[1] 施卫明, 薛利红, 王建国, 等. 农村面源污染治理的“4R”理论与工程实践——生态拦截技术[J]. 农业环境科学学报, 2013, 32(9): 1697 − 1704.

SHI Weiming, XUE Lihong, WANG Jianguo, et al. A reduce-retain-reuse-restore technology for controlling rural non-point pollution in China: eco-retain technology[J]. Journal of Agro-Environment Science, 2013, 32(9): 1697 − 1704.
[2] 杨林章, 薛利红, 施卫明, 等. 农村面源污染治理的“4R”理论与工程实践——案例分析[J]. 农业环境科学学报, 2013, 32(6): 2309 − 2315.

YANG Linzhang, XUE Lihong, SHI Weiming, et al. Reduce-retain-reuse-restore technology for the controlling the agricultural non-point source pollution in countryside in China: a case study[J]. Journal of Agro-Environmental Science, 2013, 32(6): 2309 − 2315.
[3] HERZON I, HELENIUS J. Agricultural drainage ditches, their biological importance and functioning[J]. Biological Conservation, 2008, 141(5): 1171 − 1183.
[4] MOORE M T, KRÖGER R, LOCKE M A, et al. Nutrient mitigation capacity in Mississippi Delta, USA drainage ditches[J]. Environmental Pollution, 2010, 158(1): 175 − 184.
[5] BENNETT E R, MOORE M T, COOPER C M, et al. Vegetated agricultural drainage ditches for the mitigation of pyrethroid-associated runoff[J]. Environmental Toxicology and Chemistry, 2005, 24(9): 2121 − 2127.
[6] MOORE M T, DENTON D L, COOPER C M, et al. Mitigation assessment of vegetated drainage ditches for collecting irrigation runoff in California[J]. Journal of Environmental Quality, 2008, 37(2): 486 − 493.
[7] KRÖGER R, HOLLAND M M, MOORE M T, et al. Agricultural drainage ditches mitigate phosphorus loads as a function of hydrological cariability[J]. Journal of Environmental Quality, 2008, 37(1): 107 − 113.
[8] LI Songmin, WANG Xiaolinag, TU Jiamin, et al. Nitrogen removal in an ecological ditch based on an orthogonal test [J/OL]. Water, Air, & Soil Pollution, 2016, 227 (11): 396[2024-02-04]. doi: 10.1007/s11270-016-3085-7.
[9] 单立楠. 不同施肥模式下菜地氨素面源污染特征及生态拦截控制研究[D]. 杭州: 浙江大学, 2015.

SHAN Li’nan. Research on the Characteristics of Ammonia Surface Source Pollution and Ecological Interception Control of Vegetable Land under Different Dertilization Modes [D]. Hangzhou: Zhejiang University, 2015.
[10] 乔斌. 农田生态沟渠对稻田降雨径流氮磷的去除实验与模拟研究[D]. 天津: 天津大学, 2016.

QIAO Bin. Experimental and Simulation Study on the Removal of Nitrogen and Phosphorus from Rainfall Runoff of Paddy Fields by Farmland Ecological Ditches [D]. Tianjin: Tianjin University, 2016.
[11] 张翼. 上海郊区稻田氮磷流失监测及其生态阻断系统构建[D]. 长春: 吉林农业大学, 2014.

ZHANG Yi. Nitrogen and Phosphorus Loss Monitoring and Its Ecological Blocking System Construction in Paddy Fields in Suburban Shanghai [D]. Changchun: Jilin Agricultural University, 2014.
[12] 朱金格, 张晓姣, 刘鑫, 等. 生态沟-湿地系统对农田排水氮磷的去除效应[J]. 农业环境科学学报, 2019, 38(2): 405 − 411.

ZHU Jin’ge, ZHANG Xiaojiao, LIU Xin, et al. Removal of nitrogen and phosphorus from farmland drainage by ecological ditch-wetland system[J]. Journal of Agro-Environmental Science, 2019, 38(2): 405 − 411.
[13] 郑斌. 生态沟渠对农业面源氮磷污染的去除效率及影响因素[D]. 兰州: 西北师范大学, 2020.

