[1] |
梁鹏, 黄霞, 钱易.污泥减量化技术的研究进展.环境污染治理技术与设备,2003,4(1):44-52 Liang Peng,Huang Xia,Qian Yi.Research progress sludge reduction technologies.Techniques and Equipment for Environmental Pollution Control, 2003,4(1):44-52(in Chinese)
|
[2] |
Phuengprasop T., Sittiwong J., Unob F. Removal of heavy metal ions by iron oxide coated sewage sludge.Journal of Hazardous Materials, 2011,186(1):502-507
|
[3] |
余杰, 田宁宁, 王凯军.我国污泥处理、处置技术政策探讨.中国给水排水, 2005,21(8):84-87 Yu Jie,Tian Ningning,Wang Kaijun. Discussion on the technical policy of sludge treatment and disposal in China. China Water & Wastewater, 2005,21(8):84-87(in Chinese)
|
[4] |
Rovira J., Mari M., Nadal M., et al. Use of sewage sludge as secondary fuel in a cement plant: human health risks.Environment International, 2011,37(1):105-111
|
[5] |
杭世琚, 刘旭东, 梁鹏.污泥处理处置的认识误区与控制对策.中国给水排水, 2004,20(12):89-92 Hang Shijun,Liu Xudong,Liang Peng. Misunderstanding of sludge disposal and treatment and control strategy. China Water & Wastewater, 2004,20(12):89-92(in Chinese)
|
[6] |
Guodong Zhang, Qingliang Zhao, Yan Jiao, et al. Efficient electricity generation from sewage sludge using biocathode microbial fuel cell. Water Research, 2012,46(1):43-52
|
[7] |
Jiang Junqiu, Zhao Qingliang, Zhang Jinna, et al. Electricity generation from bio-treatment of sewage sludge with microbial fuel cell. Bioresource Technology, 2009,100(23):5808-5812
|
[8] |
Jong B. C., Kim B. H., Chang I. S., et al. Enrichment, performance and microbial diversity of a thermophilic mediatorless microbial fuel cell. Environ. Sci. Technol., 2006,40(20):6449-6454
|
[9] |
赵庆良, 姜琚秋, 王琨, 等.微生物燃料电池处理剩余污泥与同步产电性能.哈尔滨工程大学学报, 2010,31(6):780-785 Zhao Qinglian,Jiang Junqiu,Wang Kun, et al. Simultaneous treatment of sludge and generation of electricity with a microbial fuel cell. Journal of Harbin Engineering University, 2010,31(6):780-785(in Chinese)
|
[10] |
贾斌, 刘志华, 李小明, 等.剩余污泥为燃料的微生物燃料电池产电特性研究.环境科学, 2009,30(4):1227-1231 Jia Bin, Liu Zhihua, Li Xiaoming, et al.Electricity production from surplus sludge using microbial fuel cells. Environmental Science, 2009,30(4):1227-1231(in Chinese)
|
[11] |
杨慧, 刘志华, 李小明, 等.外加酶强化剩余污泥微生物燃料电池产电特性研究.环境科学, 2012,33(1):218-223 Yang Hui,Liu Zhihua,Li Xiaoming,et al. Electricity generation of surplus sludge microbial fuel cells enhanced by additional enzyme. Environmental Science, 2012,33(1):218-223(in Chinese)
|
[12] |
Fan Y. Z., Hu H. Q., Liu H. Enhanced coulombic efficiency and power density of air-cathode microbial fuel cells with an improved cell configuration.Journal of Power Sources, 2007,171(2):348-354
|
[13] |
郑峣, 刘志华, 李小明, 等.剩余污泥生物燃料电池输出功率密度的影响因素.中国环境科学, 2010,30(1):64-68 Zheng Yao,Liu Zhihua,Li Xiaoming, et al. Influencing factors for output power density of microbial fuel ceils using excess sludge from wastewater treatment plant as fuel. China Environmental Science, 2010,30(1):64-68(in Chinese)
|
[14] |
Goel R., Mino T., Satoh H., et al. Enzyme activities under anaerobic and aerobic conditions in activated sludge sequencing batch reactor.Water Research, 1998,32(7):2081-2088
