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1. 估算紫色土流域地下水非点源污染负荷的降雨量参数法 [421]
2. Nitrous oxide emissions and nitrate leaching from a rain-fed wheat.. [338]
3. Stormwater Runoff Pollution in a Rural Township in the Hilly Area .. [323]
4. 川中丘陵地区主要植被含碳率研究——以四川省盐亭县为例 [317]
5. Non-Point-Source Nitrogen and Phosphorus Loadings from a Small Wat.. [309]
6. Rainfall and Tillage Impacts on Soil Erosion of Sloping Cropland w.. [301]
7. Farmer’s Adaptive Strategies on Land Competition between Societal.. [298]
8. 基于GIS技术的成都市灾区资源环境承载力快速评价 [296]
9. Subsurface Flow Processes in Sloping Cropland of Purple Soil [295]
10. Reducing interflow nitrogen loss from hillslope cropland in a purp.. [282]
11. Farmer’s adaptive strategies on land competition between societal.. [280]
12. 四川丘陵区不同土地利用下土壤侵蚀对土壤化学特性的影响 [272]
13. Assessment of soil organic carbon stock in the upper Yangtze River.. [266]
14. Quantifying atmospheric nitrogen deposition through a nationwide m.. [265]
15. Mechanisms of soil N dynamics following long-term application of o.. [255]
16. 紫色土旱坡地土壤异养呼吸速率及其温度敏感性 [251]
17. Coupled effects of biogeochemical and hydrological processes on C,.. [248]
18. Seasonal change of non-point source pollution-induced bioavailable.. [245]
19. 长江上游及西南诸河区水土流失现状与综合治理对策 [244]
20. Effects of wheat straw application on methane and nitrous oxide em.. [244]
21. N2O and CH4 Emissions, and NO3 (-) Leaching on a Crop-Yield Basis .. [239]
22. 金沙江干热河谷植被恢复技术及生态效应——以云南小江流域为例 [238]
23. 紫色土坡耕地可溶性有机碳迁移过程及分配特征 [235]
24. Nitrous oxide and methane emissions from a subtropical rice-rapese.. [229]
25. Effects of Contour Hedgerow Intercropping on Nutrient Losses from .. [228]
26. 旱地紫色土团聚体特征的指标比较 [227]
27. 森林土壤呼吸研究进展 [226]
28. AnnAGNPS和SWAT模型对非点源污染的适用性研究—以中国科学院盐亭紫色土.. [223]
29. Metal Distribution and Contamination Assessment in Drainage Ditch .. [221]
30. AnnAGNPS模型动态及其应用进展 [215]
31. 紫色土坡耕地可溶性有机碳径流迁移特征 [208]
32. 施肥对夏玉米季紫色土N2O排放及反硝化作用的影响 [207]
33. 川中丘陵区小流域土地利用变化和泥沙来源示踪的δ13C技术 [202]
34. A review of rapid transport of pesticides from sloping farmland to.. [201]
35. Nitrate leaching, direct and indirect nitrous oxide fluxes from sl.. [201]
36. Effects of nitrogen fertilizer on CH4 emission from rice fields: m.. [201]
37. Measurements of nitrate leaching from a hillslope cropland in the .. [200]
38. Dissecting soil CO2 fluxes from a subtropical forest in China by i.. [198]