ZHENG Bin. Removal Efficiency and Influencing Factors of Nitrogen and Phosphorus Pollution from Agricultural Surface Sources by Ecological Ditches [D]. Lanzhou: Northwest Normal University, 2020.
[14] 刘泉, 李占斌, 李鹏, 等. 汉江水源区生态沟渠对径流氮、磷的生态拦截效应[J]. 水土保持通报, 2016, 36(2): 54 − 58.

LIU Quan, LI Zhanbin, LI Peng, et al. Effects of ecological ditch interception of nitrogen and phosphorus in water source area of Hanjiang River[J]. Bulletin of Soil and Water Conservation, 2016, 36(2): 54 − 58.
[15] 王迪, 李红芳, 刘锋, 等. 亚热带农区生态沟渠对农业径流中氮素迁移拦截效应研究[J]. 环境科学, 2016, 37(5): 1717 − 1723.

WANG Di, LI Hongfang, LIU Feng, et al. Interception effect of ecological ditch on nitrogen transport in agricultural runoff in subtropical China[J]. Environmental Science, 2016, 37(5): 1717 − 1723.
[16] 郝贝贝, 王楠, 吴昊平, 等. 生态沟渠对珠三角稻田径流污染的削减功能研究[J]. 生态环境学报, 2022, 31(9): 856 − 1864.

HAO Beibei, WANG Nan, WU Haoping, et al. Research on the reduction function of ecological ditches on runoff pollution from rice in the Pearl River Delta[J]. Ecology and Environmental Sceinces, 2022, 31(9): 856 − 1864.
[17] 田莉萍. 铁输入对稻田排水沟渠中氮磷去除的影响与强化途径研究[D]. 长春: 中国科学院大学, 2022.

TIAN Liping. Effect of Iron Input on Removal of Nitrogen and Phosphorus in Drainage Ditches and Intensive Techniques [D]. Changchun: University of Chinese Academy of Sciences, 2022.
[18] 鲁露. 滇池流域生态沟渠截留—去除污染物的影响因素及控制技术研究[D]. 昆明: 云南大学, 2015.

LU Lu. Retention-removal Effects and Control Technology of Pollutants in Ecological Ditches of Dianchi Watershed [D]. Kunming: Yunnan University, 2015.
[19] 胡博. 农田生态沟渠面源污染防控环境经济政策研究—以竺山湾区域农田生态沟渠重建为实证案例[D]. 北京: 中国农业科学院, 2016.

HU Bo. Study on Environmental and Economic Performance for Farmland Ecological Ditch to Prevent and Control non-point Source Pollution: A Case Study Based on Farmland Ecological Ditch Reconstruction in Zhushan Bay Area [D]. Beijing: Chinese Academy of Agricultural Sciences, 2016.
[20] 董越勇, 鲁长根, 王志荣, 等. 浙江省农田氮磷生态拦截沟渠系统功能实现结构化评估体系的探讨与实证[J]. 浙江农业科学, 2022, 63(4): 843 − 849, 867.

DONG Yueyong, LU Changgen, WANG Zhirong, et al. Exploration and practice of structural performance evaluation system for agricultural ecological ditch on its function realization in Zhejiang Province[J]. Journal of Zhejiang Agricultural Sciences, 2022, 63(4): 843 − 849, 867.
[21] 梁兴强, 曹玉成, 王志荣, 等. 农田面源污染控制氮磷生态拦截沟渠系统建设规范: DS33/T 2329—2021 [S]. 杭州: 浙江省市场监管局, 2021.

LIANG Xingqiang, CAO Yucheng, WANG Zhirong, et al. Construction Specification of Nitrogen and Phosphorus Ecological Interception Ditch System for Controllong Non-point Source Pollution from Darmlands: DS33/T 2329−2021 [S]. Hangzhou: Zhejiang Provincial Administration for Market Regulation, 2021.
[22] 王晓玲, 乔斌, 李松敏, 等. 生态沟渠对水稻不同生长期降雨径流氮磷的拦截效应研究[J]. 水利学报, 2015, 46(12): 1406 − 1413.

WANG Xiaoling, QIAO Bin, LI Songmin, et al. Studies on the interception effects of ecological ditch on nitrogen and phosphorus in the rainfall runoff of different rice growth period[J]. Journal of Hydraulic Engineering, 2015, 46(12): 1406 − 1413.
[23] 涂佳敏. 生态沟渠处理农田氮磷污水的实验与模拟研究[D]. 天津: 天津大学, 2014.

