[1] |
乐小芳, 栾胜基. 农村专业合作社: 解决农村内源性污染的潜在“生力军”. 环境保护, 2009(16): 40-42
|
[2] |
钱宏林, 梁松. 珠江口及其邻近海域赤潮的研究. 海洋环境科学, 1999(3): 69-74
|
[3] |
冷科明, 江天久. 深圳海域近20年赤潮发生的特征分析. 生态科学, 2004(2): 166-170, 174
|
[4] |
Harrison P J, Yin K, Lee J, et al.Physical-biological coupling in the Pearl River Estuary. Continental Shelf Research, 2008, 28(12): 1405-1415
|
[5] |
韦桂秋, 王华, 蔡伟叙, 等. 近 10 年珠江口海域赤潮发生特征及原因初探. 海洋通报, 2012, 31(4): 466-474
|
[6] |
Qu H J, Kroeze C.Past and future trends in nutrients export by rivers to the coastal waters of China. Science of the Total Environment, 2010, 408(9): 2075-2086
|
[7] |
Qu H J, Kroeze C.Nutrient export by rivers to the coastal waters of China: management strategies and future trends. Regional Environmental Change, 2012, 12(1): 153-167
|
[8] |
Dumont E, Harrison J A, Kroeze C, et al. Global distribution and sources of dissolved inorganic nitro-gen export to the coastal zone: Results from a spa-tially explicit , global model. Global Biogeochemical Cycles, 2005, 19(4): GB4S02
|
[9] |
Harrison J A, Bouwman A F, Mayorga E, et al. Magnitudes and sources of dissolved inorganic phosphorus inputs to surface fresh waters and the coastal zone: a new global model. Global Biogeo-chemical Cycles, 2010, 24(1): GB1003
|
[10] |
Harrison J A, Caraco N, Seitzinger S P. Global patterns and sources of dissolved organic matter export to the coastal zone: results from a spatially explicit global model. Global Biogeochemical Cycles, 2005, 19(4): GB4S04
|
[11] |
Mayorga E, Seitzinger S P, Harrison J A, et al.Global nutrient export from WaterSheds 2 (NEWS 2): model development and implementation. Environmental Modelling & Software, 2010, 25(7): 837-853
|
[12] |
Van Drecht G, Bouwman A F, Harrison J, et al. Global nitrogen and phosphate in urban wastewater for the period 1970 to 2050. Global Biogeochemical Cycles, 2009, 23(4): GB0A03
|
[13] |
Van Drecht G, Bouwman A F, Knoop J M, et al.Global modeling of the fate of nitrogen from point and nonpoint sources in soils, groundwater, and surface water. Global Biogeochemical Cycles, 2003, 17(4): 1115-1141
|
[14] |
刘庄, 晁建颖, 张丽, 等. 中国非点源污染负荷计算研究现状与存在问题. 水科学进展, 2015, 26(3): 432-442
|
[15] |
Bouwman A F, Van Drecht G, Van der Hoek K W. Surface N balances and reactive N loss to the environment from global intensive agricultural production systems for the period 1970-2030. Science in China Series C: Life Sciences, 2005, 48(2): 767-779
|
[16] |
Bouwman A F, Beusen A, Billen G. Human alteration of the global nitrogen and phosphorus soil balances for the period 1970-2050. Global Biogeochemical Cycles, 2009, 23(4): GB0A04
|
[17] |
Caraco N F, Cole J J.Human impact on nitrate export: an analysis using major world rivers. Ambio, 1999, 28(2): 167-170
|
[18] |
Howarth R W, Swaney D P, Boyer E W, et al.The influence of climate on average nitrogen export from large watersheds in the Northeastern United States. Biogeochemistry, 2006, 79(1/2): 163-186
|
[19] |
Seitzinger S P, Harrison J A, Böhlke J K, et al.Denitrification across landscapes and waterscapes: a synthesis. Ecological Applications, 2006, 16(6): 2064-2090
