- Abd, A.A. ; Naji, S.Z. ; Hashim, A.S. ; Othman, M.R. Carbon dioxide removal through physical adsorption using carbonaceous and non-carbonaceous adsorbents: a review. 2020 J Environ Chem Eng. 8 -
Paper not yet in RePEc: Add citation now
- Abnisa, F. ; Daud, W.M.A.W. A review on co-pyrolysis of biomass: an optional technique to obtain a high-grade pyrolysis oil. 2014 Energy Convers Manag. 87 71-85
Paper not yet in RePEc: Add citation now
- Abuelnoor, N. ; AlHajaj, A. ; Khaleel, M. ; Vega, L.F. ; Abu-Zahra, M.R.M. Activated carbons from biomass-based sources for CO2 capture applications. 2021 Chemosphere. 282 -
Paper not yet in RePEc: Add citation now
- Acevedo, S. ; Giraldo, L. ; Moreno-Piraján, J.C. Adsorption of CO2 on activated carbons prepared by chemical activation with cupric nitrate. 2020 ACS Omega. 5 10423-10432
Paper not yet in RePEc: Add citation now
Ahmed, I. ; Zia, M.A. ; Afzal, H. ; Ahmed, S. ; Ahmad, M. ; Akram, Z. Socio-economic and environmental impacts of biomass valorisation: a strategic drive for sustainable bioeconomy. 2021 Sustainability. 13 4200-
- Ahmed, M.B. ; Johir, M.A.H. ; Zhou, J.L. ; Ngo, H.H. ; Nghiem, L.D. ; Richardson, C. Activated carbon preparation from biomass feedstock: clean production and carbon dioxide adsorption. 2019 J Clean Prod. 225 405-413
Paper not yet in RePEc: Add citation now
- Akdag, A.S. ; Durán, I. ; Gullu, G. ; Pevida, C. Performance of TSA and VSA post-combustion CO2 capture processes with a biomass waste-based adsorbent. 2022 J Environ Chem Eng. 10 -
Paper not yet in RePEc: Add citation now
- Ashourirad, B. ; Arab, P. ; Islamoglu, T. ; Cychosz, K.A. ; Thommes, M. ; El-Kaderi, H.M. A cost-effective synthesis of heteroatom-doped porous carbons as efficient CO 2 sorbents. 2016 J Mater Chem A. 4 14693-14702
Paper not yet in RePEc: Add citation now
- Balou, S. ; Babak, S.E. ; Priye, A. Synergistic effect of nitrogen doping and ultra-microporosity on the performance of biomass and microalgae-derived activated carbons for CO2 capture. 2020 ACS Appl Mater \& Interfaces. 12 42711-42722
Paper not yet in RePEc: Add citation now
- Biti, S. ; McCue, A.J. ; Dionisi, D. ; Graça, I. ; Martín, C.F. Greener carbon capture using microwave heating for the development of cellulose-based adsorbents. 2024 Fuel. 358 -
Paper not yet in RePEc: Add citation now
- Boujibar, O. ; Souikny, A. ; Ghamouss, F. ; Achak, O. ; Dahbi, M. ; Chafik, T. CO2 capture using N-containing nanoporous activated carbon obtained from argan fruit shells. 2018 J Environ Chem Eng. 6 1995-2002
Paper not yet in RePEc: Add citation now
- CDIAC Carbon dioxide Information analysis center. 2011 :
Paper not yet in RePEc: Add citation now
- Chen, J. ; Yang, J. ; Hu, G. ; Hu, X. ; Li, Z. ; Shen, S. Enhanced CO2 capture capacity of nitrogen-doped biomass-derived porous carbons. 2016 ACS Sustain Chem \& Eng. 4 1439-1445
Paper not yet in RePEc: Add citation now
Chen, W. ; Gong, M. ; Li, K. ; Xia, M. ; Chen, Z. ; Xiao, H. Insight into KOH activation mechanism during biomass pyrolysis: chemical reactions between O-containing groups and KOH. 2020 Appl Energy. 278 -
- Chronopoulos, T. ; Fernandez-Diez, Y. ; Maroto-Valer, M.M. ; Ocone, R. ; Reay, D.A. Utilisation of microwave energy for CO2 desorption in post-combustion carbon capture using solid sorbents. 2014 Energy Procedia. 63 2109-2115
Paper not yet in RePEc: Add citation now
- Creamer, A.E. ; Gao, B. Carbon-based adsorbents for postcombustion CO2 capture: a critical review. 2016 Environ Sci Technol. 50 7276-7289
Paper not yet in RePEc: Add citation now
- Creamer, A.E. ; Gao, B. ; Wang, S. Carbon dioxide capture using various metal oxyhydroxide--biochar composites. 2016 Chem Eng J. 283 826-832
Paper not yet in RePEc: Add citation now
Czerwińska, K. ; Śliz, M. ; Wilk, M. Hydrothermal carbonization process: fundamentals, main parameter characteristics and possible applications including an effective method of SARS-CoV-2 mitigation in sewage sludge. A review. 2022 Renew Sustain Energy Rev. 154 -
- D\’\iez, N. ; Álvarez, P. ; Granda, M. ; Blanco, C. ; Santamar\’\ia, R. ; Menéndez, R. N-enriched ACF from coal-based pitch blended with urea-based resin for CO2 capture. 2015 Microporous Mesoporous Mater. 201 10-16
Paper not yet in RePEc: Add citation now
- Demiral, H. ; Demiral, ; Ilknur, Preparation and characterization of carbon molecular sieves from chestnut shell by chemical vapor deposition. 2018 Adv Powder Technol. 29 3033-3039
Paper not yet in RePEc: Add citation now
- Deng, S. ; Chen, T. ; Zhao, T. ; Yao, X. ; Wang, B. ; Huang, J. Role of micropores and nitrogen-containing groups in CO2 adsorption on indole-3-butyric acid potassium derived carbons. 2016 Chem Eng J. 286 98-105
Paper not yet in RePEc: Add citation now
- Dhoke, C. ; Zaabout, A. ; Cloete, S. ; Amini, S. Review on reactor configurations for adsorption-based CO2 capture. 2021 Ind \& Eng Chem Res. 60 3779-3798
Paper not yet in RePEc: Add citation now
