参考文献/References:
[1] YAN R H,LI L L,GAO J F. Framework for quantifying rural NPS pollution of a humid lowland catchment in Taihu Basin,Eastern China[J]. Science of The Total Environment,2019(688):983-993.[2] ONGLEY E D,ZHANG X L,YU T. Current status of agricultural and rural non-point source pollution assessment in China[J]. Environmental Pollution,2010,158(5):1159-1168.[3] HU Z F,LI D S,GUAN D T. Water quality retrieval and algae inhibition from eutrophic freshwaters with iron-rich substrate based ecological floating beds treatment[J]. Science of The Total Environment,2020(712):135-584.[4] LI Y P,ZHANG H K,ZHU L Q,et al. Evaluation of the long-term performance in a large-scale integrated surface flow constructed wetland-pond system:a case study[J]. Bioresource Technology,2020(309):123-310.[5] XUE L H,HOU P F,ZHANG Z Y,et al. Application of systematic strategy for agricultural non-point source pollution control in Yangtze River Basin,China[J]. Agriculture,Ecosystems & Environment,2020(304):107-148.[6] NSENGA K M,MENG F G,ISEYEMI O,et al. Removal of non-point source pollutants from domestic sewage and agricultural runoff by vegetated drainage ditches(VDDs):design,mechanism,management strategies,and future directions[J]. Science of The Total Environment,2018(639):742-759.[7] LI S S,LIU H B,ZHANG L,et al. Potential nutrient removal function of naturally existed ditches and ponds in paddy regions:prospect of enhancing water quality by irrigation and drainage management[J]. Science of The Total Environment,2020(718):137-418.[8] LIN M,TONG W J,CHEN H G,et al. Quantification of N2O and NO emissions from a small-scale pond-ditch circulation system for rural polluted water treatment[J]. Science of The Total Environment,2018(619):946-956.[9] 肖伟,罗海兰,吕本儒,等. 磁加载—碳纤维载体渠—增强型生态塘组合工艺在河道水质提升工程中的应用[J]. 水电能源科学,2019,37(11):62-65,61.[10] CHEN L,LIU F,WANG Y,et al. Nitrogen removal in an ecological ditch receiving agricultural drainage in subtropical central China[J]. Ecological Engineering,2015(82):487-492.[11] 田昌,陈敏,周旋,等. 生态沟渠对小流域农田排水中氮磷的拦截效果研究[J]. 中国土壤与肥料,2020(4):186-191.[12] 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.[13] 李丹,储昭升,刘琰,等. 洱海流域生态塘湿地氮截留特征及其影响因素[J]. 环境科学研究,2019,32(2):212-218.[14] DOLLINGER J,C D AGÈS,BAILLY J S,et al. Managing ditches for agroecological engineering of landscape. a review[J]. Agronomy for Sustainable Development,2015,35(3):999-1020.[15] 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.[16] 郑志伟,胡莲,邹曦,等. 生态沟渠+稳定塘系统处理山区农村生活污水的研究[J]. 水生态学杂志,2016,37(4):42-47.[17] MUSTAFA H M,HAYDER G. Recent studies on applications of aquatic weed plants in phytoremediation of wastewater:a review article[J]. Ain Shams Engineering Journal,2020(5):9.[18] MA L,HE F,HUANG T,et al. Nitrogen and phosphorus transformations and balance in a pond-ditch circulation system for rural polluted water treatment[J]. Ecological Engineering,2016(94):117-126.[19] MARTINS C L,FERNANDES H,COSTA R H R. Landfill leachate treatment as measured by nitrogen transformations in stabilization ponds[J]. Bioresource Technology,2013(147):562-568.[20] ZHANG S N,LIU F,XIAO R L,et al. Effects of vegetation on ammonium removal and nitrous oxide emissions from pilot-scale drainage ditches[J]. Aquatic Botany 2016(130):37-44.[21] KRÖGER R,HOLLAND M M,MOORE M T,et al. Plant senescence:a mechanism for nutrient release in temperate agricultural wetlands[J]. Environmental Pollution,2007,146(1):114-119.[22] VYMAZAL J,T D Brezinová. Removal of nutrients,organics and suspended solids in vegetated agricultural drainage ditch[J]. Ecological Engineering,2018(118):97-103.[23] 张巍,许静,李晓东. 稳定塘处理污水的机理研究及应用研究进展[J]. 生态环境学报,2014,23(8):1396-1401.[24] JIA Z,CHEN C,LUO W,et al. Hydraulic conditions affect pollutant removal efficiency in distributed ditches and ponds in agricultural landscapes[J]. Science of the Total Environment,2019(649):712-721.[25] 崔霞. 塘/生态沟渠耦合系统的构建及其处理面源污染效果的研究[D]. 金华:浙江师范大学,2017.[26] 姚剑亭,丁洪明,徐洁. 生态沟渠塘氮磷拦截方法研究[J]. 安徽农业科学,2012,40(24):12179-12181.[27] SUN G Z,SAEED T. Kinetic modelling of organic matter removal in 80 horizontal flow reed beds for domestic sewage treatment[J]. Process Biochem,2009(44):717-722.[28] 胡将军. 多级跌水充氧式沟渠连通生态塘污水处理效果及优化模拟试验[J]. 农业生物环境与能源工程,2006,3(25):782-785.[29] LU B,XU Z S,LI J G,et al. Removal of water nutrients by different aquatic plant species:an alternative way to remediate polluted rural rivers[J]. Ecological Engineering,2018(110):18-26.[30] 王丽莎,李希,甘蕾,等. 亚热带丘陵区湿地水生植物组合模式拦截氮磷的研究[J]. 生态环境学报,2017,26(9):1577-1583.[31] 曾爱平,刘洪见,徐晓薇,等. 2种挺水植物治理生活污水的研究[J]. 浙江农业科学,2009(4):806-808.[32] LIN J L,KUO W C,CHANG Y M,et al. Development of a natural treatment system for stream water purification:mechanisms and environmental impacts evaluation[J]. Journal of Environmental Engineering,2015.[33] 赵旭光. 挺水植物对富营养化湖泊水体中氮磷循的影响[D]. 天津:天津大学,2011.[34] KUSCHK P,WIESSNER A,KAPPELMEYER U,et al. Annual cycle of nitrogen removal by a pilot-scale subsurface horizontal flow in a constructed wetland under moderate climate[J]. Water Research,2003,37(17):4236-4242.[35] NSENGA K M,BATOOL A,LI X. How to enhance the purification performance of traditional floating treatment wetlands(FTWs)at low temperatures:strengthening strategies[J]. Science of the Total Environment,2021,20(766).[36] 黄治平,张克强,朱昌雄,等. 三级生态塘强化处理农村生活污水的应用研究[J]. 中国给水排水,2014,30(13):69-72.[37] 苏建成. 地表水中温度、溶解氧、氨氮的关系研究[J]. 科技创新与应用,2020,(14):44-45.[38] 杨凯,袁林江,赵丙良. 降雨对沣河水质和污染特征的影响[J]. 水资源与水工程学报,2011,22(2):50-54.[39] 段圣辉,赵钰,单保庆,等. 杭州市余杭区典型农村暴雨径流污染特征[J]. 环境科学,2015,36(10):3697-3705.[40] CASTALDELLI G,ASCHONITIS V,VINCENZI F,et al. The effect of water velocity on nitrate removal in vegetated waterways[J]. Journal of Environmental Management,2018(215):230-238.[41] 汪楚乔,陈柔君,吴磊,等. 宜兴典型村落不同下垫面降雨径流污染物排放特征[J].生态与农村环境学报,2016,32(4):632-638.