[1] |
孔嘉鑫, 姜仁楠, 范贝贝, 等. 农业面源污染特征及治理对策[J]. 环境科学与管理, 2016, 41(5): 85-88. doi: 10.3969/j.issn.1673-1212.2016.05.021
KONG J X, JIANG R N, FAN B B, et al. Research and management of agricultural non-point source pollution[J]. Environmental Science and Management, 2016, 41(5): 85-88 (in Chinese). doi: 10.3969/j.issn.1673-1212.2016.05.021
|
[2] |
DAI F Y, FAN B Q, LI J G, et al. Fate of 15N-labelled urea as affected by long-term manure substitution[J]. Science of the Total Environment, 2023, 893: 164924. doi: 10.1016/j.scitotenv.2023.164924
|
[3] |
DONG Z Z, WU L H, CHAI J, et al. Effects of nitrogen application rates on rice grain yield, nitrogen-use efficiency, and water quality in paddy field[J]. Communications in Soil Science and Plant Analysis, 2015, 46: 1579-1594. doi: 10.1080/00103624.2015.1045595
|
[4] |
胡德秀, 李依江, 李立, 等. 基于SWAT模型的渭河咸阳-西安段非点源污染削减措施研究[J]. 西北农林科技大学学报(自然科学版), 2020, 48(10): 127-136,145.
HU D X, LI Y J, LI L, et al. Reduction scenarios of non-point source pollution in Xianyang-Xi’an section of Weihe River Basin based on SWAT[J]. Journal of Northwest A & F University (Natural Science Edition), 2020, 48(10): 127-136,145 (in Chinese).
|
[5] |
胡晴, 郭怀成, 王雨琪, 等. 基于改进输出系数模型的农业源污染物负荷核算[J]. 北京大学学报(自然科学版), 2021, 57(4): 739-748.
HU Q, GUO H C, WANG Y Q, et al. Estimation of agricultural non-point source pollution loads based on improved export coefficient model[J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2021, 57(4): 739-748 (in Chinese).
|
[6] |
华玲玲, 张富林, 翟丽梅, 等. 江汉平原水稻季灌排单元沟渠中氮磷变化特征及其环境风险[J]. 环境科学, 2018, 39(6): 2715-2723.
HUA L L, ZHANG F L, ZHAI L M, et al. Characteristics of nitrogen and phosphorus concentration dynamics in natural ditches under an irrigation-drainage unit in the Jianghan Plain[J]. Environmental Science, 2018, 39(6): 2715-2723 (in Chinese).
|
[7] |
杨林章. 我国农田面源污染治理的思路与技术[J]. 民主与科学, 2018(5): 16-18. doi: 10.3969/j.issn.1003-0026.2018.05.004
YANG L Z. Thoughts and technologies of farmland non-point source pollution control in China[J]. Democracy & Science, 2018(5): 16-18 (in Chinese). doi: 10.3969/j.issn.1003-0026.2018.05.004
|
[8] |
张晴雯, 张惠, 易军, 等. 青铜峡灌区水稻田化肥氮去向研究[J]. 环境科学学报, 2010, 30(8): 1707-1714.
ZHANG Q W, ZHANG H, YI J, et al. The fate of fertilizer-derived nitrogen in a rice field in the Qingtongxia irrigation area[J]. Acta Scientiae Circumstantiae, 2010, 30(8): 1707-1714 (in Chinese).
|
[9] |
农民日报. 种植业高质量发展成效显著 [EB/OL]. [2022-12-24].
|
[10] |
SOARES J R, CANTARELLA H, de CAMPOS MENEGALE M L. Ammonia volatilization losses from surface-applied urea with urease and nitrification inhibitors[J]. Soil Biology and Biochemistry, 2012, 52: 82-89. doi: 10.1016/j.soilbio.2012.04.019
|
[11] |
田玉华, 尹斌, 贺发云, 等. 太湖地区水稻季氮肥的作物回收和损失研究[J]. 植物营养与肥料学报, 2009, 15(1): 55-61. doi: 10.3321/j.issn:1008-505X.2009.01.008
TIAN Y H, YIN B, HE F Y, et al. Recovery by crop and loss of nitrogen fertilizer applied in rice season in Taihu Lake Region[J]. Plant Nutrition and Fertilizer Science, 2009, 15(1): 55-61 (in Chinese). doi: 10.3321/j.issn:1008-505X.2009.01.008
|
[12] |
JU X T, XING G X, CHEN X P, et al. Reducing environmental risk by improving N management in intensive Chinese agricultural systems[J]. Proceedings of the National Academy of Sciences of the United States of America, 2009, 106(9): 3041-3046.
