[1] 孙洪伟,彭永臻,时晓宁,等.高氮渗滤液缺氧/厌氧UASB-SBR工艺低温深度脱氮[J].中国环境科学,2009,29(2):207-212.
[2] Hansen K H,Angelidaki A I,Ahring B K.Anaerobic digestion of swine manure:inhibition by ammonia[J].War.Res.,1998,32 (1):5-12.
[3] 潘桂珉,陈凤岗,金承基,等.煤气废水亚硝化型硝化的研究[J].水处理技术,1994,20(4):233-235.
[4] Ford D L,Churchwell R L,Kachtick J W.Comprehensive analysis of nitrification of chemical processing wastewaters[J].J.Water Pollut.Contr.Fed.,1980,52(11):2726-2746.
[5] Balmelle B,Nguyen K M,Capdeville B,et al.Study of factors controlling nitrite build-up in biological processes for water nitrification[J].Wat.Sci.Tech.,1992,26:1017-1026.
[6] Sharma B,Ahlert R C.Nitrification and nitrogen removal(in waste water treatment)[J].War.Res.,1977,11(10):897-925.
[7] Stein L Y,Arp D J.Loss of ammonia monooxygenase activity in Nitrosomonas europaea upon exposure to nitrite[J].Applied Environ.Micro.,1998,64(10):4098-4102.
[8] Yany L,Alleman J E.Investigation of batchwise nitrite build-up by an enriched nitrification culture[J].Wat.Sci.Tech.,1992,26:997-1005.
[9] Yoo H,Ahn K H,Lee H J,et al.Nitrogen removal from synthetic wastewater by simultaneous nitrification and denitrification (SND) via nitrite in an intermittently-aerated reactor[J].Wat.Res.,1999,33 (1):145-154.
[10] Alleman J E.Elevated nitrite occurrence in biological wastewater treatment systems[J].War.Sci.Tech.,1984,17(1):409-419.
[11] Villaverde S,Garcia-Encina P A,Fdz-Polanco F.Influence of pH over nitrifying biofilm activity in submerged biofilters[J].Wat.Res.,1997,31(5):1180-1186.
[12] Sunnacz-Gorska J,Cichon A,Miksch K.Nitrogen removal from wastewater with high ammonia nitrogen concentration via shorter nitrification and denitrification[J].Wat.Sci.Tech.,1997,36 (10):73-78.
[13] 魏琛,罗固源.游离氨对稳定生物亚硝化的影响分析[J].重庆环境科学,2003,25(12):50-52.
[14] 吴莉娜,彭永臻,王淑莹,等.游离氨对城市生活垃圾渗滤液短程硝化的影响[J].环境科学,2008,29(12):3428-3432.
[15] 王建龙.氨的厌氧氧化[J].生命的化学,1997,17(6):37-38.
[16] 廖德祥,吴永明,李小明,等.亚硝化-厌氧氨氧化联合工艺处理高含氮废水的研究[J].环境科学,2006,27(9):1776-1770.
[17] Liu Sitong,Yang Fenglin,Xue Yuan,et al.Evaluation of oxygen adaptation and identification of functional bacteria composition for anammox consortium in non-woven biological rotating contactor[J].Bioresource Technology,2008,99 (17):8273-8279.
[18] Anthonisen A C,Loehr R C,Prakasam T B S,et al.Inhibition of nitrification by ammonia and nitrous acid[J].J.Water Pollut.Contr.Fed.,1976,48(5):835-850.
[19] 任勇翔,彭党聪,王志盈,等.亚硝酸型硝化-反硝化工艺处理焦化废水中试研究[J].西安建筑科技大学学报:自然科学版,2002,34(3):256-259.
[20] Sutherson S,Ganczarczyk J J.Inhibition of nitrite oxidation during nitrification:some observations[J].Water Pollut.Res.J.Can.,1986,21 (2):257-266.
[21] Turk O,Mavinic D C.Maintaining nitrite build-up in a system acclimated to free ammonia[J].Wat.Res.,1989,23(11):1383-1388.
[22] 胡纪萃.废水厌氧生物处理理论与技术[M].北京:中国建筑工业出版社,2003:2-28.
[23] 马溪平.厌氧微生物学与污水处理[M].北京:化学工业出版社,2005:64-82.
[24] Angelidaki I,Ahring B K.Thermophilic anaerobic digestion of livestock waste:the effect of ammonia[J].Appi.MicrobioL Biotechnol.,1993,38 (4):560-564.
[25] Lay J J,Li Y Y,Noike T.Influence of pH and moisture content on the methane production in high-solids sludge digestion[J].Wat.Res.,1997,31 (6):1518-1525.
[26] 何仕均,王建龙,赵璇.氨氮对厌氧颗粒污泥产甲烷活性的影响[J].清华大学学报:自然科学版,2009,45(9):1294-1296. |