Year-round biogas production in sugarcane biorefineries: Process stability, optimization and performance of a two-stage reactor system

被引:20
作者
Janke, Leandro [1 ]
Weinrich, Soren [1 ]
Leite, Athaydes F. [2 ]
Strauber, Heike [2 ]
Radetski, Claudemir M. [3 ]
Nikolausz, Marcell [2 ]
Nelles, Michael [1 ,4 ]
Stinner, Walter [1 ]
机构
[1] Deutsch Biomasseforschungszentrum Gemeinnutzige G, Dept Biochem Convers, Torgauer Str 116, D-04347 Leipzig, Germany
[2] UFZ Helmholtz Ctr Environm Res, Dept Environm Microbiol, Permoserstr 15, D-04318 Leipzig, Germany
[3] Univ Vale Itajai, Lab Remediacao Ambiental, Rua Uruguai 458, BR-8320 Itajai, Brazil
[4] Univ Rostock, Chair Waste Management, Fac Agr & Environm Sci, Justus von Liebig Weg 6, D-18059 Rostock, Germany
关键词
Sugarcane waste; Anaerobic digestion; Process design; Methane potential; Capacity factor; SEMICONTINUOUS ANAEROBIC-DIGESTION; WASTE PRODUCTS; WHEAT-STRAW; BED REACTOR; VINASSE; SUPPLEMENTATION; FERMENTATION; SILAGE; PRETREATMENT; STRATEGIES;
D O I
10.1016/j.enconman.2018.04.101
中图分类号
O414.1 [热力学];
学科分类号
摘要
The concept of year-round biogas production to increase the capacity factor of anaerobic digestion (AD) plants in sugarcane biorefineries was investigated for the first time in semi-continuous feeding mode. To simulate the use of sugarcane vinasse during the sugarcane season and sugarcane filter cake (SFC) during the off-season period, a two-stage reactor system based on an acidogenic continuous stirred-tank reactor (1st stage) followed by solid-liquid separation and an upflow anaerobic sludge blanket (UASB) reactor (2nd stage) to convert the COD-rich liquid fraction into biogas was operated. Additionally, to optimize the biogas production from SFC, the effects of its thermo-chemical pre-treatment on AD were investigated in a parallel reactor set-up. The saponification effect provided by autoclaving the substrate with sodium hydroxide improved the hydrolysis/fermentation of SFC in the acidogenic reactor, which in turn resulted in a 28% higher volumetric methane production in the methanogenic reactor (p < 0.05). However, the methane yields observed during operation of the two-stage reactor system were markedly lower than previously found in biochemical methane potential tests using SFC. In this case, the feed-in with low suspended solids required by UASB reactors prevented the utilization of the non-hydrolyzed/fermented solid fraction of SFC ( >60% of the substrate's methane potential). Nevertheless, the capacity factor of the AD plants in sugarcane biorefineries could be increased from 0.55 up to 0.69 when considering a 200 d a (-1) sugarcane season (0.66-0.83 for a longer season of 240 d a (-1)), representing an increase of 25.7%. The average capacity factor for biogas combined heat and power and upgrading units of around 0.91 (8000 h a (-1)) would be reached if further developments could improve the solubilization of non-hydrolyzed/fermented solids or alternatively allow their direct use in the methanogenic reactor.
引用
收藏
页码:188 / 199
页数:12
相关论文
共 40 条
[1]   Principles and potential of the anaerobic digestion of waste-activated sludge [J].
Appels, Lise ;
Baeyens, Jan ;
Degreve, Jan ;
Dewil, Raf .
PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2008, 34 (06) :755-781
[2]   A long-term study on the effect of magnetite supplementation in continuous anaerobic digestion of dairy effluent - Magnetic separation and recycling of magnetite [J].
Baek, Gahyun ;
Jung, Heejung ;
Kim, Jaai ;
Lee, Changsoo .
BIORESOURCE TECHNOLOGY, 2017, 241 :830-840
[3]   Advances towards understanding and engineering direct interspecies electron transfer in anaerobic digestion [J].
Barua, Sajib ;
Dhar, Bipro Ranjan .
BIORESOURCE TECHNOLOGY, 2017, 244 :698-707
[4]  
Batstone DJ, 2011, TREATISE ON WATER SCIENCE, VOL 4: WATER-QUALITY ENGINEERING, P615
[5]   Exponential model describing methane production kinetics in batch anaerobic digestion: a tool for evaluation of biochemical methane potential assays [J].
Brule, Mathieu ;
Oechsner, Hans ;
Jungbluth, Thomas .
BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2014, 37 (09) :1759-1770
[6]   Sugarcane vinasse: Environmental implications of its use [J].
Christofoletti, Cintya Aparecida ;
Escher, Janaina Pedro ;
Correia, Jorge Evangelista ;
Urbano Marinho, Julia Fernanda ;
Fontanetti, Carmem Silvia .
WASTE MANAGEMENT, 2013, 33 (12) :2752-2761
[7]   Improved methane production from sugarcane vinasse with filter cake in thermophilic UASB reactors, with predominance of Methanothermobacter and Methanosarcina archaea and Thermotogae bacteria [J].
de Barros, Valciney Gomes ;
Duda, Rose Maria ;
Vantini, Juliana da Silva ;
Omori, Wellington Pine ;
Tiraboschi Ferro, Maria Ines ;
de Oliveira, Roberto Alves .
BIORESOURCE TECHNOLOGY, 2017, 244 :371-381
[8]  
DIN, 2011, 1504 DIN EN
[9]  
DIN, 2011, 16170 DIN EN
[10]  
FNR, 2010, GUID BIOG PROD US