; Kargbo, Hannah ; Phan, Anh N.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:135:y:2021:i:c:s1364032120304597.

    Full description at Econpapers || Download paper

  17. Biogas Plant Exploitation in a Middle-Sized Dairy Farm in Poland: Energetic and Economic Aspects. (2020). Soowiej, Piotr ; Pochwatka, Patrycja ; Dach, Jacek ; Kowalczyk-Juko, Alina ; Wawrzyniak, Agnieszka.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:22:p:6058-:d:447761.

    Full description at Econpapers || Download paper

  18. Energy value estimation of silages for substrate in biogas plants using an artificial neural network. (2020). Mazurkiewicz, Jakub ; Dach, Jacek ; Janczak, Damian ; Marczuk, Andrzej ; Kowalczyk-Juko, Alina ; Czekaa, Wojciech ; Pochwatka, Patrycja ; Zaborowicz, Maciej.
    In: Energy.
    RePEc:eee:energy:v:202:y:2020:i:c:s0360544220308367.

    Full description at Econpapers || Download paper

  19. Densification and Combustion of Cherry Stones. (2019). Obidziski, Sawomir ; Krasowska, Magorzata ; Kowczyk-Sadowy, Magorzata ; Doyska, Magdalena.
    In: Energies.
    RePEc:gam:jeners:v:12:y:2019:i:16:p:3042-:d:255541.

    Full description at Econpapers || Download paper

  20. The optimum conditions for preparing briquette made from millet bran using Generalized Distance Function. (2019). Zhang, Xiuquan ; Wu, Kai ; Zheng, Decong.
    In: Renewable Energy.
    RePEc:eee:renene:v:140:y:2019:i:c:p:692-703.

    Full description at Econpapers || Download paper

Coauthors

Authors registered in RePEc who have wrote about the same topic

Report date: 2025-10-05 02:01:42 || 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.