Doddapaneni, T.R.K.C. ; Praveenkumar, R. ; Tolvanen, H. ; Rintala, J. ; Konttinen, J. Techno-economic evaluation of integrating torrefaction with anaerobic digestion. 2018 Appl Energy. 213 272-284
- Durán-Jiménez, G. ; Rodriguez, J. ; Kostas, E.T. ; Stevens, L.A. ; Lozada-Rodríguez, L. ; Binner, E. Simultaneous conventional and microwave heating for the synthesis of adsorbents for CO2 capture: comparative study to pristine technologies. 2022 Chem Eng J. 438 -
Paper not yet in RePEc: Add citation now
- Durán, I. ; Rubiera, F. ; Pevida, C. Vacuum swing CO2 adsorption cycles in Waste-to-Energy plants. 2020 Chem Eng J. 382 -
Paper not yet in RePEc: Add citation now
- Fenrong, L.I. ; Honghong, Y.I. ; Xiaolong, T. ; Ping, N. ; Qiongfen, Y.U. ; Dongjuan, K. Adsorption of carbon dioxide by coconut activated carbon modified with Cu/Ce. 2010 J Rare Earths. 28 334-337
Paper not yet in RePEc: Add citation now
- Foley, H.C. Carbogenic molecular sieves: synthesis, properties and applications. 1995 Microporous Mater. 4 407-433
Paper not yet in RePEc: Add citation now
- Gaikwad, S. ; Kim, Y. ; Gaikwad, R. ; Han, S. Enhanced CO2 capture capacity of amine-functionalized MOF-177 metal organic framework. 2021 J Environ Chem Eng. 9 -
Paper not yet in RePEc: Add citation now
- Goel, C. ; Mohan, S. ; Dinesha, P. CO2 capture by adsorption on biomass-derived activated char: a review. 2021 Sci Total Environ. 798 -
Paper not yet in RePEc: Add citation now
- Gu, H. ; Bergman, R. ; Anderson, N. ; Alanya-Rosenbaum, S. Life-cycle assessment of activated carbon from woody biomass. 2018 Wood Fiber Sci. 50 229-243
Paper not yet in RePEc: Add citation now
- Guo, X. ; Zhang, G. ; Wu, C. ; Liu, J. ; Li, G. ; Zhao, Y. A cost-effective synthesis of heteroatom-doped porous carbon by sulfur-containing waste liquid treatment: as a promising adsorbent for CO2 capture. 2021 J Environ Chem Eng. 9 -
Paper not yet in RePEc: Add citation now
- Guo, Y. ; Tan, C. ; Sun, J. ; Li, W. ; Zhang, J. ; Zhao, C. Porous activated carbons derived from waste sugarcane bagasse for CO2 adsorption. 2020 Chem Eng J. 381 -
Paper not yet in RePEc: Add citation now
- Han, J. ; Zhang, L. ; Zhao, B. ; Qin, L. ; Wang, Y. ; Xing, F. The N-doped activated carbon derived from sugarcane bagasse for CO2 adsorption. 2019 Ind Crops Prod. 128 290-297
Paper not yet in RePEc: Add citation now
- Han, S.J. ; Bang, Y. ; Kwon, H.J. ; Lee, H.C. ; Hiremath, V. ; Song, I.K. Elevated temperature CO2 capture on nano-structured MgO--Al2O3 aerogel: effect of Mg/Al molar ratio. 2014 Chem Eng J. 242 357-363
Paper not yet in RePEc: Add citation now
- He, S. ; Chen, G. ; Xiao, H. ; Shi, G. ; Ruan, C. ; Ma, Y. Facile preparation of N-doped activated carbon produced from rice husk for CO2 capture. 2021 J Colloid Interface Sci. 582 90-101
Paper not yet in RePEc: Add citation now
- Hong, S.-M. ; Yoon, H.J. ; Choi, Y. ; Cho, Y.-Z. ; Mun, S. ; Pol, V.G. Solving two environmental problems simultaneously: scalable production of carbon microsheets from structured packing peanuts with tailored microporosity for efficient CO2 capture. 2020 Chem Eng J. 379 -
Paper not yet in RePEc: Add citation now
- Hosseini, S. ; Bayesti, I. ; Marahel, E. ; Babadi, F.E. ; Abdullah, L.C. ; Choong, T.S.Y. Adsorption of carbon dioxide using activated carbon impregnated with Cu promoted by zinc. 2015 J Taiwan Inst Chem Eng. 52 109-117
Paper not yet in RePEc: Add citation now
- Hu, Y.H. ; Ruckenstein, E. Applicability of Dubinin--Astakhov equation to CO2 adsorption on single-walled carbon nanotubes. 2006 Chem Phys Lett. 425 306-310
Paper not yet in RePEc: Add citation now
- Huang, G. ; Liu, Y. ; Wu, X. ; Cai, J. Activated carbons prepared by the KOH activation of a hydrochar from garlic peel and their CO2 adsorption performance. 2019 New Carbon Mater. 34 247-257
Paper not yet in RePEc: Add citation now
- Ji, Y. ; Zhang, C. ; Zhang, X.J. ; Xie, P.F. ; Wu, C. ; Jiang, L. A high adsorption capacity bamboo biochar for CO2 capture for low temperature heat utilization. 2022 Sep Purif Technol. 293 -
Paper not yet in RePEc: Add citation now
Jiang, L. ; Gonzalez-Diaz, A. ; Ling-Chin, J. ; Roskilly, A.P. ; Smallbone, A.J. Post-combustion CO2 capture from a natural gas combined cycle power plant using activated carbon adsorption. 2019 Appl Energy. 245 1-15
- Jiang, L. ; Roskilly, A.P. ; Wang, R.Z. Performance exploration of temperature swing adsorption technology for carbon dioxide capture. 2018 Energy Convers Manag. 165 396-404
Paper not yet in RePEc: Add citation now
- Jiang, P. ; Zhao, G. ; Liu, L. ; Zhang, H. ; Mu, L. ; Lu, X. A negative-carbon footprint process with mixed biomass feedstock maximizes conversion efficiency, product value and CO2 mitigation. 2022 Bioresour Technol. 351 -
Paper not yet in RePEc: Add citation now
- Jiang, Y. ; Ling, J. ; Xiao, P. ; He, Y. ; Zhao, Q. ; Chu, Z. Simultaneous biogas purification and CO2 capture by vacuum swing adsorption using zeolite NaUSY. 2018 Chem Eng J. 334 2593-2602
Paper not yet in RePEc: Add citation now