39. Assessing Nutrient, Biomass, and Sediment Transport of Drainage Di.. [198]
40. 紫色土坡耕地氮素淋失通量的实测与模拟 [197]
41. Phosphorus and carbon competitive sorption-desorption and associat.. [193]
42. Phosphorus fractions and release potential of ditch sediments from.. [192]
43. 紫色土可溶性有机碳的吸附-解吸特征 [189]
44. 紫色土小流域不同土地利用类型的土壤氮素时空分异特征 [188]
45. 川中丘陵区高富集氮、磷沟渠植物的筛选 [187]
46. 三峡库区典型消落带草本植物氮磷养分浸泡释放实验 [182]
47. 农业面源污染的环境效应及其研究进展 [181]
48. Soil Degradation and Soil Productivity Restoration and Maintenance.. [180]
49. 小麦-玉米轮作田与菜地N2O排放的对比研究 [180]
50. Nutrient removal in a trapezoidal vegetated drainage ditch used to.. [180]
51. 燥红土不同土地利用类型土壤侵蚀特征——以云南小江流域为例 [179]
52. 氮肥施用对紫色土-玉米根系系统N2O排放的影响 [178]
53. 紫色土菜地生态系统土壤N2O排放及其主要影响因素 [178]
54. 四川低山丘陵区紫色土不同土地利用类型的水蚀特征 [176]
55. Tempo-spatial analysis of water quality in tributary bays of the T.. [175]
56. N2O Emission From Paddy Field under Different Rice Planting Modes [171]
57. 川中丘陵区农田源头沟渠玉米季中氧化亚氮排放及其影响因素 [170]
58. 紫色土坡耕地硝酸盐淋失特征 [169]
59. 施肥方式对冬小麦一夏玉米轮作土壤N_2O排放的影响 [169]
60. 紫色土坡耕地水量季节变异特征与平衡初步研究 [168]
61. 亚热带农业小流域暴雨过程硝态氮迁移特征及水文示踪研究 [167]
62. Spatial and temporal patterns of soil nitrogen distribution under .. [166]
63. 川中丘陵区桤柏混交林地土壤CO2释放与Forest-DNDC模型模拟 [165]
64. 中耕对紫色土坡耕地产流产沙影响 [165]
65. 四川桤柏混交林土壤N_2O排放的实测与模拟 [164]
66. 土层厚度对紫色土坡地生产力的影响 [164]
67. 紫色土坡耕地退耕还林对土壤N_2O 排放的影响 [163]
68. 无机与有机肥配施下紫色土铵态氮、硝态氮时空变异研究--夏玉米季 [161]
69. 环境微生物资源与农业的可持续发展 [161]
70. 紫色土坡耕地土壤团聚体分形维数与有机碳关系 [159]
71. 川中紫色土区磷素年非点源的输出负荷 [158]
72. Nitrate loss via overland flow and interflow from a sloped farmlan.. [158]
73. Anti-scourability of purple soil on hillslopes with different land.. [158]
74. HComparison of the DNDC, LandscapeDNDC and IAP-N-GAS models for si.. [158]
75. 平衡施肥对紫色土坡耕地磷素径流流失的影响 [157]
76. 紫色土丘陵区小流域非点源氮迁移特征研究 [156]
77. The nitrogen loss flushing mechanism in sloping farmlands of shall.. [156]
78. Phosphorus retention capacity of agricultural headwater ditch sedi.. [155]
79. Measurements of Nitrate Leaching from a Hillslope Cropland in the .. [155]
80. Impoverishment of soil nutrients in gully erosion areas in Yuanmou.. [154]
81. Ambient concentrations and deposition rates of selected reactive n.. [154]
82. 秸秆还田对紫色土坡耕地养分流失的影响 [152]
83. 大气CO2浓度和温度升高对森林土壤地下过程的影响 [151]
84. 紫色页岩风化侵蚀与环境效应 [151]
85. 不同土地利用方式下土壤呼吸及其温度敏感性 [150]
86. Modeling nitrogen loading in a small watershed in southwest China .. [149]
