[1] |
李维国,马放,苏俊峰,等. 一株中度嗜盐菌的分离鉴定及其强化高盐有机废水处理的研究. 湖南大学学报(自然科学版), 2008, 35(2): 84-88 Li Weiguo, Ma Fang, Su Junfeng, et al. Isolation and identification of a moderately halophilic bacterium and its bioaugmention in intensifying high-salty organic wastewater treatment. Journal of Hunan University (Natural Sciences), 2008, 35(2): 84-88(in Chinese)
|
[2] |
程宏伟,林里,刘德明. 香港应用海水冲厕工程综述. 福建建筑, 2010, (8): 1-3 Cheng Hongwei, Lin Li, Liu Deming. The use of sea water for toilet flushing in Hong Kong. Fujian Architecture & Construction, 2010, (8): 1-3 (in Chinese)
|
[3] |
Wen C.G. Effect of salinity on removal confficient of receiving waters. Water Science and Technology, 1984, 16(1): 139-154
|
[4] |
Belkin S., Brenner A., Abeliovich A. Biological treatment of a high salinity chemical industry wastewater. Water Science and Technology, 1993, 27(9): 61-72
|
[5] |
Lefebvre O., Moletta R. Treatment of organic pollution in industrial saline wastewater (a literature review). Water Research, 2006, 40(20): 3671-3682
|
[6] |
Keller J., Yuan Z., Blackall L.L. Integrating process engineering and microbiology tools to advance activated sludge wastewater treatment research and development. Reviews in Environmental Science and Biotechnology, 2002, 1(1): 83-97
|
[7] |
An L., Gu G.W. Treatment of saline wastewater using a two-stage contact oxidation method. Water Science and Technology, 1993, 28(7): 31-37
|
[8] |
Kargi F., Dincer A.R. Effect of salt concentration on biological treatment of saline wastewater by fed-batch operation. Enzyme and Microbial Technology, 1996, 19(7): 529-537
|
[9] |
Panswad T., Chadarut A. Impact of high chloride wastewater on an anaerobic/anoxic/aerobic process with and without inoculation of chloride acclimated seeds. Water Research, 1999, 33(5): 1165-1172
|
[10] |
Wagner M., Loy A., Nogueira R., et al. Microbial community composition and function in wastewater treatment plants. Antonie Van Leeuwenhoek, 2002, 81(1-4): 665-680
|
[11] |
Lee T.H., Kurata S., Nakatsu C.H., et al. Molecular analysis of bacterial community based on 16S rDNA and functional genes in activated sludge enriched with 2,4-dichlorophenoxyacetic acid (2,4-D) under different cultural conditions. Microbial Ecology, 2005, 49(1): 151-62
|
[12] |
Yoshie S., Makino H., Hirosawa H., et al. Molecular analysis of halophilic bacterial community for high-rate denitrification of saline industrial wastewater. Applied Microbiology and Biotechnology, 2006, 72(1): 182-189
|
[13] |
刘铁汉, 周培瑾. 嗜盐微生物. 微生物学通报, 1999, 26(3): 232 Liu Tiehan, Zhou Peijing. Halophilic microorganisms. Microbiology, 1999, 26(3): 232 (in Chinese)
|
[14] |
Oren A. Halophilic Microorganisms and Their Environments. Dordrecht, Dutch: Kluwer Academic Publishers, 2002. 368-369
|
[15] |
Diaz M.P., Boyd K.G., Grigon S.J., et al. Biodegradation of crude oil across a wide range of salinities by an extremely halotolerant bacterial consortium MPD-M, immobilized onto polypropylene fibers. Biotechnology & Bioengineering, 2002. 79(2):145-153
|
[16] |
Margesin R., Schinner F. Potential of halotolerant and halophilic microorganisms for biotechnology. Extremophiles, 2001, 5(2): 73-83
|