- Khuong, D.A. ; Nguyen, H.N. ; Tsubota, T. Activated carbon produced from bamboo and solid residue by CO2 activation utilized as CO2 adsorbents. 2021 Biomass and Bioenergy. 148 -
Paper not yet in RePEc: Add citation now
- Kim, H.S. ; Kang, M.S. ; Lee, S. ; Lee, Y.-W. ; Yoo, W.C. N-doping and ultramicroporosity-controlled crab shell derived carbons for enhanced CO2 and CH4 sorption. 2018 Microporous Mesoporous Mater. 272 92-100
Paper not yet in RePEc: Add citation now
- Kishibayev, K.K. ; Serafin, J. ; Tokpayev, R.R. ; Khavaza, T.N. ; Atchabarova, A.A. ; Abduakhytova, D.A. Physical and chemical properties of activated carbon synthesized from plant wastes and shungite for CO2 capture. 2021 J Environ Chem Eng. 9 -
Paper not yet in RePEc: Add citation now
- Lahijani, P. ; Mohammadi, M. ; Mohamed, A.R. Metal incorporated biochar as a potential adsorbent for high capacity CO2 capture at ambient condition. 2018 J CO2 Util. 26 281-293
Paper not yet in RePEc: Add citation now
Lai, J.Y. ; Ngu, L.H. The production cost analysis of oil palm waste activated carbon: a pilot-scale evaluation. 2020 Greenh Gases Sci Technol. 10 999-1026
- Lee, J.-Y. ; Lee, B.-H. ; Chung, D.-C. ; Kim, B.-J. CO2 adsorption behaviors of biomass-based activated carbons prepared by a microwave/steam activation technique for molecular sieve. 2023 Materials (Basel). 16 -
Paper not yet in RePEc: Add citation now
- Li, D. ; Zhou, J. ; Zhang, Z. ; Li, L. ; Tian, Y. ; Lu, Y. Improving low-pressure CO2 capture performance of N-doped active carbons by adjusting flow rate of protective gas during alkali activation. 2017 Carbon N Y. 114 496-503
Paper not yet in RePEc: Add citation now
- Li, J. ; Zhu, X. ; Li, Y. ; Tong, Y.W. ; Ok, Y.S. ; Wang, X. Multi-task prediction and optimization of hydrochar properties from high-moisture municipal solid waste: application of machine learning on waste-to-resource. 2021 J Clean Prod. 278 -
Paper not yet in RePEc: Add citation now
Li, S. ; Yuan, X. ; Deng, S. ; Zhao, L. ; Lee, K.B. A review on biomass-derived CO2 adsorption capture: adsorbent, adsorber, adsorption, and advice. 2021 Renew Sustain Energy Rev. 152 -
- Liao, M. ; Kelley, S. ; Yao, Y. Generating energy and greenhouse gas inventory data of activated carbon production using machine learning and kinetic based process simulation. 2019 ACS Sustain Chem \& Eng. 8 1252-1261
Paper not yet in RePEc: Add citation now
- Liew, R.K. ; Azwar, E. ; Yek, P.N.Y. ; Lim, X.Y. ; Cheng, C.K. ; Ng, J.-H. Microwave pyrolysis with KOH/NaOH mixture activation: a new approach to produce micro-mesoporous activated carbon for textile dye adsorption. 2018 Bioresour Technol. 266 1-10
Paper not yet in RePEc: Add citation now
- Liew, R.K. ; Chai, C. ; Yek, P.N.Y. ; Phang, X.Y. ; Chong, M.Y. ; Nam, W.L. Innovative production of highly porous carbon for industrial effluent remediation via microwave vacuum pyrolysis plus sodium-potassium hydroxide mixture activation. 2019 J Clean Prod. 208 1436-1445
Paper not yet in RePEc: Add citation now
- Liu, B. ; Ma, X. ; Shi, R. ; Zhou, K. ; Xu, X. ; Qiu, J. Synthesis of alkali metals functionalized porous carbon for enhanced selective adsorption of carbon dioxide: a theoretically guided study. 2021 Energy \& Fuels. 35 15962-15968
Paper not yet in RePEc: Add citation now
Liu, L. ; Jiang, P. ; Qian, H. ; Mu, L. ; Lu, X. ; Zhu, J. CO2-negative biomass conversion: an economic route with co-production of green hydrogen and highly porous carbon. 2022 Appl Energy. 311 -
- Liu, L. ; Qian, H. ; Mu, L. ; Wu, J. ; Feng, X. ; Lu, X. Techno-economic analysis of biomass processing with dual outputs of energy and activated carbon. 2021 Bioresour Technol. 319 -
Paper not yet in RePEc: Add citation now
- Liu, W.-J. ; Jiang, H. ; Tian, K. ; Ding, Y.-W. ; Yu, H.-Q. Mesoporous carbon stabilized MgO nanoparticles synthesized by pyrolysis of MgCl2 preloaded waste biomass for highly efficient CO2 capture. 2013 Environ Sci \& Technol. 47 9397-9403
Paper not yet in RePEc: Add citation now
- Lu, C. ; Bai, H. ; Wu, B. ; Su, F. ; Hwang, J.F. Comparative study of CO2 capture by carbon nanotubes, activated carbons, and zeolites. 2008 Energy Fuels. 22 3050-3056
Paper not yet in RePEc: Add citation now
- Luo, L. ; Chen, T. ; Li, Z. ; Zhang, Z. ; Zhao, W. ; Fan, M. Heteroatom self-doped activated biocarbons from fir bark and their excellent performance for carbon dioxide adsorption. 2018 J CO2 Util. 25 89-98
Paper not yet in RePEc: Add citation now
- Ma, C. ; Bai, J. ; Demir, M. ; Hu, X. ; Liu, S. ; Wang, L. Water chestnut shell-derived N/S-doped porous carbons and their applications in CO2 adsorption and supercapacitor. 2022 Fuel. 326 -
Paper not yet in RePEc: Add citation now
- Ma, X. ; Su, C. ; Liu, B. ; Wu, Q. ; Zhou, K. ; Zeng, Z. Heteroatom-doped porous carbons exhibit superior CO2 capture and CO2/N2 selectivity: understanding the contribution of functional groups and pore structure. 2021 Sep Purif Technol. 259 -
Paper not yet in RePEc: Add citation now
