首页 理论教育 关于科班大坝水库富营养化控制策略的评估

关于科班大坝水库富营养化控制策略的评估

时间:2023-11-25 理论教育 版权反馈
【摘要】:[1]SOYUPAK S, MUKHALLALATI L, Yemisen D.Evaluation of eutrophication control strategies for the Keban Dam reservoir[J].Ecological Modelling, 1997, 97:99-110.[2]SALVIA-CASTELLVI M, DOHET A, VANDER BORG

关于科班大坝水库富营养化控制策略的评估

[1]SOYUPAK S, MUKHALLALATI L, Yemisen D.Evaluation of eutrophication control strategies for the Keban Dam reservoir[J].Ecological Modelling, 1997, 97:99-110.

[2]SALVIA-CASTELLVI M, DOHET A, VANDER BORGHT P, et al.Control of the eutrophication of the reservoir of Esch-sur-Sure (Luxembourg): evaluation of the phosphorus removal by predams[J].Hydrobiologia, 2001,459(1/2/3):61-71.

[3]PAUL L, SCHRUTER K, LABAHN J.Phosphorus elimination by longitudinal subdivision of reservoirs and lakes[J].Water Science &Technology, 1998, 37(2):235-243.

[4]林卫青,顾玉亮,卢士强,等.防止藻类过度繁殖的青草沙水库合理水力停留时间初探[J].给水排水,2009,35(9): 60-62.

[5]TARCZYSKA M, FRANKIEWICA P.The regulation and control of hydrologic and biotic processes within reservoirs for water quality improvement [G].In: Guidelines for the Integrated Management for the Watershed-Ecohydrology &Phytotechnology.UNEP-IETC, 2002(5):137-156.

[6]BENNDORF J, PÜTZ K.Control of eutrophication of lakes and reservoirs by means of pre-dams:Ⅱ.validation of the phosphate removal model and size optimization[J].Water Research, 1987,21:839-847.

[7]PÜTZ K, JÜRGEN B.The importance of pre-reservoirs for the control of eutrophication of reservoirs[J].Water Science &Technology, 1998,37(2):317-324.

[8]BENNDORF J, PÜTZ K, KRINITZ H, et al.Die function der vorsperren zum schutz der talsperren vor eutrophierung[J]. Wasserwirtschaft Wassertechnik, 1975,25:19-25.

[9]PAUL L.Nutrient elimination in pre-dams: results of long term studies[R].Ceske Budejovice: 4th International Conference on Reservoir Limnology and Water Quality, 2002.

[10]STRASKRABA M, DOSTALKOVA I, HEJZLAR J, et al.The effects of reservoir on phosphorus concentration[J]. International Review of Hydrobiology, 1995,80:403-413.

[11]KAWARA O, YURA E, FUJII S, et al.A study on the role of hydraulic retention time in eutrophication of the Asahi River Dam reservoir[J].Water Science &Technology, 1998,37: 245-252.

[12]侯宇光,杨龄真,黄川友.环境保护[M].成都:成都科技大学出版社,1990:29-30.

[13]REED S C, MIDDLEBROOKS E J, CRITES R W.Natural Systems for Waste Management and Treatment[M].New York: McGraw-Hill Book Co., 1987.

[14]BAVOR H J, ROSER D J, MCKERSIE S.Nutrient Removal Using Shallow Lagoon-Solid Matrix Macrophyte Systems.In quatic Plants for Water Treatment and Resource Recovery [M].Orlando FL: Magnolia Publishing, 1987:227-235.

[15]郭栋鹏.黄海南部海域排海尾水中污染物降解规律研究[D].太原:太原理工大学,2006.

[16]王晓丽.桑沟湾养殖水域颗粒态有机物迁移转化过程的研究[D].青岛:中国海洋大学,2004.

[17]赵永志,潘丽华,古伟宏.江水中有机氮降解规律的动力学研究[J].高师理科学刊,1999,19(3): 55-57,85.

[18]席磊,程金平,程芳,等.杭州湾北岸近岸海域N、P降解系数的围隔实验研究[J].海洋科学,2012,36(9):32-38.

