Influences of volatile solid concentration, temperature and solid retention time for the hydrolysis of waste activated sludge to recover volatile fatty acids

被引:99
作者
Xiong, Huilei [1 ]
Chen, Jinluan [1 ]
Wang, Hui [1 ]
Shi, Hanchang [1 ]
机构
[1] Tsinghua Univ, Sch Environm, Beijing 100084, Peoples R China
关键词
Hydrolysis acidification; Waste activated sludge; Volatile fatty acids; SEWAGE-SLUDGE; ANAEROBIC-DIGESTION; ACIDOGENIC FERMENTATION; HYDROGEN-PRODUCTION; PH; POLYHYDROXYALKANOATES; OPTIMIZATION; PRETREATMENT; PHOSPHORUS; CONVERSION;
D O I
10.1016/j.biortech.2012.05.126
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
The study evaluated influences of sludge concentration, temperature and solids retention time (SRT) for the hydrolysis of waste activated sludge (WAS) in anaerobic digesters. The results indicated that volatile fatty acids (VFA) production increased when the concentration of mixed liquor volatile suspended solids (MLVSS) was higher. When SRT was 48 h, VFA concentration increased 8.43 times from 4.57 to 23.78 gMLVSS/L. VFA generation was significantly affected with different temperature and SRT. When the temperature changed from 40 to 50 degrees C, it induced 1.65-fold increase in VFA yield. The optimal SRT was 48 h. As VFA concentration decreased only 1.31 times compared with maximum VFA production at SRT of 120 h. Iso-valeric acid, acetic acid and n-butyric acid were the dominant VFA produced and would improve ployhydroxyvalerate proportion in polymer. The feasibility of nitrogen and phosphorus recovery and the risk of metal ion released depended on the nature of WAS. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:285 / 292
页数:8
相关论文
共 44 条
[11]   Enhancement of Waste Activated Sludge Protein Conversion and Volatile Fatty Acids Accumulation during Waste Activated Sludge Anaerobic Fermentation by Carbohydrate Substrate Addition: The Effect of pH [J].
Feng, Leiyu ;
Chen, Yinguang ;
Zheng, Xiong .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2009, 43 (12) :4373-4380
[12]   Mesophilic and thermophilic anaerobic digestion of primary and secondary sludge. Effect of pre-treatment at elevated temperature [J].
Gavala, HN ;
Yenal, U ;
Skiadas, IV ;
Westermann, P ;
Ahring, BK .
WATER RESEARCH, 2003, 37 (19) :4561-4572
[13]   Impacts of sterilization, microwave and ultrasonication pretreatment on hydrogen producing using waste sludge [J].
Guo, Liang ;
Li, Xiao-Ming ;
Bo, Xie ;
Yang, Qi ;
Zeng, Guang-Ming ;
Liao, De-xiang ;
Liu, Jing-Jin .
BIORESOURCE TECHNOLOGY, 2008, 99 (09) :3651-3658
[14]   Biohydrogen production by anaerobic fermentation of food waste [J].
Han, SK ;
Shin, HS .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2004, 29 (06) :569-577
[15]   Electricity generation from bio-treatment of sewage sludge with microbial fuel cell [J].
Jiang, Junqiu ;
Zhao, Qingliang ;
Zhang, Jinna ;
Zhang, Guodong ;
Lee, Duu-Jong .
BIORESOURCE TECHNOLOGY, 2009, 100 (23) :5808-5812
[16]   Efficient Polyhydroxyalkanoates Production from a Waste-Activated Sludge Alkaline Fermentation Liquid by Activated Sludge Submitted to the Aerobic Feeding and Discharge Process [J].
Jiang, Yamin ;
Chen, Yinguang ;
Zheng, Xiong .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2009, 43 (20) :7734-7741
[17]   Synthesis of polyhydroxyalkanoates from different short-chain fatty acids by mixed cultures submitted to aerobic dynamic feeding [J].
Lemos, PC ;
Serafim, LS ;
Reis, MAM .
JOURNAL OF BIOTECHNOLOGY, 2006, 122 (02) :226-238
[18]   Inhibition of heavy metals on fermentative hydrogen production by granular sludge [J].
Li, Chenlin ;
Fang, Herbert H. P. .
CHEMOSPHERE, 2007, 67 (04) :668-673
[19]   Acidogenic fermentation of proteinaceous sewage sludge: Effect of pH [J].
Liu, He ;
Wang, Jin ;
Liu, Xiaoling ;
Fu, Bo ;
Chen, Jian ;
Yu, Han-Qing .
WATER RESEARCH, 2012, 46 (03) :799-807
[20]   Improving anaerobic sewage sludge digestion by implementation of a hyper-thermophilic prehydrolysis step [J].
Lu, Jingquan ;
Gavala, Hariklia N. ;
Skiadas, Ioannis V. ;
Mladenovska, Zuzana ;
Ahring, Birgitte K. .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2008, 88 (04) :881-889