- Ma, X. ; Xu, W. ; Su, R. ; Shao, L. ; Zeng, Z. ; Li, L. Insights into CO2 capture in porous carbons from machine learning, experiments and molecular simulation. 2023 Sep Purif Technol. 306 -
Paper not yet in RePEc: Add citation now
- Majchrzak-Kucęba, I. ; Wawrzyńczak, D. ; Ściubidło, A. ; Zdeb, J. ; Smółka, W. ; Zajchowski, A. Stability and regenerability of acivated carbon used for CO2 removal in pilot DR-VPSA unit in real power plant conditions. 2019 J CO2 Util. 29 1-11
Paper not yet in RePEc: Add citation now
- Manyà, J.J. ; González, B. ; Azuara, M. ; Arner, G. Ultra-microporous adsorbents prepared from vine shoots-derived biochar with high CO2 uptake and CO2/N2 selectivity. 2018 Chem Eng J. 345 631-639
Paper not yet in RePEc: Add citation now
- McEwen, J. ; Hayman, J.-D. ; Ozgur Yazaydin, A. A comparative study of CO2, CH4 and N2 adsorption in ZIF-8, Zeolite-13X and BPL activated carbon. 2013 Chem Phys. 412 72-76
Paper not yet in RePEc: Add citation now
- Mochizuki, Y. ; Bud, J. ; Byambajav, E. ; Tsubouchi, N. Influence of ammonia treatment on the CO2 adsorption of activated carbon. 2022 J Environ Chem Eng. 10 -
Paper not yet in RePEc: Add citation now
- Montes-Morán, M.A. ; Suárez, D. ; Menéndez, J.A. ; Fuente, E. On the nature of basic sites on carbon surfaces: an overview. 2004 Carbon N Y. 42 1219-1225
Paper not yet in RePEc: Add citation now
- Mukherjee, A. ; Okolie, J.A. ; Niu, C. ; Dalai, A.K. Techno--Economic analysis of activated carbon production from spent coffee grounds: comparative evaluation of different production routes. 2022 Energy Convers Manag X. 14 -
Paper not yet in RePEc: Add citation now
- Mumtaz, H. ; Farhan, M. ; Amjad, M. ; Riaz, F. ; Kazim, A.H. ; Sultan, M. Biomass waste utilization for adsorbent preparation in CO2 capture and sustainable environment applications. 2021 Sustain Energy Technol Assessments. 46 -
Paper not yet in RePEc: Add citation now
- Nakada, S. ; Saygin, D. ; Gielen, D. Global bioenergy: supply and demand projections. 2014 Int Renew Energy Agency (IRENA). -
Paper not yet in RePEc: Add citation now
- Nasiri, R. ; Arsalani, N. Synthesis and application of 3D graphene nanocomposite for the removal of cationic dyes from aqueous solutions: response surface methodology design. 2018 J Clean Prod. 190 63-71
Paper not yet in RePEc: Add citation now
- Nazir, G. ; Rehman, A. ; Park, S.-J. Role of heteroatoms (nitrogen and sulfur)-dual doped corn-starch based porous carbons for selective CO2 adsorption and separation. 2021 J CO2 Util. 51 -
Paper not yet in RePEc: Add citation now
- Ng, C. ; Bansode, R.R. ; Marshall, W.E. ; Losso, J.N. ; Rao, R.M. Process description and product cost to manufacture sugarcane bagasse-based granular activated carbon. 2002 Int Sugar J. 103 401-403
Paper not yet in RePEc: Add citation now
- Ng, C. ; Marshall, W.E. ; Rao, R.M. ; Bansode, R.R. ; Losso, J.N. Activated carbon from pecan shell: process description and economic analysis. 2003 Ind Crops Prod. 17 209-217
Paper not yet in RePEc: Add citation now
- Nowrouzi, M. ; Abyar, H. ; Younesi, H. ; Khaki, E. Life cycle environmental and economic assessment of highly efficient carbon-based CO2 adsorbents: a comparative study. 2021 J CO2 Util. 47 -
Paper not yet in RePEc: Add citation now
- Nowrouzi, M. ; Younesi, H. ; Bahramifar, N. Superior CO2 capture performance on biomass-derived carbon/metal oxides nanocomposites from Persian ironwood by H3PO4 activation. 2018 Fuel. 223 99-114
Paper not yet in RePEc: Add citation now
- Ntiamoah, A. ; Ling, J. ; Xiao, P. ; Webley, P.A. ; Zhai, Y. CO2 capture by temperature swing adsorption: use of hot CO2-rich gas for regeneration. 2016 Ind \& Eng Chem Res. 55 703-713
Paper not yet in RePEc: Add citation now
- Ogungbenro, A.E. ; Quang, D.V. ; Al-Ali, K.A. ; Vega, L.F. ; Abu-Zahra, M.R.M. Physical synthesis and characterization of activated carbon from date seeds for CO2 capture. 2018 J Environ Chem Eng. 6 4245-4252
Paper not yet in RePEc: Add citation now
- Organization, W.M. WMO statement on the state of the global climate in 2019. 2020 :
Paper not yet in RePEc: Add citation now
- Pan, Y. ; Zhao, Y. ; Mu, S. ; Wang, Y. ; Jiang, C. ; Liu, Q. Cation exchanged MOF-derived nitrogen-doped porous carbons for CO 2 capture and supercapacitor electrode materials. 2017 J Mater Chem A. 5 9544-9552
Paper not yet in RePEc: Add citation now
- Patel, H. ; Maiti, P. ; Maiti, S. Techno-economic assessment of bio-refinery model based on co-pyrolysis of cotton boll crop-residue and plastic waste. 2022 Biofuels, Bioprod Biorefining. 16 155-171
Paper not yet in RePEc: Add citation now
- Patel, H. ; Mangukiya, H. ; Maiti, P. ; Maiti, S. Empty cotton boll crop-residue and plastic waste valorization to bio-oil, potassic fertilizer and activated carbon – a bio-refinery model. 2020 J Clean Prod. -
Paper not yet in RePEc: Add citation now
- Patel, H. ; Weldekidan, H. ; Mohanty, A. ; Misra, M. Effect of physicochemical activation on CO2 adsorption of activated porous carbon derived from pine sawdust. 2023 Carbon Capture Sci \& Technol. -