|
[15] |
Yang Q., Luo K., Li X. M., et al. Enhanced efficiency of biological excess sludge hydrolysis under anaerobic digestion by additional enzymes.Bioresource Technology, 2010,101(9):2924-2930
|
[16] |
Zhang P., Chen Y. G., Huang T. Y., et al. Waste activated sludge hydrolysis and short-chain fatty acids accumulation in the presence of SDBS in semi-continuous flow reactors: Effect of solids retention time and temperature. Chemical Engineering Journal, 2009,148(2-3):348-353
|
[17] |
黄霞, 范明志, 梁鹏, 等. 微生物燃料电池阳极特性对产电性能的影响.中国给水排水, 2007,23(3):8-13 Huang Xia,Fan Mingzhi,Liang Peng, et al. Influence of anodic characters of microbial fuel lell on generation performance. China Water & Wastewater, 2007,23(3):8-13(in Chinese)
|
[18] |
周群英, 高廷耀.环境工程微生物学(第2版).北京:高等教育出版社, 2000.122-133
|
[19] |
Jiang S., Chen Y. G., Zhou Q., et al. Biological short-chain fatty acids (SCFAs) production from waste-activated sludge affected by surfactant.Water Research, 2007,41(14):3112-3120
|
[20] |
罗琨, 杨麒, 李小明, 等.外加酶强化剩余污泥水解的研究.环境科学,2010,31(3):763-767 Luo Kun,Yang Qi,Li Xiaoming, et al.Enhanced hydrolysis of excess sludge by external enzymes. Environmental Science, 2010,31(3):763-767(in Chinese)
|
[21] |
Snaidr J., Amann R., Huber I., et al. Phylogenetic analysis and in situ identification of bacteria in activated sludge. Applied and Environmental Microbiology, 1997,63(7):2884-3896
|
[22] |
Blackall L. L., Burrell P. C., Gwilliam H. The use of 16S rDNA clone libraries to describe the microbial diversity of activated sludge communities. Water Science and Technology, 1998,37(4):451-454
|
[23] |
Miller D. W., Agard D. A. Enzyme specificity under dynamic control: A normal mode analysis of α-lytic protease.Journal of Molecular Biology, 1999,286(1):267-278
|
[24] |
MacGregor E. A., Janecek S., Svensson B. Relationship of sequence and structure to specificity in the K-amylase family of enzymes. Biochimica et Biophysica Acta, 2001,1546(1):1-20
|
[25] |
Bruce E. L. 微生物燃料电池. 冯玉杰, 王鑫,译.北京:化学工业出版社, 2009.46-59
|
[26] |
Liu H., Fang H. H. P. Extraction of extracellular polymeric substances (EPS) of sludges. Journal of Biotechnology, 2002,95(3):249-256
|
[27] |
Pinnekamp J. Effects of thermal pretreatment of sewage sludge on anaerobic digestion.Water Science and Technology, 1989,21(4-5):97-108
|
[28] |
Tao H. C., Li W., Liang M., et al. A membrane-free baffled microbial fuel cell for cathodic reduction of Cu(II) with electricity generation. Bioresource Technology, 2011,102(7):4774-4778
|
[29] |
蔡春光, 刘军深, 蔡伟民.胞外多聚物在好氧颗粒化中的作用机理.中国环境科学,2004,24(5):623-626 Cai Chunguang,Liu Junshen,Cai Weimin. Action mechanism of extracelluar polymers on the aerobic granulation. China Environmental Science, 2004,24(5):623-626(in Chinese)
|
[30] |
郑峣.剩余污泥微生物燃料电池的产电性能及基质变化研究.长沙:湖南大学硕士学位论文, 2010 Zheng Yao. The electrical properties and changes on the substrates of microbial fuel cells using excess sludge as fuel.Changsha: Master's Degree Thesis of Hunan University, 2010(in Chinese)
|