|
[13] |
赵荣芳, 陈新平, 张福锁. 华北地区冬小麦-夏玉米轮作体系的氮素循环与平衡[J]. 土壤学报, 2009, 46(4): 684-697. doi: 10.3321/j.issn:0564-3929.2009.04.017
ZHAO R F, CHEN X P, ZHANG F S. Nitrogen cycling and balance in winter-wheat-summer-maize rotation system in Northern China Plain[J]. Acta Pedologica Sinica, 2009, 46(4): 684-697 (in Chinese). doi: 10.3321/j.issn:0564-3929.2009.04.017
|
[14] |
COX F R, HENDRICKS S E. Soil test phosphorus and clay content effects on runoff water quality[J]. Journal of Environmental Quality, 2000, 29(5): 1582-1586.
|
[15] |
WEI Q S, ZHU G F, WU P, et al. Distributions of typical contaminant species in urban short-term storm runoff and their fates during rain events: A case of Xiamen City[J]. Journal of Environmental Sciences, 2010, 22(4): 533-539. doi: 10.1016/S1001-0742(09)60138-8
|
[16] |
HAN C W, XU S G, LIU J W, et al. Nonpoint-source nitrogen and phosphorus behavior and modeling in cold climate: A review[J]. Water Science and Technology: a Journal of the International Association on Water Pollution Research, 2010, 62(10): 2277-2285. doi: 10.2166/wst.2010.464
|
[17] |
PAN S H, LIU D D, WANG Z L, et al. Runoff responses to climate and land use/cover changes under future scenarios[J]. Water, 2017, 9(7): 475. doi: 10.3390/w9070475
|
[18] |
贾海燕, 雷阿林, 雷俊山, 等. 紫色土地区水文特征对硝态氮流失的影响研究[J]. 环境科学学报, 2006, 26(10): 1658-1664. doi: 10.3321/j.issn:0253-2468.2006.10.013
JIA H Y, LEI A L, LEI J S, et al. Nitrate-N loss effected by the runoff process in purple soil-a simulation study[J]. Acta Scientiae Circumstantiae, 2006, 26(10): 1658-1664 (in Chinese). doi: 10.3321/j.issn:0253-2468.2006.10.013
|
[19] |
李琪, 陈利顶, 齐鑫, 等. 流域尺度农业磷流失危险性评价与关键源区识别方法[J]. 应用生态学报, 2007, 18(9): 1982-1986.
LI Q, CHEN L D, QI X, et al. Catchment scale risk assessment and critical source area identification of agricultural phosphorus loss[J]. Chinese Journal of Applied Ecology, 2007, 18(9): 1982-1986 (in Chinese).
|
[20] |
梁新强, 田光明, 李华, 等. 天然降雨条件下水稻田氮磷径流流失特征研究[J]. 水土保持学报, 2005, 19(1): 59-63. doi: 10.3321/j.issn:1009-2242.2005.01.015
LIANG X Q, TIAN G M, LI H, et al. Study on characteristic of nitrogen and phosphorus loss from rice field by natural rainfall runoff[J]. Journal of Soil Water Conservation, 2005, 19(1): 59-63 (in Chinese). doi: 10.3321/j.issn:1009-2242.2005.01.015
|
[21] |
付月君, 王昌全, 李冰, 等. 稻田氮磷养分损失途径及影响因素研究进展[J]. 四川环境, 2015, 34(6): 162-167. doi: 10.3969/j.issn.1001-3644.2015.06.029
FU Y J, WANG C Q, LI B, et al. An overview on losing path of fertilizer nitrogen and phosphorus and their influencing factors in paddy field[J]. Sichuan Environment, 2015, 34(6): 162-167 (in Chinese). doi: 10.3969/j.issn.1001-3644.2015.06.029
|
[22] |
李高明, 铁柏清, 李杰峰, 等. 湖南典型土壤类型和耕作方式的氮磷损失特征研究[J]. 湖南农业科学, 2009(4): 52-54. doi: 10.3969/j.issn.1006-060X.2009.04.017
LI G M, TIE B Q, LI J F, et al. Study on nitrogen and phosphorus loss character of typical agrotype and cultivation in Hunan[J]. Hunan Agricultural Sciences, 2009(4): 52-54 (in Chinese). doi: 10.3969/j.issn.1006-060X.2009.04.017