Paper not yet in RePEc: Add citation now
Patel, H.A. ; Hyun, Je S. ; Park, J. ; Chen, D.P. ; Jung, Y. ; Yavuz, C.T. Unprecedented high-temperature CO2 selectivity in N2-phobic nanoporous covalent organic polymers. 2013 Nat Commun. 4 1-8
- Pietrzak, R. XPS study and physico-chemical properties of nitrogen-enriched microporous activated carbon from high volatile bituminous coal. 2009 Fuel. 88 1871-1877
Paper not yet in RePEc: Add citation now
- Plaza, M.G. ; García, S. ; Rubiera, F. ; Pis, J.J. ; Pevida, C. Post-combustion CO2 capture with a commercial activated carbon: comparison of different regeneration strategies. 2010 Chem Eng J. 163 41-47
Paper not yet in RePEc: Add citation now
- Plaza, M.G. ; González, A.S. ; Pevida, C. ; Rubiera, F. Green coffee based CO2 adsorbent with high performance in postcombustion conditions. 2015 Fuel. 140 633-648
Paper not yet in RePEc: Add citation now
- Plaza, M.G. ; Rubiera, F. Development of carbon-based vacuum, temperature and concentration swing adsorption post-combustion CO2 capture processes. 2019 Chem Eng J. 375 -
Paper not yet in RePEc: Add citation now
Plaza, M.G. ; Rubiera, F. Evaluation of a novel multibed heat-integrated vacuum and temperature swing adsorption post-combustion CO2 capture process. 2019 Appl Energy. 250 916-925
- Plaza, M.G. ; Rubiera, F. ; Pevida, C. Evaluating the feasibility of a TSA process based on steam stripping in combination with structured carbon adsorbents to capture CO2 from a coal power plant. 2017 Energy \& Fuels. 31 9760-9775
Paper not yet in RePEc: Add citation now
- Pramanik, P. ; Patel, H. ; Charola, S. ; Neogi, S. ; Maiti, S. High surface area porous carbon from cotton stalk agro-residue for CO2adsorption and study of techno-economic viability of commercial production. 2021 J CO2 Util. 45 -
Paper not yet in RePEc: Add citation now
- Prats, H. ; Bahamon, D. ; Alonso, G. ; Giménez, X. ; Gamallo, P. ; Sayós, R. Optimal Faujasite structures for post combustion CO2 capture and separation in different swing adsorption processes. 2017 J CO2 Util. 19 100-111
Paper not yet in RePEc: Add citation now
- Pu, Q. ; Wang, Y. ; Wang, X. ; Shao, Z. ; Wen, S. ; Wang, J. Biomass-derived carbon/MgO-Al2O3 composite with superior dynamic CO2 uptake for post combustion capture application. 2021 J CO2 Util. 54 -
Paper not yet in RePEc: Add citation now
- Puchana-Rosero, M.J. ; Adebayo, M.A. ; Lima, E.C. ; Machado, F.M. ; Thue, P.S. ; Vaghetti, J.C.P. Microwave-assisted activated carbon obtained from the sludge of tannery-treatment effluent plant for removal of leather dyes. 2016 Colloids Surfaces A Physicochem Eng Asp. 504 105-115
Paper not yet in RePEc: Add citation now
- Quan, C. ; Jia, X. ; Gao, N. Nitrogen-doping activated biomass carbon from tea seed shell for CO2 capture and supercapacitor. 2019 Int J Energy Res. -
Paper not yet in RePEc: Add citation now
- Querejeta, N. ; Gil, M.V. ; Pevida, C. ; Centeno, T.A. Standing out the key role of ultramicroporosity to tailor biomass-derived carbons for CO2 capture. 2018 J CO2 Util. 26 1-7
Paper not yet in RePEc: Add citation now
- Rana, M. ; Subramani, K. ; Sathish, M. ; Gautam, U.K. Soya derived heteroatom doped carbon as a promising platform for oxygen reduction, supercapacitor and CO2 capture. 2017 Carbon N Y. 114 679-689
Paper not yet in RePEc: Add citation now
- Rao, L. ; Liu, S. ; Wang, L. ; Ma, C. ; Wu, J. ; An, L. N-doped porous carbons from low-temperature and single-step sodium amide activation of carbonized water chestnut shell with excellent CO2 capture performance. 2019 Chem Eng J. 359 428-435
Paper not yet in RePEc: Add citation now
- Rehman, A. ; Nazir, G. ; Rhee, K.Y. ; Park, S.-J. A rational design of cellulose-based heteroatom-doped porous carbons: promising contenders for CO2 adsorption and separation. 2021 Chem Eng J. 420 -
Paper not yet in RePEc: Add citation now
- Rehman, A. ; Nazir, G. ; Rhee, K.Y. ; Park, S.-J. Valorization of orange peel waste to tunable heteroatom-doped hydrochar-derived microporous carbons for selective CO2 adsorption and separation. 2022 Sci Total Environ. 849 -
Paper not yet in RePEc: Add citation now
- Ritchie, H. ; Roser, M. CO₂ and greenhouse gas emissions. 2017 Our World Data:
Paper not yet in RePEc: Add citation now
- Rodr\’\iguez-Garc\’\ia, S. ; Santiago, R. ; López-D\’\iaz, D. ; Merchán, M.D. ; Velázquez, M.M. ; Fierro, J.L.G. Role of the structure of graphene oxide sheets on the CO2 adsorption properties of nanocomposites based on graphene oxide and polyaniline or Fe3O4-nanoparticles. 2019 ACS Sustainable Chem Eng. 7 12464-12473
Paper not yet in RePEc: Add citation now
- Rodriguez Correa, C. ; Otto, T. ; Kruse, A. Influence of the biomass components on the pore formation of activated carbon. 2017 Biomass and Bioenergy. 97 53-64
Paper not yet in RePEc: Add citation now
