[1] |
Buisman C. J., Wit B., Lettinga G. Biotechnological sulphide removal in three polyurethane carrier reactors: Stirred reactor, biorotor reactor and upflow reactor. Water Research, 1990, 24(2): 245-251
|
[2] |
Kuenen J. G., Robertson L. A. The use of natural bacterial populations for the treatment of sulphur-containing wastewater//Rosenberg E., ed. Microorganisms to Combat Pollution. Netherlands: Springer, 1993: 115-130
|
[3] |
Benschop A., Ghonim Z., Wolschlag L., et al. Biological process removes sulfur from three refinery streams//Proceedings of the ERTC 9th Annual Meeting. Prague, Czech Republi, 2004
|
[4] |
Mahmood Q., Zheng Ping, Cai Jing, et al. Sources of sulfide in waste Streams and current biotechnologies for its removal. Journal of Zhejiang University Science A, 2007, 8(7): 1126-1140
|
[5] |
Janssen A. J. H., Sleyster R., Van der Kaa C., et al. Biological Sulphide oxidation in a fed-batch reactor. Biotechnology and Bioengineering, 1995, 47(3): 327-333
|
[6] |
姚传忠, 张克强, 季民, 等. 排硫硫杆菌生物强化处理含硫废水. 中国给水排水, 2004, 20(2): 57-59 Yao Chuanzhong, Zhang Keqiang, Ji Min, et al. Use of thiobacillus thioparus for enhanced treatment of sulfur containing wastewater. China Water & Wastewater, 2004, 20(2): 57-59(in Chinese)
|
[7] |
Janssen A. J. H., Lettinga G., De Keizer A. Removal of hydrogen sulphide from wastewater and waste gases by biological conversion to elemental sulphur: Colloidal and interfacial aspects of biologically produced sulphur particles. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 1999, 151(1-2): 389-397
|
[8] |
李亚新, 陈丽华. 利用硫酸盐还原菌烟道气生物脱硫技术. 环境科学与技术, 2003, 26(3): 51-53 Li Yaxin, Chen Lihua. Microbial desulfurization from flue gas using sulfate reducing bacteria. Environmental Science & Technology, 2003, 26(3): 51-53(in Chinese)
|
[9] |
Watkinson J. H., Lee A., Lauren D. R. Measurement of elemental sulfur in soil and sediments-field sampling, sample storage, pretreatment, extraction and analysis by high performance liquid chromatography. Australian Journal of Soil Research, 1987, 25(2): 167-178
|
[10] |
McGuire M. M., Hamers R. J. Extraction and quantitative analysis of elemental sulfur from sulfide mineral surfaces by high-performance liquid chromatography. Environmental Science & Technology, 2000, 34(21): 4651-4655
|
[11] |
Huggins F. E., Vaidya S. V., Shah N., et al. Investigation of sulfur forms extracted from coal by perchloroethylene. Fuel Processing Technology, 1993, 35(3): 233-257
|
[12] |
汪诚文, 金小达, 贾捍卫, 等. 烟气生物脱硫污泥中单质硫的回收工艺中试研究. 环境科技, 2010, 23(2): 1-4 Wang Chengwen, Jin Xiaoda, Jia Hanwei, et al. Pilot studies on reclamation process of elemental sulfur from flue gas biodesulfurization waste sludge. Environmental Science and Technology, 2010, 23(2): 1-4(in Chinese)
|
[13] |
Hurse T. J., Abeydeera W. P. P. Quantification of sulfur and sulfur-containing compounds in wastewaters by means of a combination of liquid chromatographic methods. Journal of Chromatography A, 2002, 942(1): 201-210
|
[14] |
邢大荣, 孙仕萍, 张岚, 等. 饮用水中硫酸盐的铬酸钡分光光度测定法. 环境与健康杂志, 2007, 24(12): 990-991 Xing Darong, Sun Shiping, Zhang Lan, et al. Determination of sulfate in water by barium chromate sepctrophotometry. Journal of Environment and Health, 2007, 24(12): 990-991(in Chinese)
|
[15] |
曹杰山. 碘量法测定水和废水中硫化物. 中国环境监测, 2001, 17(4): 31-34 Cao Jieshan. Determination of sulfides in water and wastewater by iodonetric method. Environmental Monitoring, 2001, 17(4): 31-34(in Chinese)
|
[16] |
Janssen A. J. H., Ma S. C., Lens P., et al. Performance of a sulfide-oxidizing expanded-bed reactor supplied with dissolved oxygen. Biotechnology and Bioengineering, 1997, 53(1): 32-40
|
[17] |
陈超球. 无机及普通化学实验. 长沙: 中南工业大学出版社, 1988: 81
|
[18] |
Janssen A., De Keizer A., Van Aelst A., et al. Surface characteristics and aggregation of microbiologically produced sulphur particles in relation to the process conditions. Colloids and Surfaces B: Biointerfaces, 1996, 6(2): 115-129
|