[1] ZALA S L, AYYER J, ANJANA J. Nitrate removal from the effluent of a fertilizer industry using a bioreactor packed with immobilized cells of Pseudomonas stutzeri and Comamonas testosteroni[J]. World Journal of Microbiology & Biotechnology, 2004, 20(7): 661-665.
[2] BIRADAR P M, DHAMOLE P B, NAIR R R, et al. Long-term stability of biological denitrification process for high strength nitrate removal from wastewater of uranium industry American Institute of Chemical Engineers[J]. Environmental Progress, 2008, 27(3): 365-372. doi: 10.1002/ep.v27:3
[3] SAITUA H, GIL R, PADILLA A P. Experimental investigation on arsenic removal with a nanofiltration pilot plant from naturally contaminated groundwater[J]. Desalination, 2011, 274(1/2/3): 1-6.
[4] SONG H, ZHOU Y, LI A, et al. Selective removal of nitrate from water by a macroporous strong basic anion exchange resin[J]. Desalination, 2012, 296(13): 53-60.
[5] 杨敏, 孙永利, 郑兴灿, 等. 不同外加碳源的反硝化效能与技术经济性分析[J]. 给水排水, 2010, 46(11): 125-128. doi: 10.3969/j.issn.1002-8471.2010.11.032
[6] YANG X P, WANG S H, ZHOU L X. Effect of carbon source, C/N ratio, nitrate and dissolved oxygen concentration on nitrite and ammonium production from denitrification process by Pseudomonas stutzeri D6[J]. Bioresource Technology, 2012, 104(2): 65-72.
[7] 熊建英, 郑正. 垃圾填埋场渗滤液溶解性有机质特性及其去除技术综述[J]. 环境化学, 2015, 34(1): 44-53. doi: 10.7524/j.issn.0254-6108.2015.01.2014033001
[8] 袁敏, 周琪, 杨殿海, 等. 垃圾渗滤液为碳源时A2/O法的脱氮除磷研究[J]. 中国给水排水, 2008, 24(11): 27-29. doi: 10.3321/j.issn:1000-4602.2008.11.008
[9] KACZOREK K, LEDAKOWICZ S. Kinetics of nitrogen removal from sanitary landfill leachate[J]. Bioprocess Bioprocess and Biosystems Engineering, 2006, 29(5/6): 291-304.
[10] 欧阳科, 黎丽华, 陈媛, 等. 膜生物反应器(MBR)处理垃圾渗滤液的脱氮研究[J]. 生态环境学报, 2011, 20(4): 706-710. doi: 10.3969/j.issn.1674-5906.2011.04.021
[11] PAVAN P, BATTISTONI P, FAVA G. Biowaste fermentation and phosphor us crystallization as a way to improve the reliability of the BNR processes[J]. Water Environment & Technology, 1996, 20(4): 131-140.
[12] SANS C, MATA-ALVAREZ J, CECCHI F, et al. Volatile fatty acids production by mesophilic fermentation of mechanically sorted urban organic wastes in a plugflow reactor[J]. Bioresource Technology, 1995, 51(1): 89-96. doi: 10.1016/0960-8524(95)95866-Z
[13] 国家环境保护总局. 水和废水监测分析方法[M]. 4版. 北京: 中国环境科学出版社, 2002.
[14] ELEFSINIOTIS P, WAREHAM D G. Utilization patterns of volatile fatty acids in the denitrification reaction[J]. Enzyme and Microbial Technology, 2007, 41(1/2): 92-97.
[15] ELEFSINIOTIS P, WAREHAM D G, SMITH M O. Use of volatile fatty acids from an acid-phase digester for denitrification[J]. Journal of Biotechnology, 2004, 114(3): 289-297. doi: 10.1016/j.jbiotec.2004.02.016
[16] 刘沛然. Ca2+、Mg2+对垃圾渗滤液厌氧生物处理及微生物群落的影响研究[D]. 合肥: 安徽建筑大学, 2017.
[17] 梅林玲, 于静洁, 张燕, 等. 难降解有机污染物的共代谢研究进展[J]. 天津城建大学学报, 2018, 24(6): 423-429.
[18] MENG X, XIANG Y Y, HENG J G, et al. Effect of hydroxypropyl-β-cyclodextrin on the cometabolism of phenol and phenanthrene by a novel Chryseobacterium sp.[J]. Bioresource Technology, 2019, 273: 56-62. doi: 10.1016/j.biortech.2018.10.087
[19] 周梦娟, 缪恒锋, 陆震明, 等. 碳源对反硝化细菌的反硝化速率和群落结构的影响[J]. 环境科学研究, 2018, 31(12): 2047-2054.
[20] YAN Y L. Structural and functional analysis of denitrification genes in Pseudomonas stutzeri A1501[J]. Science China Life Sciences, 2005, 48(6): 585-592. doi: 10.1360/062005-45
[21] QIAO N H, XI L J, ZHANG J J. Thauera sinica sp. nov.: A phenol derivative-degrading bacterium isolated from activated sludge[J]. Antonie van Leeuwenhoek, 2017, 111(6): 945-954.
[22] 王艳青. Pannonibacter sp. W1降解对氨基苯磺酸的特性研究[D]. 大连: 大连理工大学, 2009.
[23] ELENA S G, TATJANA N Z, TATJANA P T. Anoxynatronum sibiricum gen. nov., sp. nov. alkaliphilic saccharolytic anaerobe from cellulolytic community of Nizhnee Beloe (Transbaikal region)[J]. Extremophiles, 2003, 7(3): 213-220. doi: 10.1007/s00792-002-0312-5
[24] SUN Y L, LI A, ZHANG X N, et al. Regulation of dissolved oxygen from accumulated nitrite during the heterotrophic nitrification and aerobic denitrification of Pseudomonas stutzeri T13[J]. Applied Microbiology and Biotechnology, 2015, 99(7): 3243-3248. doi: 10.1007/s00253-014-6221-6
[25] PINTATHONG P, RICHARDSON D J, SPIRO S, et al. Influence of metal ions and organic carbons on denitrification activity of the halotolerant bacterium, Paracoccus pantotrophus P16 a strain from shrimp pond[J]. Electronic Journal of Biotechnology, 2009, 12(2): 1-11.