87. 川中丘陵区村镇降雨特征与径流污染物的相关关系 [148]
88. 地下地膜截水墙—一种新的节水农业技术 [147]
89. The characteristics of overland flow under varied tillage and crop.. [147]
90. 有机-无机肥配施对紫色土坡耕地氮素淋失的影响 [147]
91. 紫色土坡耕地硝酸盐流失过程与特征研究 [147]
92. Bioavailable phosphorus transport from a hillslope cropland of pur.. [146]
93. Long-term impact of primary domestic sewage on metal/loid accumula.. [146]
94. Assessing the influence of different plant species in drainage dit.. [146]
95. 川中丘陵区人工桤柏混交林根呼吸对土壤总呼吸的贡献 [145]
96. 紫色土坡地尺度土壤养分的空间变异特性 [145]
97. 锌、镉在紫色土中的竞争吸附 [143]
98. 川中丘陵区土地利用变化与农林复合生态建设——以中国科学院盐亭紫色土.. [143]
99. TDR系统在紫色土坡耕地径流小区土壤水分自动监测中的应用 [143]
100. 紫色土再研究Ⅱ——全球性紫色土 [143]

Downloads

1. Farmer’s Adaptive Strategies on Land Competition between Societal.. [19]
2. Phosphorus fractions and release potential of ditch sediments from.. [17]
3. Farmer’s adaptive strategies on land competition between societal.. [16]
4. Reducing interflow nitrogen loss from hillslope cropland in a purp.. [15]
5. 小麦-玉米轮作田与菜地N2O排放的对比研究 [15]
6. A review of rapid transport of pesticides from sloping farmland to.. [14]
7. Seasonal change of non-point source pollution-induced bioavailable.. [13]
8. Stormwater Runoff Pollution in a Rural Township in the Hilly Area .. [13]
9. 三峡库区典型消落带草本植物氮磷养分浸泡释放实验 [13]
10. 云南蒋家沟泥石流滩地土壤肥力特性 [12]
11. Nitrate leaching, direct and indirect nitrous oxide fluxes from sl.. [12]
12. 紫色土可溶性有机碳的吸附-解吸特征 [12]
13. Subsurface Flow Processes in Sloping Cropland of Purple Soil [11]
14. 紫色土菜地生态系统土壤N2O排放及其主要影响因素 [11]
15. 川中丘陵区高富集氮、磷沟渠植物的筛选 [11]
16. Ecological ditch system for nutrient removal of rural domestic sew.. [11]
17. Effects of Contour Hedgerow Intercropping on Nutrient Losses from .. [10]
18. Nitrous oxide emissions and nitrate leaching from a rain-fed wheat.. [10]
19. Sustaining crop productivity while reducing environmental nitrogen.. [10]
20. 基于GIS技术的成都市灾区资源环境承载力快速评价 [9]
21. 不同土地利用方式下土壤呼吸及其温度敏感性 [9]
22. 有机-无机肥配施对紫色土坡耕地氮素淋失的影响 [9]
23. Metal Distribution and Contamination Assessment in Drainage Ditch .. [9]
24. 川中丘陵区农田源头沟渠玉米季中氧化亚氮排放及其影响因素 [9]
25. 泥石流滩地土地生产潜力评价——以云南小江流域蒋家沟为例 [8]
26. 川中丘陵区紫色土坡耕地土壤侵蚀特征 [8]
27. Phosphorus release risk on a calcareous purple soil in southwest C.. [8]
28. 紫色土小流域不同土地利用类型的土壤氮素时空分异特征 [8]
29. 紫色土坡耕地可溶性有机碳径流迁移特征 [8]
30. 紫色土坡耕地氮素淋失通量的实测与模拟 [8]
31. 紫色土坡耕地土壤团聚体分形维数与有机碳关系 [8]
32. Rainfall and Tillage Impacts on Soil Erosion of Sloping Cropland w.. [8]
