[1] 谷雨, 张乃明. 昆明主城区城市地表径流污染特征分析. 环境工程学报, 2013, 7(7):2587-2595 GU Yu, ZHANG Naiming. Characterization of urban surface runoff in main districts of Kunming. Chinese Journal of Environmental Engineering, 2013, 7(7):2587-2595(in Chinese)
[2] 尹澄清. 城市面源污染问题:我国城市化进程的新挑战:代"城市面源污染研究"专栏序言. 环境科学学报, 2006, 26(7):1053-1056 YIN Chengqing. Urban diffuse pollution-a new challenge to the rapid urbanization in China. Acta Scientiae Circumstantiae, 2006, 26(7):1053-1056(in Chinese)
[3] 于江华, 于海霞, 徐礼强. 循环式生物滤池处理城市地表径流的性能研究. 环境科学学报, 2013, 33(9):2516-2521 YU Jianghua, YU Haixia, XU Liqiang. Performance evaluation of recycling bio-filter in the treatment of urban runoff. Acta Scientiae Circumstantiae, 2013, 33(9):2516-2521(in Chinese)
[4] 赵建伟, 单保庆, 尹澄清. 人工快速渗滤系统治理暴雨径流污染研究. 环境科学与技术, 2010, 33(6):142-143 ZHAO Jianwei, SHAN Baoqing, YIN Chengqing. Treatment of stormwater runoff in a constructed rapid infiltration system. Environmental Science & Technology, 2010, 33(6):142-143(in Chinese)
[5] VIJI R., PRASANNA P. R., ILANGOVAN R. Modified SCS-CN and green-ampt methods in surface runoff modelling for the Kundahpallam watershed, Nilgiris, western Ghats, India. Aquatic Procedia, 2015, 4:677-684
[6] 袁星, 王亚炜, 魏源送, 等. 基于最佳管理实践的中新生态城面源污染控制措施优选研究. 环境工程学报, 2013, 7(11):4231-4235 YUAN Xing, WANG Yawei, WEI Yuansong, et al. Optimization of non-point source pollution control measures for Zhong-Xin eco-city in Tianjin based on best management practices. Chinese Journal of Environmental Engineering, 2013, 7(11):4231-4235(in Chinese)
[7] 孙棋棋, 张春平, 于兴修, 等. 中国农业面源污染最佳管理措施研究进展. 生态学杂志, 2013, 32(3):772-778 SUN Qiqi, ZHANG Chunping, YU Xingxiu, et al. Best management practices of agricultural non-point source pollution in China:A review. Chinese Journal of Ecology, 2013, 32(3):772-778(in Chinese)
[8] WINSTON R. J., HUNT W. F., KENNEDY S. G., et al. Field evaluation of storm-water control measures for highway runoff treatment. Journal of Environmental Engineering, 2012, 138(1):101-111
[9] LOFTUS T. T., KRAFT S. E. Enrolling conservation buffers in the CRP. Land Use Policy, 2003, 20(1):73-84
[10] 刘燕, 尹澄清, 车伍. 植草沟在城市面源污染控制系统的应用. 环境工程学报, 2008, 2(3):334-339 LIU Yan, YIN Chengqing, CHE Wu. Application of grassed swales in urban non-point source pollution control. Chinese Journal of Environmental Engineering, 2008, 2(3):334-339(in Chinese)
[11] 吴健, 王敏, 吴建强, 等. 滨岸缓冲带植物群落优化配置试验研究. 生态与农村环境学报, 2008, 24(4):42-45 WU Jian, WANG Min, WU Jianqiang, et al. Optimization of plants community of riparian buffer zones. Journal of Ecology and Rural Environment, 2008, 24(4):42-45(in Chinese)
[12] 王敏, 吴建强, 黄沈发, 等. 不同坡度缓冲带径流污染净化效果及其最佳宽度. 生态学报, 2008, 28(10):4951-4956 WANG Min, WU Jianqiang, HUANG Shenfa, et al. Effects of slope and width of riparian buffer strips on runoff purification. Acta Ecologica Sinica, 2008, 28(10):4951-4956(in Chinese)
[13] 李怀恩, 邓娜, 杨寅群, 等. 植被过滤带对地表径流中污染物的净化效果. 农业工程学报, 2010, 26(7):81-86 LI Huai'en, DENG Na, YANG Yinqun, et al. Clarification efficiency of vegetative filter strips to several pollutants in surface runoff. Transactions of the CSAE, 2010, 26(7):81-86(in Chinese)
[14] 程江, 杨凯, 吕永鹏, 等. 城市绿地削减降雨地表径流污染效应的试验研究. 环境科学, 2009, 30(11):3236-3242 CHENG Jiang, YANG Kai, LYU Yongpeng, et al. Experimental study on rainfall-runoff pollutant reduction by urban green space. Environmental Science, 2009, 30(11):3236-3242(in Chinese)