- Rodríguez-Reinoso, F. Activated carbon and adsorption. 2001 En : Buschow, K.H.J. ; Cahn, R.W. ; Flemings, M.C. ; Ilschner, B. ; Kramer, E.J. ; Mahajan, S. Encycl. Mater. Sci. Technol.. Elsevier: Oxford
Paper not yet in RePEc: Add citation now
- Samanta, A. ; Zhao, A. ; Shimizu, G.K.H. ; Sarkar, P. ; Gupta, R. Post-combustion CO2 capture using solid sorbents: a review. 2012 Ind Eng Chem Res. 51 1438-1463
Paper not yet in RePEc: Add citation now
- Sanchez-Sanchez, A. ; Suarez-Garcia, F. ; Martinez-Alonso, A. ; Tascón, J.M.D. Influence of porous texture and surface chemistry on the CO2 adsorption capacity of porous carbons: acidic and basic site interactions. 2014 ACS Appl Mater \& Interfaces. 6 21237-21247
Paper not yet in RePEc: Add citation now
- Sarwar, A. ; Ali, M. ; Khoja, A.H. ; Nawar, A. ; Waqas, A. ; Liaquat, R. Synthesis and characterization of biomass-derived surface-modified activated carbon for enhanced CO2 adsorption. 2021 J CO2 Util. 46 -
Paper not yet in RePEc: Add citation now
- Serafin, J. ; Cruz, Jr OF. Promising activated carbons derived from common oak leaves and their application in CO2 storage. 2022 J Environ Chem Eng. 10 -
Paper not yet in RePEc: Add citation now
- Serafin, J. ; Dziejarski, B. ; Vendrell, X. ; Kiełbasa, K. ; Michalkiewicz, B. Biomass waste fern leaves as a material for a sustainable method of activated carbon production for CO2 capture. 2023 Biomass and Bioenergy. 175 -
Paper not yet in RePEc: Add citation now
- Serafin, J. ; Narkiewicz, U. ; Morawski, A.W. ; Wróbel, R. ; Michalkiewicz, B. Highly microporous activated carbons from biomass for CO2 capture and effective micropores at different conditions. 2017 J CO2 Util. 18 73-79
Paper not yet in RePEc: Add citation now
- Serafin, J. ; Ouzzine, M. ; Cruz, Jr OF. ; Sreńscek-Nazzal, J. ; Gómez, I.C. ; Azar, F.-Z. Conversion of fruit waste-derived biomass to highly microporous activated carbon for enhanced CO2 capture. 2021 Waste Manag. 136 273-282
Paper not yet in RePEc: Add citation now
- Sethia, G. ; Sayari, A. Comprehensive study of ultra-microporous nitrogen-doped activated carbon for CO2 capture. 2015 Carbon N Y. 93 68-80
Paper not yet in RePEc: Add citation now
- Shafeeyan, M.S. ; Daud, W.M.A.W. ; Houshmand, A. ; Shamiri, A. A review on surface modification of activated carbon for carbon dioxide adsorption. 2010 J Anal Appl Pyrolysis. 89 143-151
Paper not yet in RePEc: Add citation now
- Shahkarami, S. ; Dalai, A.K. ; Soltan, J. Enhanced CO2 adsorption using MgO-impregnated activated carbon: impact of preparation techniques. 2016 Ind \& Eng Chem Res. 55 5955-5964
Paper not yet in RePEc: Add citation now
- Shao, L. ; Wang, L. ; Wang, J. ; Liu, Z. ; Wu, Z. ; Zhan, P. N-doped highly microporous carbon derived from the self-assembled lignin/chitosan composites beads for selective CO2 capture and efficient p-nitrophenol adsorption. 2023 Sep Purif Technol. -
Paper not yet in RePEc: Add citation now
- Sharma, A. ; Jindal, J. ; Mittal, A. ; Kumari, K. ; Maken, S. ; Kumar, N. Carbon materials as CO 2 adsorbents: a review. 2021 Environ Chem Lett. 19 875-910
Paper not yet in RePEc: Add citation now
- Shen, C. ; Liu, Z. ; Li, P. ; Yu, J. Two-stage VPSA process for CO2 capture from flue gas using activated carbon beads. 2012 Ind \& Eng Chem Res. 51 5011-5021
Paper not yet in RePEc: Add citation now
- Shi, S. ; Liu, Y. Nitrogen-doped activated carbons derived from microalgae pyrolysis by-products by microwave/KOH activation for CO2 adsorption. 2021 Fuel. 306 -
Paper not yet in RePEc: Add citation now
- Singh, G. ; Kim, I.Y. ; Lakhi, K.S. ; Srivastava, P. ; Naidu, R. ; Vinu, A. Single step synthesis of activated bio-carbons with a high surface area and their excellent CO2 adsorption capacity. 2017 Carbon N Y. 116 448-455
Paper not yet in RePEc: Add citation now
- Singh, G. ; Lakhi, K.S. ; Ramadass, K. ; Sathish, C.I. ; Vinu, A. High-performance biomass-derived activated porous biocarbons for combined pre-and post-combustion CO2 capture. 2019 ACS Sustain Chem Eng. 7 7412-7420
Paper not yet in RePEc: Add citation now
- Singh, G. ; Lakhi, K.S. ; Sil, S. ; Bhosale, S.V. ; Kim, I. ; Albahily, K. Biomass derived porous carbon for CO2 capture. 2019 Carbon N Y. 148 164-186
Paper not yet in RePEc: Add citation now
- Singh, G. ; Lee, J. ; Karakoti, A. ; Bahadur, R. ; Yi, J. ; Zhao, D. Emerging trends in porous materials for CO₂ capture and conversion. 2020 :
Paper not yet in RePEc: Add citation now
- Singh, M. ; Borkhatariya, N. ; Pramanik, P. ; Dutta, S. ; Ghosh, S.K. ; Maiti, P. Microporous carbon derived from cotton stalk crop-residue across diverse geographical locations as efficient and regenerable CO2 adsorbent with selectivity. 2022 J CO2 Util. 60 -
Paper not yet in RePEc: Add citation now
- Thomsen, T. ; Hauggaard-Nielsen, H. ; Bruun, E.W. ; Ahrenfeldt, J. The potential of Pyrolysis Technology in climate change mitigation-influence of process design and-parameters. 2011 simulated in SuperPro Designer Software. -
Paper not yet in RePEc: Add citation now
