[1]
|
丁玲, 逄勇, 李棱, 等. 水动力条件下藻类动态模拟. 生态学报, 2005, 25(8): 1863-1868 Ding Ling, Pang Yong, Li Ling, et al. Simulation study on algal dynamics under different hydrodynamic conditions. Acta Ecologica Sinica, 2005, 25(8): 1863-1868(in Chinese)
|
[2]
|
Sagehashi M., Sakoda A., Suzuki. M. A predictive model of long-term stability after biomanipulation of shallow lakes. Water Research, 2000, 34(16): 4014-4028
|
[3]
|
Harry Hosper S. Stable states, buffers and switches: An ecosystem approach to the restoration and management of shallow lakes in the Netherlands. Water Science and Technology, 1998 37(3): 151-164
|
[4]
|
朱联东, 李兆华, 李中强, 等. 富营养化湖泊生态恢复关键技术. 水科学与工程技术, 2009, 36(5): 1-3 Zhu Liandong, Li Zhaohua, Li Zhongqiang, et al. The key technique for ecological restoration of eutrophicated lakes. Water Sciences and Engineering Technology, 2009, 36(5): 1-3(in Chinese)
|
[5]
|
程红, 王洪兴, 贾秀粉, 等. 富营养化水体的生物控藻技术概述. 农业环境与发展, 2011, 28(3): 50-52 Cheng Hong, Wang Hongxing, Jia Xiufeng, et al. A review of biology about controlling algae on eutrophicated water body. Agro-Environment and Development, 2011, 28(3): 50-52(in Chinese)
|
[6]
|
陆开宏, 晏维金, 苏尚安. 富营养化水体治理与修复的环境生态工程:利用明矾浆和鱼类控制桥墩水库蓝藻水华. 环境科学学报, 2002,22(6): 732-737 Lu Kaihong, Yan Weijin, Su Shangan. Environmental and ecological engineering on control and remediation of eutrophicated water bodies: By using ameliorated alum plasma and fishes to control blue-green blooms of qiaodun reservoir. Acta Scientiae Circumstantiae, 2002,22(6): 732-737(in Chinese)
|
[7]
|
胡光济, 张维昊. 湖泊水华生物防治技术研究进展. 安全与环境工程, 2008, 15(3): 36-39 Hu Guangji, Zhang Weihao. Research advance of prevention and control of water bloom in lake by biological technology. Safety and Environmental Engineering, 2008, 15(3): 36-39(in Chinese)
|
[8]
|
张光生, 王明星, 叶亚新, 等. 太湖富营养化现状及其生态防治对策. 中国农学通报, 2004, 20(3): 235-237 Zhang Guangsheng, Wang Mingxing, Ye Yaxin, et al. The current eutrophication status of Taihu Lake and its ecological control countermeasures. Chinese Agricultural Science Bulletin, 2004, 20(3): 235-237(in Chinese)
|
[9]
|
国家环境保护总局.水和废水分析监测方法(第4版).北京:中国环境科学出版社,2002
|
[10]
|
郑朔方, 杨苏文, 金相灿. 铜绿微囊藻生长的营养动力学. 环境科学, 2005, 26(2): 152-156 Zheng Shuofang, Yang Suwen, Jin Xiangcan. Dynamic studies on the effect of nutrients on the growth of Microcystis aeruginosa. Environmental Science, 2005, 26(2): 152-156(in Chinese)
|
[11]
|
刘波, 崔莉凤, 刘载文. 北京市城区地表水体叶绿素a与藻密度相关性研究. 环境科学与技术, 2008, 31(8): 29-33 Liu Bo, Cui Lifeng, Liu Zaiwen. Correlation between Chlorophyll a and algal density of surface water in urban of Beijing. Environmental Science & Technology, 2008, 31(8): 29-33(in Chinese)
|
[12]
|
储昭升, 金相灿, 庞燕. 铜绿微囊藻和孟氏颤藻在富营养化湖泊中生长特征的模拟研究. 环境科学学报, 2006, 26(11): 1815-1820 Chu Zhaosheng, Jin Xiangcan, Pang Yan. Growth characteristics of Microcystis aeruginosa and Oscillatoria mougeotii in eutrophic lakes: Simulation experiments. Acta Scientiae Circumstantiae, 2006, 26(11): 1815-1820(in Chinese)