|
[23] |
BIRGAND F, SKAGGS W, CHESCHEIR C, et al. Nitrogen removal in streams of agricultural catchments literature review[J]. Critical Reviews in Environmental Science and Technology, 2007, 37: 381. doi: 10.1080/10643380600966426
|
[24] |
HOWARTH R, SWANEY D, BILLEN G, et al. Nitrogen fluxes from the landscape are controlled by net anthropogenic nitrogen inputs and by climate[J]. Frontiers in Ecology and the Environment, 2012, 10(1): 37-43. doi: 10.1890/100178
|
[25] |
BETTEZ N D, DUNCAN J M, GROFFMAN P M, et al. Climate variation overwhelms efforts to reduce nitrogen delivery to coastal waters[J]. Ecosystems, 2015, 18(8): 1319-1331. doi: 10.1007/s10021-015-9902-9
|
[26] |
WU L, PENG M L, QIAO S S, et al. Assessing impacts of rainfall intensity and slope on dissolved and adsorbed nitrogen loss under bare loessial soil by simulated rainfalls[J]. Catena, 2018, 170: 51-63. doi: 10.1016/j.catena.2018.06.007
|
[27] |
YANG T, WANG Q J, WU L S, et al. A mathematical model for soil solute transfer into surface runoff as influenced by rainfall detachment[J]. Science of the Total Environment, 2016, 557: 590-600.
|
[28] |
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 X L, QIAO B, LI S M, 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 (in Chinese).
|
[29] |
余红兵, 肖润林, 杨知建, 等. 灌溉和降雨条件下生态沟渠氮、磷输出特征研究[J]. 长江流域资源与环境, 2014, 23(5): 686-692.
YU H B, XIAO R L, YANG Z J, et al. Study on the characteristics of nitrogen and phosphorus transportation through ecological ditch during irrigation and rainfall[J]. Resources and Environment in the Yangtze Basin, 2014, 23(5): 686-692 (in Chinese).
|
[30] |
张树楠, 肖润林, 刘锋, 等. 生态沟渠对氮、磷污染物的拦截效应[J]. 环境科学, 2015, 36(12): 4516-4522.
ZHANG S N, XIAO R L, LIU F, et al. Interception effect of vegetated drainage ditch on nitrogen and phosphorus from drainage ditches[J]. Environmental Science, 2015, 36(12): 4516-4522 (in Chinese).
|
[31] |
尹澄清, 毛战坡. 用生态工程技术控制农村非点源水污染[J]. 应用生态学报, 2002, 13(2): 229-232. doi: 10.3321/j.issn:1001-9332.2002.02.025
YIN C Q, MAO Z P. Nonpoint pollution control for rural areas of China with ecological engineering technologies[J]. Chinese Journal of Applied Ecology, 2002, 13(2): 229-232 (in Chinese). doi: 10.3321/j.issn:1001-9332.2002.02.025
|
[32] |
李中利, 燕燕, 邵正浩. 基于稻田退水“零直排” 模式的农业面源污染治理路径[J]. 浙江农业科学, 2021, 62(12): 2513-2515.
LI Z L, YAN Y, SHAO Z H. Government way of agricultural non-point source pollution based on zero-direct discharge for rice field water[J]. Journal of Zhejiang Agricultural Sciences, 2021, 62(12): 2513-2515 (in Chinese).
|
[33] |
WOLLHEIM W M, BERNAL S, BURNS D A, et al. River network saturation concept: Factors influencing the balance of biogeochemical supply and demand of river networks[J]. Biogeochemistry, 2018, 141(3): 503-521. doi: 10.1007/s10533-018-0488-0
|
[34] |
王桂苓, 马友华, 孙兴旺, 等. 巢湖流域麦稻轮作农田径流氮磷流失研究[J]. 水土保持学报, 2010, 24(2): 6-10,29.
