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Original Articles

High-rate hydrogenotrophic methanogenesis for biogas upgrading: the role of anaerobic granules

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Pages 529-537 | Received 03 Apr 2014, Accepted 17 Oct 2014, Published online: 18 Nov 2014

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Qing Tang, Jin Xu, Ziyi Liu, Zhenxing Huang, Mingxing Zhao, Wansheng Shi & Wenquan Ruan. (2021) Optimal the ex-situ biogas biological upgrading to biomethane and its combined application with the anaerobic digestion stage. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 43:17, pages 2147-2159.
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Heng Xu, Jiahui Miao, Jianbing Wang, Jiushuai Deng, Jiayin Zhang, Qingshuang Kou, Xia Xiong & Dawn E. Holmes. (2024) Integrated CO2 capture and conversion via H2-driven CO2 biomethanation: Cyclic performance and microbial community response. Bioresource Technology 393, pages 130055.
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Subhasree Ray, Chandrasekhar Kuppam, Soumya Pandit & Prasun Kumar. (2022) Biogas Upgrading by Hydrogenotrophic Methanogens: An Overview. Waste and Biomass Valorization 14:2, pages 537-552.
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Kun Li, Hui Gong, Yue Liu, Jinyuan Ma, Chuan Shi & Kaijun Wang. (2022) Hydrogenotrophic methanogenic granular sludge formation for highly efficient transforming hydrogen to CH4. Journal of Environmental Management 303, pages 113999.
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S. Tugce Daglioglu, T. Ceren Ogut, Guven Ozdemir & Nuri Azbar. (2020) Comparative Evaluation of Two Packing Materials (Glass Pipe and Ceramic Ball) for Hydrogenothrophic Biomethanation (BHM) of CO2. Waste and Biomass Valorization 12:7, pages 3717-3726.
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Teklit Gebregiorgis Ambaye, Eldon R. Rene, Capucine Dupont, Suchanya Wongrod & Eric D. van Hullebusch. (2020) Anaerobic Digestion of Fruit Waste Mixed With Sewage Sludge Digestate Biochar: Influence on Biomethane Production. Frontiers in Energy Research 8.
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Heng Xu, Kaijun Wang, Xiaoqian Zhang, Hui Gong, Yu Xia & Dawn E. Holmes. (2020) Application of in-situ H2-assisted biogas upgrading in high-rate anaerobic wastewater treatment. Bioresource Technology 299, pages 122598.
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Anirudh Nelabhotla & Carlos Dinamarca. (2019) Bioelectrochemical CO2 Reduction to Methane: MES Integration in Biogas Production Processes. Applied Sciences 9:6, pages 1056.
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V. Corbellini, A. Catenacci & F. Malpei. (2019) Hydrogenotrophic biogas upgrading integrated into WWTPs: enrichment strategy. Water Science and Technology.
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Shuai Wang, Ilya Savva & Rune Bakke. (2019) A full-scale hybrid vertical anaerobic and aerobic biofilm wastewater treatment system: case study. Water Practice and Technology 14:1, pages 189-197.
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Nabin Aryal, Torben Kvist, Fariza Ammam, Deepak Pant & Lars D.M. Ottosen. (2018) An overview of microbial biogas enrichment. Bioresource Technology 264, pages 359-369.
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Kiros Hagos, Chang Liu & Xiaohua Lu. (2018) Effect of endogenous hydrogen utilization on improved methane production in an integrated microbial electrolysis cell and anaerobic digestion: Employing catalyzed stainless steel mesh cathode. Chinese Journal of Chemical Engineering 26:3, pages 574-582.
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Felipe Ojeda, Péter Bakonyi & Germán Buitrón. (2017) Improvement of methane content in a hydrogenotrophic anaerobic digester via the proper operation of membrane module integrated into an external-loop. Bioresource Technology 245, pages 1294-1298.
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Heng Xu, Cuiping Wang, Kun Yan, Jing Wu, Jiane Zuo & Kaijun Wang. (2016) Anaerobic granule-based biofilms formation reduces propionate accumulation under high H 2 partial pressure using conductive carbon felt particles. Bioresource Technology 216, pages 677-683.
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Emilio Garcia-Robledo, Lars D. M. Ottosen, Niels V. Voigt, M. W. Kofoed & Niels P. Revsbech. (2016) Micro-scale H2?CO2 Dynamics in a Hydrogenotrophic Methanogenic Membrane Reactor. Frontiers in Microbiology 7.
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Hyun Chul Shin, Dong-Hun Ju, Byoung Seung Jeon, Okkyoung Choi, Hyun Wook Kim, Youngsoon Um, Dong-Hoon Lee & Byoung-In Sang. (2015) Analysis of the Microbial Community in an Acidic Hollow-Fiber Membrane Biofilm Reactor (Hf-MBfR) Used for the Biological Conversion of Carbon Dioxide to Methane. PLOS ONE 10:12, pages e0144999.
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Chen-Yeon Chu & Bing-Shun Huang. 2015. Production of Hydrogen from Renewable Resources. Production of Hydrogen from Renewable Resources 41 75 .

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