Pyrolysis gas as a carbon source for biogas production via anaerobic digestion

被引:20
作者
Li, Yeqing [1 ]
Su, Dongfang [1 ]
Luo, Sen [1 ]
Jiang, Hao [1 ]
Qian, Mingyu [1 ,2 ]
Zhou, Hongjun [1 ]
Street, Jason [3 ]
Luo, Yan [4 ]
Xu, Quan [1 ]
机构
[1] CUPB, Inst New Energy, Beijing Key Lab Biogas Upgrading Utilizat, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
[2] Univ Rostock, Fac Agr & Environm Sci, Justus von Liebig Weg 6, D-18059 Rostock, Germany
[3] Mississippi State Univ, Dept Sustainable Bioprod, Mississippi State, MS 39762 USA
[4] West Virginia Univ, Dept Chem Engn, Morgantown, WV 26506 USA
来源
RSC ADVANCES | 2017年 / 7卷 / 66期
基金
中国国家自然科学基金;
关键词
CHICKEN MANURE; CORN STOVER; REACTOR; OIL; HYDRODEOXYGENATION; BIOMETHANATION; FERMENTATION; HYDROCARBONS; PERFORMANCE; MONOXIDE;
D O I
10.1039/c7ra08559a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Carbon is an important resource for anaerobes to enhance biogas production. In this study, the possibility of using simulated pyrolysis gas (SPG) as a carbon source for biogas production was investigated. The effects of stirring speed (SS), gas holding time (GHT), and H-2 addition on biomethanation of SPG were evaluated. The diversity and structure of microbial communities were also analyzed under an illumina MiSeq platform. Results indicated that at a GHT of 14 h and an SS at 400 rpm, SPG with up to 64.7% CH4 could be bio-upgraded to biogas. Gas-liquid mass transfer is the limitation for SPG biomethanation. For the first time, it has been noticed that the addition of H-2 can bioupgrade SPG to high quality biogas (with 91.1% CH4). Methanobacterium was considered as a key factor in all reactors. This study provides an idea and alternative way to convert lignocellulosic biomass and solid organic waste into energy (e.g., pyrolysis was used as a pretreatment to produce pyrolysis gas from biomass, and then, pyrolysis gas was bioupgraded to higher quality biogas via anaerobic digestion).
引用
收藏
页码:41889 / 41895
页数:7
相关论文
共 28 条
  • [1] Food insufficiency exists in the United States: Results from the third National Health and Nutrition Examination Survey (NHANES III)
    Alaimo, K
    Briefel, RR
    Frongillo, EA
    Olson, CM
    [J]. AMERICAN JOURNAL OF PUBLIC HEALTH, 1998, 88 (03) : 419 - 426
  • [2] Hydrocarbon bio-oil production from pyrolysis bio-oil using non-sulfide Ni-Zn/Al2O3 catalyst
    Cheng, Shouyun
    Wei, Lin
    Julson, James
    Muthukumarappan, Kasiviswanathan
    Kharel, Parashu Ram
    Boakye, Eric
    [J]. FUEL PROCESSING TECHNOLOGY, 2017, 162 : 78 - 86
  • [3] Biomass resources in Portugal: Current status and prospects
    Ferreira, Sergio
    Monteiro, Eliseu
    Brito, Paulo
    Vilarinho, Candida
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2017, 78 : 1221 - 1235
  • [4] Potential of Wastewater-Treating Anaerobic Granules for Biomethanation of Synthesis Gas
    Guiot, Serge R.
    Cimpoia, Ruxandra
    Carayon, Gael
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2011, 45 (05) : 2006 - 2012
  • [5] Microbiology of synthesis gas fermentation for biofuel production
    Henstra, Anne M.
    Sipma, Jan
    Rinzema, Arjen
    Stams, Alfons J. M.
    [J]. CURRENT OPINION IN BIOTECHNOLOGY, 2007, 18 (03) : 200 - 206
  • [6] Khanal S.K., 2011, Anaerobic biotechnology for bioenergy production: principles and applications
  • [7] Thermophilic Solid-State Anaerobic Digestion of Alkaline-Pretreated Corn Stover
    Li, Yeqing
    Zhang, Ruihong
    He, Yanfeng
    Liu, Xiaoying
    Chen, Chang
    Liu, Guangqing
    [J]. ENERGY & FUELS, 2014, 28 (06) : 3759 - 3765
  • [8] Anaerobic co-digestion of chicken manure and corn stover in batch and continuously stirred tank reactor (CSTR)
    Li, Yeqing
    Zhang, Ruihong
    He, Yanfeng
    Zhang, Chenyu
    Liu, Xiaoying
    Chen, Chang
    Liu, Guangqing
    [J]. BIORESOURCE TECHNOLOGY, 2014, 156 : 342 - 347
  • [9] Biogas production from co-digestion of corn stover and chicken manure under anaerobic wet, hemi-solid, and solid state conditions
    Li, Yeqing
    Zhang, Ruihong
    Chen, Chang
    Liu, Guangqing
    He, Yanfeng
    Liu, Xiaoying
    [J]. BIORESOURCE TECHNOLOGY, 2013, 149 : 406 - 412
  • [10] Potassium-modified molybdenum-containing SBA-15 catalysts for highly efficient production of acetaldehyde and ethylene by the selective oxidation of ethane
    Liu, Jian
    Yu, Lihong
    Zhao, Zhen
    Chen, Yongsheng
    Zhu, Pengyu
    Wang, Chao
    Luo, Yan
    Xu, Chunming
    Duan, Aijun
    Jiang, Guiyuan
    [J]. JOURNAL OF CATALYSIS, 2012, 285 (01) : 134 - 144