- Tian, W. ; Zhang, H. ; Sun, H. ; Suvorova, A. ; Saunders, M. ; Tade, M. Heteroatom (N or N-S)-Doping induced layered and honeycomb microstructures of porous carbons for CO2 capture and energy applications. 2016 Adv Funct Mater. 26 8651-8661
Paper not yet in RePEc: Add citation now
- Tian, Y. ; Lin, Y. ; Hagio, T. ; Hu, Y.H. Surface-microporous graphene for CO2 adsorption. 2020 Catal Today. -
Paper not yet in RePEc: Add citation now
- Toles, C.A. ; Marshall, W.E. ; Johns, M.M. ; Wartelle, L.H. ; McAloon, A. Acid-activated carbons from almond shells: physical, chemical and adsorptive properties and estimated cost of production. 2000 Bioresour Technol. 71 87-92
Paper not yet in RePEc: Add citation now
- Toles, C.A. ; Marshall, W.E. ; Wartelle, L.H. ; McAloon, A. Steam-or carbon dioxide-activated carbons from almond shells: physical, chemical and adsorptive properties and estimated cost of production. 2000 Bioresour Technol. 75 197-203
Paper not yet in RePEc: Add citation now
- Vanreppelen, K. ; Kuppens, T. ; Thewys, T. ; Carleer, R. ; Yperman, J. ; Schreurs, S. Activated carbon from co-pyrolysis of particle board and melamine (urea) formaldehyde resin: a techno-economic evaluation. 2011 Chem Eng J. 172 835-846
Paper not yet in RePEc: Add citation now
- Vassilev, S.V. ; Baxter, D. ; Andersen, L.K. ; Vassileva, C.G. An overview of the chemical composition of biomass. 2010 Fuel. 89 913-933
Paper not yet in RePEc: Add citation now
- Vassilev, S.V. ; Baxter, D. ; Andersen, L.K. ; Vassileva, C.G. An overview of the composition and application of biomass ash. Part 1. Phase–mineral and chemical composition and classification. 2013 Fuel. 105 40-76
Paper not yet in RePEc: Add citation now
- Vassilev, S.V. ; Vassileva, C.G. ; Vassilev, V.S. Advantages and disadvantages of composition and properties of biomass in comparison with coal: an overview. 2015 Fuel. 158 330-350
Paper not yet in RePEc: Add citation now
- Wang, J. ; Huang, L. ; Yang, R. ; Zhang, Z. ; Wu, J. ; Gao, Y. Recent advances in solid sorbents for CO 2 capture and new development trends. 2014 Energy \& Environ Sci. 7 3478-3518
Paper not yet in RePEc: Add citation now
- Wang, L. ; Yang, Y. ; Shen, W. ; Kong, X. ; Li, P. ; Yu, J. CO2 capture from flue gas in an existing coal-fired power plant by two successive pilot-scale VPSA units. 2013 Ind \& Eng Chem Res. 52 7947-7955
Paper not yet in RePEc: Add citation now
- Wang, S. ; Dai, G. ; Yang, H. ; Luo, Z. Lignocellulosic biomass pyrolysis mechanism: a state-of-the-art review. 2017 Prog Energy Combust Sci. 62 33-86
Paper not yet in RePEc: Add citation now
- Wang, S. ; Lee, Y.-R. ; Won, Y. ; Kim, H. ; Jeong, S.-E. ; Hwang, B.W. Development of high-performance adsorbent using KOH-impregnated rice husk-based activated carbon for indoor CO2 adsorption. 2022 Chem Eng J. 437 -
Paper not yet in RePEc: Add citation now
- Wang, X. ; Cheng, H. ; Ye, G. ; Fan, J. ; Yao, F. ; Wang, Y. Key factors and primary modification methods of activated carbon and their application in adsorption of carbon-based gases: a review. 2022 Chemosphere. 287 -
Paper not yet in RePEc: Add citation now
- Wei, H. ; Chen, H. ; Fu, N. ; Chen, J. ; Lan, G. ; Qian, W. Excellent electrochemical properties and large CO2 capture of nitrogen-doped activated porous carbon synthesised from waste longan shells. 2017 Electrochim Acta. 231 403-411
Paper not yet in RePEc: Add citation now
- Wei, H. ; Chen, J. ; Fu, N. ; Chen, H. ; Lin, H. ; Han, S. Biomass-derived nitrogen-doped porous carbon with superior capacitive performance and high CO2 capture capacity. 2018 Electrochim Acta. 266 161-169
Paper not yet in RePEc: Add citation now
- Weldekidan, H. ; Patel, H. ; Mohanty, A. ; Misra, M. Synthesis of porous and activated carbon from lemon peel waste for CO2 adsorption. 2024 Carbon Capture Sci Technol. 10 -
Paper not yet in RePEc: Add citation now
- Wu, D. ; Liu, J. ; Yang, Y. ; Zheng, Y. Nitrogen/oxygen Co-doped porous carbon derived from biomass for low-pressure CO2 capture. 2020 Ind \& Eng Chem Res. 59 14055-14063
Paper not yet in RePEc: Add citation now
- Wu, D. ; Yang, Y. ; Liu, J. ; Zheng, Y. Plasma-modified N/O-doped porous carbon for CO2 capture: an experimental and theoretical study. 2020 Energy \& Fuels. 34 6077-6084
Paper not yet in RePEc: Add citation now
- Xu, X. ; Xu, Z. ; Gao, B. ; Zhao, L. ; Zheng, Y. ; Huang, J. New insights into CO2 sorption on biochar/Fe oxyhydroxide composites: kinetics, mechanisms, and in situ characterization. 2020 Chem Eng J. 384 -
Paper not yet in RePEc: Add citation now
- Xu, Y. ; Yang, Z. ; Zhang, G. ; Zhao, P. Excellent CO2 adsorption performance of nitrogen-doped waste biocarbon prepared with different activators. 2020 J Clean Prod. -
Paper not yet in RePEc: Add citation now
Yahya, M.A. ; Al-Qodah, Z. ; Ngah, C.W.Z. Agricultural bio-waste materials as potential sustainable precursors used for activated carbon production: a review. 2015 Renew Sustain Energy Rev. 46 218-235