WANG G L, MA Y H, SUN X W, et al. Study of nitrogen and phosphorus runoff in wheat-rice rotation farmland in Chao Lake basin[J]. Journal of Soil and Water Conservation, 2010, 24(2): 6-10,29 (in Chinese).
|
[35] |
高月香, 李想, 高田田, 等. 同位素示踪解析北澄子河流域硝态氮污染贡献[J]. 农业环境科学学报, 2022, 41(10): 2269-2276. doi: 10.11654/jaes.2022-0205
GAO Y X, LI X, GAO T T, et al. Isotopic tracer analysis of nitrate nitrogen pollution contribution in the Beichengzi River Basin, China[J]. Journal of Agro-Environment Science, 2022, 41(10): 2269-2276 (in Chinese). doi: 10.11654/jaes.2022-0205
|
[36] |
刘方谊, 夏颖, 黄敏, 等. 湖北省三峡库区不同种植模式下农田地表径流氮磷流失特征[J]. 农业资源与环境学报, 2018, 35(6): 550-558.
LIU F Y, XIA Y, HUANG M, et al. Characteristics of nitrogen and phosphorus losses from farmlands through surface runoff under different cropping patterns in the Three Gorges Reservoir Area of Hubei Province[J]. Journal of Agricultural Resources and Environment, 2018, 35(6): 550-558 (in Chinese).
|
[37] |
马力, 卜兆宏, 梁文广, 等. 基于USLE原理和3S技术的水土流失定量监测方法及其应用研究[J]. 土壤学报, 2019, 56(3): 602-614. doi: 10.11766/trxb201805310168
MA L, BU Z H, LIANG W G, et al. Method for quantitative monitoring of soil erosion based on USLE principle and 3S technology and its application[J]. Acta Pedologica Sinica, 2019, 56(3): 602-614 (in Chinese). doi: 10.11766/trxb201805310168
|
[38] |
管飞, 马友华, 张东红, 等. 农业面源污染负荷空间分布及风险评价研究进展[J]. 中国农学通报, 2017, 33(30): 61-66. doi: 10.11924/j.issn.1000-6850.casb16090062
GUAN F, MA Y H, ZHANG D H, et al. Agricultural non-point source pollution loads: Spatial distribution and risk assessment[J]. Chinese Agricultural Science Bulletin, 2017, 33(30): 61-66 (in Chinese). doi: 10.11924/j.issn.1000-6850.casb16090062
|
[39] |
HOWARTH R W, BILLEN G, SWANEY D, et al. Regional nitrogen budgets and riverine N & P fluxes for the drainages to the North Atlantic Ocean: Natural and human influences[J]. Biogeochemistry, 1996, 35(1): 75-139. doi: 10.1007/BF02179825
|
[40] |
HONG B, SWANEY D P, McCRACKIN M, et al. Advances in NANI and NAPI accounting for the Baltic drainage basin: Spatial and temporal trends and relationships to watershed TN and TP fluxes[J]. Biogeochemistry, 2017, 133(3): 245-261. doi: 10.1007/s10533-017-0330-0
|
[41] |
张汪寿, 苏静君, 杜新忠, 等. 1990—2010年淮河流域人类活动净氮输入[J]. 应用生态学报, 2015, 26(6): 1831-1839.
ZHANG W S, SU J J, DU X Z, et al. Net anthropogenic nitrogen input to Huaihe River Basin, China during 1990-2010[J]. Chinese Journal of Applied Ecology, 2015, 26(6): 1831-1839 (in Chinese).
|
[42] |
JOHNES P J. Evaluation and management of the impact of land use change on the nitrogen and phosphorus load delivered to surface waters: The export coefficient modelling approach[J]. Journal of Hydrology, 1996, 183(3/4): 323-349.
|
[43] |
杨佳磊, 张瑞, 张银意, 等. 1980—2018年太湖流域非点源氮磷负荷变化研究[J]. 环境保护科学, 2022, 48(6): 93-101.
YANG J L, ZHANG R, ZHANG Y Y, et al. Study on change of non-point source nitrogen and phosphorus load in Taihu Lake Basin from 1980 to 2018[J]. Environmental Protection Science, 2022, 48(6): 93-101 (in Chinese).
|
[44] |
王雪蕾, 王新新, 朱利, 等. 巢湖流域氮磷面源污染与水华空间分布遥感解析[J]. 中国环境科学, 2015, 35(5): 1511-1519. doi: 10.3969/j.issn.1000-6923.2015.05.031
WANG X L, WANG X X, ZHU L, et al. Spatial analysis on diffuse pollution and algal bloom characteristic with remote sensing in Chao Lake Basin[J]. China Environmental Science, 2015, 35(5): 1511-1519 (in Chinese). doi: 10.3969/j.issn.1000-6923.2015.05.031
|