|
[13]
|
梁培瑜, 王烜, 马芳冰. 水动力条件对水体富营养化的影响. 湖泊科学, 2013, 25(4): 455-462 Liang Peiyu, Wang Xuan, Ma Fangbing. Effect of hydrodynamic conditions on water eutrophication: A review. Journal of Lake Sciences, 2013, 25(4): 455-462(in Chinese)
|
[14]
|
邢广彦, 胡长春. 利用水动力条件防治水体富营养化. 人民黄河, 2006, 28(7): 36-37 Xing Guangyan, Hu Changchun. Protecting water eutrophication by using hydrodynamic conditions. Yellow River, 2006, 28(7): 36-37(in Chinese)
|
[15]
|
赵颖, 张永春. 流速与温度的交互作用对铜绿微囊藻生长的影响. 江苏环境科技, 2008, 21(1): 23-26 Zhao Ying, Zhang Yongchun. Interaction effect of flow velocity and temperature on growth of Microcystis aeruginosa. Jiangsu Environmental Science and Technology, 2008, 21(1): 23-26(in Chinese)
|
[16]
|
李锦秀, 杜斌, 孙以三. 水动力条件对富营养化影响规律探讨. 水利水电技术, 2005, 36(5): 15-18 Li Jinxiu, Du Bin, Sun Yisan. Effect of hydrodynamics on the eutrophication. Water Resources and Hydropower Engineering, 2005, 36(5): 15-18(in Chinese)
|
[17]
|
张毅敏, 张永春, 张龙江, 等. 湖泊水动力对蓝藻生长的影响. 中国环境科学, 2007, 27(5): 707-711 Zhang Yimin, Zhang Yongchun, Zhang Longjiang, et al. The influence of lake hydrodynamics on blue algal growth. China Environmental Science, 2007, 27(5): 707-711(in Chinese)
|
[18]
|
高月香, 张毅敏, 张永春. 流速对太湖铜绿微囊藻生长的影响. 生态与农村环境学报, 2007, 23(2): 57-60 Gao Yuexiang, Zhang Yimin, Zhang Yongchun. Effects of flow velocity on growth of Microcystis aeruginosa in Taihu Lake. Journal of Ecology and Rural Environment, 2007, 23(2): 57-60(in Chinese)
|
[19]
|
陈楚星. 介绍一种优良的养殖对象:细鳞斜颌鲴. 水产科技情报, 2005, 32(2): 64-67 Chen Chuxing. A introduce of a good livestock: Plagiognathops microlepis bleeker. Fisheries Science and Technology Information, 2005, 32(2): 64-67(in Chinese)
|
[20]
|
王庆, 王绍绵, 陈楚星, 等. 细鳞斜颌鲴的人工繁殖实验. 水产养殖, 2007, 28(2): 16-17 Wang Qing, Wang Shaomian, Chen Chuxing, et al. Artificial reproduction experiment of Plagiognathops microlepis bleeker. Journal of Aquaculture, 2007, 28(2): 16-17(in Chinese)
|
[21]
|
费志良, 吴军, 赵钦, 等. 三角帆蚌对藻类滤食及消化的研究. 淡水渔业, 2006, 36(5): 24-27 Fei Zhiliang, Wu Jun, Zhao Qin, et al. Effect of filtration and digestion of Hyriopsis cumingii to algae. Freshwater Fisheries, 2006, 36(5): 24-27(in Chinese)
|
[22]
|
Gao Xuelu, Song Jinming. Dissolved oxygen and O2 flux across the water-air Interface of the Changjiang Estuary in May 2003. Journal of Marine Systems, 2008, 74(1-2): 343-350
|
[23]
|
Nezlin N. P., Kamer K., Hyde J., et al. Dissolved oxygen dynamics in a eutrophic estuary, Upper Newport Bay, California. Estuarine, Coastal and Shelf Science, 2009, 82(1): 139-151
|
[24]
|
Fan Chengwei, Kao S. J. Effects of climate events driven hydrodynamics on dissolved oxygen in a subtropical deep reservoir in Taiwan. Science of the Total Environment, 2008, 393(2): 326-332