[19]季民,孙志伟,王泽良,等.纳污海水中COD生化降解过程的模拟试验研究[J].海洋与湖沼,1999,30(6): 731-736.

[20]王有乐,周智芳,王立京,等.黄河兰州段氨氮降解系数的测定[J].兰州理工大学学报,2006,32(5): 72-74.

[21]王有乐,孙苑菡,周智芳,等.黄河兰州段化学需氧量降解系数的实验研究[J].甘肃冶金,2006,28(1):27-29.

[22]陶威,刘颖,任怡然,等.长江宜宾段氨氮降解系数的实验室研究[J].污染防治技术,2009,22(6): 8-10.(www.xing528.com)

[23]邱巍.长江口竹园排污区化学需氧量降解系数[J].上海水利,1996,45(4): 34-36.

[24]杜娟,潘婷,谭剑聪,等.长江宜宾段总磷的迁移转化特征分析.四川省第十一次环境监测学术交流会议论文集[C],2010:186-189.

[25]王修林,李克强,石晓勇.胶州湾主要化学污染物海洋环境容量[M].北京:科学出版社,2006: 170-173.

[26]姚重华.废水处理计量学导论[M].北京:化学工业出版社,2002:122-125.

[27]Melbourne Water.Constructed Wetland Systems Design Guidelines for Developers, Version 3[R].Melbourne, Australia: Melbourne Water, 2005.

[28]JARGENSEN S E.Application of ecological modeling in environmental management part A[M].New York: Elsevier Science Publishing, 1983.

[29]DI TORO D.Applicability of cellular equilibrium and Monod theory to phytoplankton growth kinetics[J].Ecological Modelling, 1980,8(1): 201-218.

[30]CERCO C F, Noel M R, Tillman D H.A practical application of Droop nutrient kinetics (WR1883)[J].Water Research, 2004,38(20):4446-4454.

[31]REYNOLDS C S.The ecology of freshwater phytoplankton [M].London: Cambridge University Press, 1984.

[32]BURGE K, BREEN P F.Detention time design criteria to reduce the risk of excessive algal growth in constructed waterbodies.In: Proceedings of the 7th International Conference on Urban Drainage Modelling and the 4th International Conference on Water Sensitive Urban Design[C].Melbourne: Monash University, 2006:5-15.

[33]COLES J F, JONES R C.Effect of temperature on photosynthesis-light response and growth of four phytoplankton species isolated from a tidal freshwater river[J].Journal of Phycology, 2000,36(1): 7-16.

[34]郑炳辉,张永泽.滇池生态动力学模型的改进[J].环境科学研究,1994,7(4):3-6.

[35]张永泽,刘玉生,郑炳辉.Exergy在湖泊生态系统建模中的应用[J].湖泊科学,1997,9(3):75-81.

[36]DROOP M.Some thoughts on nutrient limitation in algae [J].Journal of Phycology, 1973,9(3):264-272.

[37]余江,林卫青,卢士强.黄浦江突发性化学品泄漏事故对上游水源地影响初探[J].上海环境科学,2007,26(5):193-197.

[38]朱建荣,顾玉亮,吴辉.长江河口青草沙水库最长连续不宜取水天数[J].海洋与湖沼,2013,44(5):1138-1145.

[39]HART B, ROBERTS S, JAMES R, et al.Use of active barriers to reduce eutrophication problems in urban lakes[J].Water Science &Technology, 2003,47:157-163.

[40]REYNOLDS C S.The development of perception of aquatic eutrophication and its control[J].Ecohydrology and Hydrobiology, 2003,3(2):149-163.

[41]卢士强,矫吉珍,林卫青.区域排污对长江口水源地水质影响的数值模拟[J].人民长江,2013,44(21): 112-116.

责任编辑 黄潇月(收到修改稿日期:2019-07-04)

免责声明:以上内容源自网络,版权归原作者所有,如有侵犯您的原创版权请告知,我们将尽快删除相关内容。

我要反馈