|
[20] |
Seitzinger S P, Harrison J A, Dumont E, et al. Sources and delivery of carbon, nitrogen, and phosphorus to the coastal zone: an overview of global Nutrient Export from Watersheds (NEWS) models and their application. Global Biogeochemical Cycles, 2005, 19 (4): GB4S01
|
[21] |
Strokal M, Kroeze C.Nitrogen and phosphorus inputs to the Black Sea in 1970-2050. Regional Environ-mental Change, 2013, 13(1): 179-192
|
[22] |
Yan W, Mayorga E, Li X, et al. Increasing anthropogenic nitrogen inputs and riverine DIN exports from the Changjiang River basin under changing human pressures. Global Biogeochemical Cycles, 2010, 24(4): GB0A06
|
[23] |
中华人民共和国水利部水文局. 中华人民共和国水文年鉴: 第8卷(2010), 第4册, 北江区. 北京: 中华人民共和国水利部水文局, 2011
|
[24] |
中华人民共和国水利部水文局. 中华人民共和国水文年鉴: 第8卷(2005), 第4册, 北江区. 北京: 中华人民共和国水利部水文局, 2006
|
[25] |
中华人民共和国水利部水文局. 中华人民共和国水文年鉴: 第8卷(2000), 第4册, 北江区. 北京: 中华人民共和国水利部水文局, 2001
|
[26] |
第一次全国污染源普查资料编纂委员会. 第一次全国污染源普查资料文集: 污染源普查产排污系数手册. 北京: 中国环境科学出版社, 2011
|
[27] |
污水处理风向标. 2010年前全国建成投运城镇污水处理厂(设施)名单[EB/OL]. (2015) [2015-09-01]
|
[28] |
李开明, 陈中颖, 姜国强. 珠江口及毗邻海域污染特征及生态环境响应研究. 北京: 中国建筑工业出版社, 2011
|
[29] |
Gong W W, Zhang Y S, Huang X M, et al. High-resolution measurement of ammonia emissions from fertilization of vegetable and rice crops in the Pearl River Delta Region, China. Atmospheric Environ-ment, 2013, 65: 1-10
|
[30] |
李雨芯. 密云水库上游流域不同空间尺度的氮素平衡研究[D]. 北京: 首都师范大学, 2012
|
[31] |
Oenema O, Witzke H P, Klimont Z, et al.Integrated assessment of promising measures to decrease nitro-gen losses from agriculture in EU-27. Agriculture, Ecosystems & Environment, 2009, 133(3): 280-288
|
[32] |
Eggleston H S, Buendia L.2006 IPCC guidelines for national greenhouse gas inventories. Hayama: IPCC, 2006
|
[33] |
马林. 中国食物链氮素流动规律及调控策略[D]. 保定: 河北农业大学, 2010
|
[34] |
杨志鹏. 基于物质流方法的中国畜牧业氨排放估算及区域比较研究[D]. 北京: 北京大学, 2008
|
[35] |
李迎春. 中国农业氧化亚氮排放及减排潜力研究[D]. 北京: 中国农业科学院, 2009
|
[36] |
Javis S C, Pain B F.Greenhouse gas emissions from intensive livestock systems: their estimation and technologies for reduction. Climatic Change, 1994, 27(1): 27-38
|
[37] |
Huang D, Xu Y, Zhou B, et al.Wet deposition of nitrogen and sulfur in Guangzhou, a subtropical area in South China. Environmental Monitoring and Assessment, 2010, 171(1): 429-439
|
[38] |
Huang Y, Lu X, Chen K.Wet atmospheric deposition of nitrogen: 20 years measurement in Shenzhen City, China. Environmental Monitoring and Assessment, 2013, 185(1): 113-122
|
[39] |
Li J, Fang Y, Yoh M, et al.Organic nitrogen deposition in precipitation in metropolitan Guangzhou city of southern China. Atmospheric Research, 2012, 113: 57-67
|
[40] |
Liu X, Zhang Y, Han W, et al.Enhanced nitrogen deposition over China. Nature, 2013, 494: 459-463
|
[41] |
Cleveland C C, Townsend A R, Schimel D S, et al. Global patterns of terrestrial biological nitrogen (N2) fixation in natural ecosystems. Global Biogeoche-mical Cycles, 1999, 13(2): 623-645
|
[42] |
Peoples M B, Herridge D F, Ladha J K.Biological nitrogen fixation: an efficient source of nitrogen for sustainable agricultural production. Plant and Soil, 1995, 174(1/2): 3-28
|