[1] Hamazah Z,Ghararah A.Biological denitrification of high nitrate water:influence oftype ofcarbon source and nitrate loading[J].J.Environ.Sci.Health,1996,31(7):1 651-1 668.
[2] 谭佑铭,罗启芳.固定化反硝化菌去除水中硝酸盐氮的研究[J].环境与健康杂志,2001,18(6):371-373.
[3] 付永胜,朱杰.SBR 工艺处理肉类加工废水脱氮最佳运行条件的选择[J].水处理技术,2005,31(12):67-71.
[4] Mohseni-Bandpi A,Elliot DJ.Groundwater denitrification with alternative carbon sources[J].Water Science and Technology,1998,38(6):237-243.
[5] 张海杰,陈建孟,罗阳春,等.有机碳源和溶解氧对亚硝酸盐生物硝化的影响研究[J].环境污染与防治,2005,27(9):641-643.
[6] Pochana K,Keller J.Study of factors affecting simultaneous nitrification and denitrification(SND)[J].Water Science and Technology,1999,39(6):61-68.
[7] Mohseni-Bandpi A,Elliot D J,Momeny-Mazdeh A.Denitrification of groundwater using acetic acid as a carbon source[J].Water Science and Technology,1999,40(2):53-59.
[8] 罗启芳,谭佑铭,王琳.饮用水反硝化脱氮方法研究[J].安全与环境学报,2003,3(2):58-61.
[9] 王丽丽,赵林,谭欣,等.不同碳源及其碳氮比对反硝化过程的影响[J].环境保护科学,2004,30(1):15-18.
[10] Shrimali M,Singh KP.Newmethods ofnitrate removal fromwater[J].Environmental Pollution,2001,112(3):351-359.
[11] 吴一平,王旭东.初沉污泥作为生物脱氮除磷快速碳源的转化因素研究[J].西安科技大学学报(自然科学版),2005,37(4):501-503.
[12] 姜桂华.碳源对人工微生物脱氮的影响研究[J].水资源保护,2001,63(1):29-30.
[13] 於建明,石建波,吴庆荣.外加有机碳源对 NO 硝化去除的影响[J].能源环境保护,2005,19(4):13-17.
[14] 谭佑铭,罗启芳.不同碳源对固定化反硝化菌脱氮的影响[J].卫生研究,2003,32(2):95-97.
[15] Gómez MA,González-López J,Hontoria-García E.Influence of carbon source on nitrate removal of contaminated groundwater in a denitrifying submerged filter[J].J.Hazard Mater.,2000,80(1-3):69-80.
[16] 唐玉斌,刘宏伟,郝永胜,等.外加碳源和生物激活剂对生物膜修复污染河水效果的影响[J].华东理工大学学报,2003,29(5):489-492.
[17] 阎宁,金雪标,张俊清.甲醇与葡萄糖为碳源在反硝化过程中的比较[J].上海师范大学学报(自然科学版),2002,31(3):41-44.
[18] 徐亚同.不同碳源对生物反硝化的影响[J].环境科学,1994,15(2):29-32.
[19] 周海红,王建龙.利用可生物降解聚合物同时作为反硝化微生物的碳源和附着载体研究[J].中国生物工程杂志,2006,26(2):95-98.
[20] Volokita M,Abeliovich A,Soares M I M.Denitrification of groundwater usingcotton as energysource[J].Water Science and Technology,1996,34(1):379-385.
[21] 金赞芳,陈英旭,小仓纪雄.以棉花为碳源去除地下水硝酸盐的研究[J].农业环境科学学报,2004,23(3):512-515.
[22] Volokita M,Belkin S,Abeliovich A,et al.Biological denitrification of drinking water using newspaper[J].Wat.Res.,1996,30(4):965-971.
[23] 金赞芳,陈英旭,小仓纪雄.以纸为碳源去除地下水硝酸盐的研究[J].应用生态学报,2004,15(12):2359-2363.
[24] Soares MI M,Abeliovich A.Wheat strawas substrate for water denitrification[J].Wat.Res.,1998,32(12):3790-3794.
[25] 金赞芳.城市(杭州)地下水污染源解析与修复技术研究[D].杭州:浙江大学,2004.
[26] 朱永义.稻谷加工与综合利用[M].北京:中国轻工业出版社,1999:65-69.
[27] 徐锁洪,施巍.以稻壳为载体培养反硝化菌及硝酸盐氮的去除[J].大连铁道学院学报,2001,22(4):98-101.
[28] Ovez B.Batch biological denitrification using Arundo donax,Glycyrrhiza glabra,and Gracilaria verrucosa as carbon source[J].Process Biochemistry,2006,41(6):1289-1295.
[29] Ovez B,Ozgen S,Yuksel M.Biological denitrification in drinking water using Glycyrrhiza glabra and Arundo donax as the carbon source[J].Process Biochemistry,2006,41(7):1 539-1 544.
[30] 周海红,赵璇,王建龙.利用可生物降解聚合物去除饮用水源水中硝酸盐[J].清华大学学报(自然科学版),2006,46(3):434-436.
[31] Boley A,Muller W R,Haider G.Biodegradable polymers as solid substrate and biofilm carrier for denitrification in recirculated aquaculture systems[J].Aquacultural Engineering,2000,22(1-2):75-85.
[32] 曹国民,赵庆祥,孙贤波,等.碳源循环单极生物脱氮技术研究[J].环境科学学报,2001,21(6):705-709.
[33] 马勇,彭永臻,王淑莹.A/O 脱氮工艺中外碳源投加控制器的建立与研究[J].高技术通讯,2004,14(9):106-110. |