TU Jiamin. Experiment and Simulation on Nitrogen and Phosphorus Removal of Ecological Ditch [D]. Tianjin: Tianjin University, 2014.
[24] 余红兵. 生态沟渠水生植物对农区氮磷面源污染的拦截效应研究[D]. 长沙: 湖南农业大学, 2012.

YU Hongbing. Interception Effects of Aquatic Plants on Nitrogen and Phosphorus Non-point Source Pollution of Agricultural Areas in Ecological Ditch [D]. Changsha: Hunan Agricultural University, 2012.
[25] 聂泽宇. 太湖流域苕溪面源污染源解析与过程控制技术研究[D]. 杭州: 浙江大学, 2011.

NIE Zeyu. Study on Source Analysis of Non-point Pollution and Its Process Control Technology for Tiaoxi River in Taihu Lake Basin [D]. Hangzhou: Zhejiang University, 2011.
[26] 王振旗, 沈根祥, 钱晓雍, 等. 抗侵蚀型生态沟渠构建及其稻田应用效果[J]. 环境工程学报, 2014, 8(9): 4047 − 4052.

WANG Zhenqi, SHEN Genxiang, QIAN Xiaoyong, et al. Construction of anti-erosion ecological ditch and its application effect in paddy field[J]. Chinese Journal of Environmental Engineering, 2014, 8(9): 4047 − 4052.
[27] 王岩, 王建国, 李伟, 等. 3种类型农田排水沟渠氮磷拦截效果比较[J]. 土壤, 2009, 41(6): 902 − 906.

WANG Yan, WANG Jianguo, LI Wei, et al. Comparison on removal of nitrogen and phosphorus form hibernal farmland drainage by three kinds of ditches[J]. Soils, 2009, 41(6): 902 − 906.
[28] 刘福兴, 王俊力, 付子轼. 不同规格生态沟渠对排水污染物处理能力的研究[J]. 土壤学报, 2019, 56(3): 561 − 570.

LIU Fuxing, WANG Junli, FU Zishi. Comparative research on effects of ecological ditches different in specification treating pollutants in drainage[J]. Acta Pedologica Sinica, 2019, 56(3): 561 − 570.
[29] 陈静雅, 王晓昌, 郑于聪, 等. 潮汐流人工湿地对高污染河水氮磷的去除特性[J]. 环境科学与技术, 2017, 40(12): 32 − 37.

CHEN Jingya, WANG Xiaochang, ZHENG Yucong, et al. Characteristics of nutrients removal in tidal flow constructed wetland for highly polluted river water treatment[J]. Environmental Science & Technology, 2017, 40(12): 32 − 37.
[30] 余红兵, 肖润林, 杨知建, 等. 5种水生植物生物量及其对生态沟渠氮、磷吸收效果的研究[J]. 核农学报, 2012, 26(5): 798 − 802.

YU Hongbing, XIAO Runlin, YANG Zhijian, et al. Biomass and effects of five aquatic plants uptake of nitrogen and phosphorus in ecological ditch[J]. Journal of Nuclear Agriculture Sciences, 2012, 26(5): 798 − 802.
[31] DIETER C D. The importance of emergent vegetation in reducing sediment resuspension in wetlands[J]. Journal of Freshwater Ecology, 1990, 5(4): 467 − 473.
[32] ABT S R, CLARY W P, THORNTON C I. Sediment deposition and entrapment in vegetated streambeds[J]. Journal of Irrigation & Drainage Engineering, 1994, 120(6): 1098 − 1111.
[33] ULLAH S, FAULKNER S P. Denitrification potential of different land-use types in an agricultural watershed, lower Mississippi valley[J]. Ecological Engineering, 2006, 28(2): 131 − 140.
[34] 董慧峪, 王为东, 强志民. 透水坝原位净化山溪性污染河流[J]. 环境工程学报, 2014, 8(10): 4249 − 4253.

DONG Huiyu, WANG Weidong, QIANG Zhimin. In-situ remediation of polluted hilly river with permeable dams[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4249 − 4253.