Factors affecting biological reduction of CO2 into CH4 using a hydrogenotrophic methanogen in a fixed bed reactor

被引:5
作者
Kim, Jae Hyung [1 ]
Chang, Won Seok [2 ]
Pak, Daewon [1 ]
机构
[1] Seoul Natl Univ Sci & Technol, Grad Sch Energy & Environm, Seoul 139743, South Korea
[2] Korea Dist Heating Corp, Songnam 463908, Gyeonggy, South Korea
关键词
CO2; Conversion; Methane; Fixed Bed Reactor; Hydrogenotrophic Methanogens; MITIGATION; WATER;
D O I
10.1007/s11814-015-0023-0
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Biological conversion of CO2 was examined in a fixed bed reactor inoculated with anaerobic mixed culture to investigate influencing factors, the type of packing material and the composition of the feeding gas mixture. During the operation of the fixed bed reactor by feeding the gas mixture (80% H-2 and 20% CO2 based on volume basis), the volumetric CO2 conversion rate was higher in the fixed bed reactor packed with sponge due to its large surface area and high mass transfer from gas to liquid phase compared with PS ball. Carbon dioxide loaded into the fixed bed reactor was not completely converted because some of H-2 was used for biomass growth. When a mole ratio of H-2 to CO2 in the feeding gas mixture increased from 4 to 5, CO2 was completely converted into CH4. The packing material with large surface area is effective in treating gaseous substrate such as CO2 and H-2. H-2, electron donor, should be providing more than required according to stoichiometry because some of it is used for biomass growth.
引用
收藏
页码:2067 / 2072
页数:6
相关论文
共 50 条
[11]   Wafer-Level Artificial Photosynthesis for CO2 Reduction into CH4 and CO Using GaN Nanowires [J].
AlOtaibi, Bandar ;
Fan, Shizhao ;
Wang, Defa ;
Ye, Jinhua ;
Mi, Zetian .
ACS CATALYSIS, 2015, 5 (09) :5342-5348
[12]   Amines as Reaction Environment Regulator for CO2 Electrochemical Reduction to CH4 [J].
Aeshala, Leela Manohar ;
Verma, Anil .
MACROMOLECULAR SYMPOSIA, 2015, 357 (01) :79-85
[13]   Electrochemical Conversion of CO2 and CH4 at Subzero Temperatures [J].
Sargeant, Elizabeth ;
Kolodziej, Adam ;
Le Duff, Cecile S. ;
Rodriguez, Paramaconi .
ACS CATALYSIS, 2020, 10 (14) :7464-7474
[14]   Strong photo-thermal coupling effect boosts CO2 reduction into CH4 in a concentrated solar reactor [J].
Xu, Lei ;
Ren, Yuqi ;
Fu, Yiwei ;
Liu, Maochang ;
Zhu, Fengfan ;
Cheng, Miao ;
Zhou, Jiancheng ;
Chen, Wenshuai ;
Wang, Ke ;
Wang, Nan ;
Li, Naixu .
CHEMICAL ENGINEERING JOURNAL, 2023, 468
[15]   Production of Syngas by Combination of CO2 Reforming and Partial Oxidation of CH4 over Ni/Al2O3 Catalysts in Fixed-bed Reactor [J].
Zangouei, Mohammad ;
Moghaddam, Abdolsamad Zarringhalam ;
Razeghi, Abdolhosein ;
Omidkhah, Mohammad Reza .
INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING, 2010, 8
[16]   Selective separation of CH4 and CO2 using membrane contactors [J].
Hidalgo, D. ;
Sanz-Bedate, S. ;
Martin-Marroquin, J. M. ;
Castro, J. ;
Antolin, G. .
RENEWABLE ENERGY, 2020, 150 :935-942
[17]   Photocatalytic Aqueous CO2 Reduction to CO and CH4 Sensitized by Ullazine Supramolecular Polymers [J].
Dumele, Oliver ;
Dordevic, Luka ;
Sai, Hiroaki ;
Cotey, Thomas J. ;
Sangji, M. Hussain ;
Sato, Kohei ;
Dannenhoffer, Adam J. ;
Stupp, Samuel I. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2022, 144 (07) :3127-3136
[18]   CO2/CH4, CH4/H2 and CO2/CH4/H2 separations at high pressures using Mg2(dobdc) [J].
Herm, Zoey R. ;
Krishna, Rajamani ;
Long, Jeffrey R. .
MICROPOROUS AND MESOPOROUS MATERIALS, 2012, 151 :481-487
[19]   Adsorption of CH4 and CH4/CO2 mixtures in carbon nanotubes and disordered carbons: A molecular simulation study [J].
Liu, Lang ;
Nicholson, David ;
Bhatia, Suresh K. .
CHEMICAL ENGINEERING SCIENCE, 2015, 121 :268-278
[20]   Village ponds are hotspots of CO2 and CH4 emissions regulated by biological communities [J].
Ge, Zhengkui ;
Yan, Zhifeng ;
Peacock, Mike ;
Chang, Baoxuan ;
Zhang, Yunyun ;
Wu, Wenxin ;
Li, Si-Liang ;
Bastiviken, David ;
Liu, Cong-Qiang .
ENVIRONMENTAL POLLUTION, 2025, 378