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Solid state anaerobic digestion of water poor feedstock for methane yield:an overview of process characteristics and challenges

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摘要 Solid state anaerobic digestion(SSAD)of water poor feedstock may be a promising technology for energy recovery.Feedstocks having high solid concentration like lignocellulosic biomass,crop residues,forestry waste and organic fraction of municipal waste may be the appropriate feedstock for its biochemical conversion into energy carries like biomethane through SSAD.Compared to liquid state anaerobic digestion(LSAD),SSAD can handle higher organic loading rates(OLR),requires less water and smaller reactor volume and may have lower energy demand for heating or stirring and higher volumetric methane productivity.Besides these,pathogen inactivation may also be achieved in SSAD of biodegradable waste.Around 60%of recently built AD systems have adopted SSAD technology.However,the process stability of an SSAD system may have several constraints like limited mass transfer,process inhibitors and selection of digester type and should be addressed prior to the implementation of SSAD technology.In this article,a comprehensive overview of the key aspects influencing the performance of SSAD is discussed along with the need for mathematical modelling approaches.Further to this,reactor configuration for SSAD and digestate management requirement and practice for solid-state condition are reviewed for a better insight of SSAD technology.
出处 《Waste Disposal and Sustainable Energy》 2021年第3期227-245,共19页 废弃物处置与可持续能源(英文)
基金 All the authors are thankful to Department of Biotechnology-Government of India(Grant No.BT/RLF/Re-Entry/04/2013) Department of Science and Technology-Government of India(Grant No.ECR/2016/000989)for financial support.
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  • 1Ahring B K,1994.Status on science and application of thermophilic anaerobic digestion[J].Water Science & Technology,30:241-299.
  • 2Ahring B K,Mladenovska Z,Iranpour R et al.,2001.State of the art and future perspectives of thermophilic anaerobic digestion[C].Anaerobic Digestion 2001,In:Proceedings of 9th World Congress,Antwerpen,Belgium(Velsen A F M,Verstraete W H ed.).Part 1:455-460.
  • 3APHA,1995.Standard methods for the examination of water and wastewater[S].19th ed.American Public Health Association,New York,USA.
  • 4Baere L D,2000.Anaerobic digestion of solid waste:state-of-the-art[J].Water Science & Technology,41:283-290.
  • 5Benitez E,Nogales R,Elvira C et al.,1999.Enzyme activities as indicators of the stabilization of sewage sludges composting with Eisenia foetida[J].Bioresource Technology,67:297-303.
  • 6Brummeler E T,2000.Full scale experience with the BIOCEL process[J].Water Science & Technology,41:299-304.
  • 7Cheunbarn T,Pagilla K R,2000.Anaerobic thermophilic/mesophilic dual-stage sludge treatment[J].J Environmental Engineering,ASCE,126:796-801.
  • 8Kuroshima M,Misaki T,Ishibashi T et al.,2001.Dry anaerobic treatment of livestock waste together with municipal solid waste[C].In:Proceedings of 9th World Congress,Antwerpen,Belgium (Velse A.F.M.,Verstratete W.H.,ed.).Part 1:375-380.
  • 9Pavan P,Battistoni P,Mata-Alvarez J et al.,2000.Performance of thermophilic semi-dry anaerobic digestion process changing the feed biodegradability[J].Water Science & Technology,41:75-81.
  • 10Sung S,Liu T,2001.Ammonia inhibition on thermophilic aceticlastic methanoges[M].Anaerobic Digestion 2001,In:Proceedings of 9th World Congress,Antwerpen,Belgium(Velsen A F M.,Verstraete W H.,ed.).Part 1:401-407.

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