|
[25]
|
贺冉冉, 罗潋葱, 朱广伟, 等. 天目湖溶解氧变化特征及对内源氮释放的影响. 生态与农村环境学报, 2010, 26(4): 344-349 He Ranran, Luo Liancong, Zhu Guangwei, et al. Variation of dissolved oxygen and its influence on release of endogenous nitrogen in Tianmuhu Reservoir in Liyang, China. Journal of Ecology and Rural Environment, 2010, 26(4): 344-349(in Chinese)
|
[26]
|
赵海超, 王圣瑞, 赵明, 等. 洱海水体溶解氧及其与环境因子的关系. 环境科学, 2011, 32(7): 1952-1959 Zhao Haichao, Wang Shengrui, Zhao Ming, et al. Relationship between the do and the environmental factors of the water body in Lake Erhai. Environmental Science, 2011, 32(7): 1952-1959(in Chinese)
|
[27]
|
McCormick P. V., Laing J. A. Effects of increased phosphorus loading on dissolved oxygen in a subtropical wetland, the Florida Everglades. Wetlands Ecology and Management, 2003, 11(3): 199-216
|
[28]
|
Miranda L. E., Hargreaves J. A., Raborn S. W. Predicting and managing risk of unsuitable dissolved oxygen in a eutrophic lake. Hydrobiologia, 2001, 457(1-3): 177-185
|
[29]
|
张岩, 李秀艳, 徐亚同, 等. 8种植物床人工湿地脱氮除磷的研究. 环境污染与防治, 2012, 34(8): 49-52 Zhang Yan, Li Xiuyan, Xu Yatong, et al. Removal of nitrogen and phosphorus by eight plants of float bed constructed wetland. Environmental Pollution and Control, 2012, 34(8): 49-52(in Chinese)
|
[30]
|
魏阳春, 濮培民. 太湖铜锈环棱螺对氮磷的降解作用. 长江流域资源与环境, 1999, 8(1): 81-93 Wei Yangchun, Pu Peimin. Abatement of the nitrogen and phosphorus concent-ration in water by the snail Bellamya aeruginosa in Lake Taihu. Resources and Environment in the Yangtze Basin, 1999, 8(1): 81-93(in Chinese)
|
[31]
|
田如男, 朱敏, 孙欣欣, 等. 不同水生植物组合对水体氮磷去除效果的模拟研究. 北京林业大学学报, 2011, 33(6): 191-195 Tian Ru'nan, Zhu Min, Sun Xinxin, et al. Nitrogen and phosphorus removal effects of different hydrophyte combinations under simulated eutrophic conditions. Journal of Beijing Forestry University, 2011, 33(6): 191-195(in Chinese)
|
[32]
|
徐秀玲, 陆欣欣, 雷先德, 等. 不同水生植物对富营养化水体中氮磷去除效果的比较. 上海交通大学学报(农业科学版), 2012, 30(1): 8-14 Xu Xiuling, Lu Xinxin, Lei Xiande, et al. Effects of hydrophytes on removal of nitrogen and phosphorus in eutrophic water. Journal of Shanghai Jiaotong University(Agricultural Science), 2012, 30(1): 8-14(in Chinese)
|
[33]
|
宋周兵, 于薇. 碳氮磷比失调对污水生物脱氮除磷的影响. 四川环境, 2008, 27(6): 73-76 Song Zhoubing, Yu Wei. Influence of disproportion of C/N/P ratios on biological removal of nitrogen and phosphorus from wastewater. Sichuan Environment, 2008, 27(6): 73-76(in Chinese)
|
[34]
|
段金程, 张毅敏, 高月香, 等. 复合强化净化生态浮床对污水中N、P的去除效果. 生态与农村环境学报, 2013, 29(4): 422-427 Duan Jincheng, Zhang Yimin, Gao Yuexiang, et al. Effect of composite enhanced water-purifying ecological floating bed removing nitrogen and phosphorus in polluted water. Journal of Ecology and Rural Environment, 2013, 29(4): 422-427(in Chinese)
|