- Yang, D.-A. ; Cho, H.-Y. ; Kim, J. ; Yang, S.-T. ; Ahn, W.-S. CO 2 capture and conversion using Mg-MOF-74 prepared by a sonochemical method. 2012 Energy \& Environ Sci. 5 6465-6473
Paper not yet in RePEc: Add citation now
- Yang, J. ; Yue, L. ; Hu, X. ; Wang, L. ; Zhao, Y. ; Lin, Y. Efficient CO2 capture by porous carbons derived from coconut shell. 2017 Energy & Fuels. 31 4287-4293
Paper not yet in RePEc: Add citation now
- Yang, Z. ; Zhang, G. ; Xu, Y. ; Zhao, P. One step N-doping and activation of biomass carbon at low temperature through NaNH2: an effective approach to CO2 adsorbents. 2019 J CO2 Util. 33 320-329
Paper not yet in RePEc: Add citation now
- Yassin, M.M. ; Anderson, J.A. ; Dimitrakis, G.A. ; Martín, C.F. Effects of the heating source on the regeneration performance of different adsorbents under post-combustion carbon capture cyclic operations. A comparative analysis. 2021 Sep Purif Technol. 276 -
Paper not yet in RePEc: Add citation now
- Yassin, M.M. ; Biti, S. ; Afzal, W. ; Fernández Martín, C. A systematic analysis of the dynamics of microwave- and conventionally-assisted swing adsorption on zeolite 13X and an activated carbon under post-combustion carbon capture conditions. 2021 J Environ Chem Eng. 9 -
Paper not yet in RePEc: Add citation now
Yaumi, A.L. ; Bakar, M.Z.A. ; Hameed, B.H. Melamine-nitrogenated mesoporous activated carbon derived from rice husk for carbon dioxide adsorption in fixed-bed. 2018 Energy. 155 46-55
- Yek, P.N.Y. ; Liew, R.K. ; Osman, M.S. ; Lee, C.L. ; Chuah, J.H. ; Park, Y.-K. Microwave steam activation, an innovative pyrolysis approach to convert waste palm shell into highly microporous activated carbon. 2019 J Environ Manage. 236 245-253
Paper not yet in RePEc: Add citation now
- Yin, G. ; Liu, Z. ; Liu, Q. ; Wu, W. The role of different properties of activated carbon in CO2 adsorption. 2013 Chem Eng J. 230 133-140
Paper not yet in RePEc: Add citation now
- Ying, W. ; Tian, S. ; Liu, H. ; Zhou, Z. ; Kapeso, G. ; Zhong, J. In situ dry chemical synthesis of nitrogen-doped activated carbon from bamboo charcoal for carbon dioxide adsorption. 2022 Materials (Basel). 15 763-
Paper not yet in RePEc: Add citation now
- Yuan, X. ; Suvarna, M. ; Low, S. ; Dissanayake, P.D. ; Lee, K.B. ; Li, J. Applied machine learning for prediction of CO2 adsorption on biomass waste-derived porous carbons. 2021 Environ Sci \& Technol. 55 11925-11936
Paper not yet in RePEc: Add citation now
Yuan, X. ; Wang, J. ; Deng, S. ; Suvarna, M. ; Wang, X. ; Zhang, W. Recent advancements in sustainable upcycling of solid waste into porous carbons for carbon dioxide capture. 2022 Renew Sustain Energy Rev. 162 -
- Yue, L. ; Rao, L. ; Wang, L. ; Wang, L. ; Wu, J. ; Hu, X. Efficient CO2 capture by nitrogen-doped biocarbons derived from rotten strawberries. 2017 Ind Eng Chem Res. 56 14115-14122
Paper not yet in RePEc: Add citation now
- Yunus, Z.M. ; Al-Gheethi, A. ; Othman, N. ; Hamdan, R. ; Ruslan, N.N. Removal of heavy metals from mining effluents in tile and electroplating industries using honeydew peel activated carbon: a microstructure and techno-economic analysis. 2020 J Clean Prod. 251 -
Paper not yet in RePEc: Add citation now
Zakuciová, K. ; Carvalho, A. ; Štefanica, J. ; Vitvarová, M. ; Pila\vr, L. ; Koč\’\i, V. Environmental and comparative assessment of integrated gasification gas cycle with CaO looping and CO2 adsorption by activated carbon: a case study of the Czech Republic. 2020 Energies. 13 4188-
- Zanco, S.E. ; Pérez-Calvo, J.-F. ; Gasós, A. ; Cordiano, B. ; Becattini, V. ; Mazzotti, M. Postcombustion CO2 capture: a comparative techno-economic assessment of three technologies using a solvent, an adsorbent, and a membrane. 2021 ACS Eng Au. 1 50-72
Paper not yet in RePEc: Add citation now
- Zein, S.H. ; Antony, A. Techno-economic analysis and feasibility of industrial-scale activated carbon production from agricultural pea waste using microwave-assisted pyrolysis: a circular economy approach. 2022 Processes. 10 -
Paper not yet in RePEc: Add citation now
- Zhang, C. ; Song, W. ; Ma, Q. ; Xie, L. ; Zhang, X. ; Guo, H. Enhancement of CO2 capture on biomass-based carbon from black locust by KOH activation and ammonia modification. 2016 Energy \& Fuels. 30 4181-4190
Paper not yet in RePEc: Add citation now
Zhang, W. ; Liu, H. ; Sun, Y. ; Cakstins, J. ; Sun, C. ; Snape, C.E. Parametric study on the regeneration heat requirement of an amine-based solid adsorbent process for post-combustion carbon capture. 2016 Appl Energy. 168 394-405
- Zhao, R. ; Liu, L. ; Zhao, L. ; Deng, S. ; Li, S. ; Zhang, Y. Techno-economic analysis of carbon capture from a coal-fired power plant integrating solar-assisted pressure-temperature swing adsorption (PTSA). 2019 J Clean Prod. 214 440-451
Paper not yet in RePEc: Add citation now
- Zhao, R. ; Zhao, L. ; Wang, S. ; Deng, S. ; Li, H. ; Yu, Z. Solar-assisted pressure-temperature swing adsorption for CO2 capture: effect of adsorbent materials. 2018 Sol Energy Mater Sol Cells. 185 494-504
Paper not yet in RePEc: Add citation now