[15] 吴振斌, 任明迅, 付贵萍, 等. 垂直流人工湿地水力学特点对污水净化效果的影响. 环境科学, 2001, 22(5):45-49 WU Zhenbin, REN Mingxun, FU Guiping, et al. The Influence of hydraulic characteristics on wastewater purifying efficiency in vertical flow constructed wetlands. Environmental Science, 2001, 22(5):45-49(in Chinese)
[16] 赵建伟, 单保庆, 尹澄清. 城市面源污染控制工程技术的应用及进展. 中国给水排水, 2007, 23(12):1-5 ZHAO Jianwei, SHAN Baoqing, YIN Chengqing. Application and progress in engineering technologies for controlling urban non-point source pollution. China Water & Wastewater, 2007, 23(12):1-5(in Chinese)
[17] 王健, 尹炜, 叶闽, 等. 植草沟技术在面源污染控制中的研究进展. 环境科学与技术, 2011, 34(5):90-94 WANG Jian, YIN Wei, YE Min, et al. Advance on grassed swales technology in non-point source pollution control. Environmental Science & Technology, 2011, 34(5):90-94(in Chinese)
[18] 霍炜洁, 周怀东, 刘玲花, 等. 土壤-植物系统净化地表径流非点源污染物实验研究. 水利水电技术, 2013, 44(6):26-31 HUO Weijie, ZHOU Huaidong, LIU Linghua, et al. Experimental study on removal of non-point pollutants in surface runoff with soil-vegetation system. Water Resources and Hydropower Engineering, 2013, 44(6):26-31(in Chinese)
[19] DELETIC A., FLETCHER T. D. Performance of grass filters used for stormwater treatment-a field and modelling study. Journal of Hydrology, 2006, 317(3/4):261-275
[20] LUCKE T., MOHAMED M. A. K., TINDALE N. Pollutant removal and hydraulic reduction performance of field grassed swales during runoff simulation experiments. Water, 2014, 6(7):1887-1904
[21] STAGGE J. H., DAVIS A. P., JAMIL E., et al. Performance of grass swales for improving water quality from highway runoff. Water Research, 2012, 46(20):6731-6742
[22] 王如意, 何品晶, 邵立明, 等. 不同水力负荷渗滤液对植物土壤系统的影响. 环境科学, 2006, 27(5):950-955 WANG Ruyi, HE Pinjing, SHAO Liming, et al. Ecological effect of recirculated landfill leachate with different hydraulic loading on plant-soil system. Environmental Science, 2006, 27(5):950-955(in Chinese)
[23] 张新颖. 浅草沟系统对城市暴雨径流的控制试验研究. 重庆:重庆大学硕士学位论文, 2008 ZHANG Xinying. Experimental study on grass swale system for control of urban storm runoff. Chongqing:Master Dissertation of Chongqing University, 2008(in Chinese)
[24] 王全金, 周世超, 李芳, 等. 潜流人工湿地除氮正交试验研究. 水处理技术, 2010, 36(12):47-49 WANG Quanjin, ZHOU Shichao, LI Fang, et al. Orthogonal experimental research of nitrogen removal with subsurface flow constructed wetland. Technology of Water Treatment, 2010, 36(12):47-49(in Chinese)
[25] 马晓谦, 苏继东, 吴厚锦. 公路生态型植草沟设计技术. 交通标准化, 2011(5/6):78-81 MA Xiaoqian, SU Jidong, WU Houjin. Technology of eco-grass ditch highway design. Transport Standardization, 2011(5/6):78-81(in Chinese)
[26] 张轶. 生态草沟处理技术设计总结. 城市道桥与防洪, 2011(7):140-143 ZHANG Yi. Summarization of ecological grassed swale treatment technology. Urban Roads Bridges & Flood Control, 2011(7):140-143(in Chinese)
[27] WINSTON R. J., HUNT W. F., WRIGHT J. D. Impacts of roadside filter strips, dry swales, wet swales, and porous friction course on stormwater quality//Palmer R. N. World Environmental and Water Resources Congress:Challenges of Change, 2010:3006-3017
[28] DAVIS A. P., STAGGE J. H., JAMIL E., et al. Hydraulic performance of grass swales for managing highway runoff. Water Research, 2012, 46(20):6775-6786