33. 亚热带农业小流域暴雨过程硝态氮迁移特征及水文示踪研究 [8]
34. 三峡库区典型支流库湾消落带沉积泥沙特征及重金属评价 [8]
35. 蒋家沟高含沙水流泥沙特性与泥石流滩地的改良 [7]
36. AnnAGNPS模型动态及其应用进展 [7]
37. 紫色丘陵区典型小流域暴雨径流氮磷迁移过程与通量 [7]
38. 氮肥对紫色土夏玉米N2O排放和反硝化损失的影响 [7]
39. 土层厚度对紫色土坡地生产力的影响 [7]
40. 川中丘陵区小流域土壤侵蚀空间分异评价研究 [7]
41. 紫色土坡耕地硝酸盐流失过程与特征研究 [7]
42. TDR系统在紫色土坡耕地径流小区土壤水分自动监测中的应用 [7]
43. Phosphorus sorption-desorption by purple soils of China in relatio.. [7]
44. Non-Point-Source Nitrogen and Phosphorus Loadings from a Small Wat.. [7]
45. 紫色土坡耕地可溶性有机碳迁移过程及分配特征 [7]
46. Assessment of soil organic carbon stock in the upper Yangtze River.. [7]
47. 三峡库区消落带典型草本植物淹水浸泡后可溶性有机碳的释放特征 [7]
48. Nitrous oxide emissions during the non-rice growing seasons of two.. [7]
49. N2O and CH4 Emissions, and NO3 (-) Leaching on a Crop-Yield Basis .. [7]
50. 川中丘陵区小流域土地利用变化和泥沙来源示踪的δ13C技术 [7]
51. Linkage of N2O emissions to the abundance of soil ammonia oxidizer.. [7]
52. Mechanisms of soil N dynamics following long-term application of o.. [7]
53. Ground bryophytes regulate net soil carbon efflux: evidence from t.. [7]
54. AnnAGNPS和SWAT模型对非点源污染的适用性研究—以中国科学院盐亭紫色土.. [6]
55. 重庆市生物多样性与生境敏感性评价 [6]
56. 成都平原土壤-蔬菜系统N2O排放特征 [6]
57. 紫色丘陵区不同侵蚀沉积地段土壤结构特征 [6]
58. 施肥对紫色土坡耕地氮素淋失的影响 [6]
59. 川中丘陵区人工桤柏混交林根呼吸对土壤总呼吸的贡献 [6]
60. 紫色泥页岩的风化侵蚀与工程建设增沙 [6]
61. 土壤动物对紫色土施肥方式的响应 [6]
62. Effects of nitrogen fertilizer on CH4 emission from rice fields: m.. [6]
63. 紫色土丘陵区小流域非点源氮迁移特征研究 [6]
64. Measurements of Nitrate Leaching from a Hillslope Cropland in the .. [6]
65. Tempo-spatial analysis of water quality in tributary bays of the T.. [6]
66. Assessing Nutrient, Biomass, and Sediment Transport of Drainage Di.. [6]
67. Bulk deposition of organic and inorganic nitrogen in southwest Chi.. [6]
68. Nutrient distribution and risk assessment in drainage ditches with.. [6]
69. 川中丘陵区村镇降雨特征与径流污染物的相关关系 [5]
70. 川中丘陵区桤柏混交林地土壤CO2释放与Forest-DNDC模型模拟 [5]
71. 燥红土不同土地利用类型土壤侵蚀特征——以云南小江流域为例 [5]
72. 若尔盖青海沙蜥——洞穴密度与深度的生态内涵 [5]
73. 川中丘陵区施肥制度对夏玉米生物性状和产量的影响 [5]
74. 长江上游地区农作物碳储量估算及固碳潜力分析 [5]
75. 紫色土坡地尺度土壤养分的空间变异特性 [5]
76. 氮肥施用对紫色土-玉米根系系统N2O排放的影响 [5]
77. 紫色土坡耕地水量季节变异特征与平衡初步研究 [5]
78. Measurements of nitrate leaching from a hillslope cropland in the .. [5]
79. Phosphorus retention capacity of agricultural headwater ditch sedi.. [5]
80. 川中丘陵区土地利用变化与农林复合生态建设——以中国科学院盐亭紫色土.. [5]
81. 三峡水库支流回水河段氮磷负荷与干流的逆向影响 [5]
82. Soil Degradation and Soil Productivity Restoration and Maintenance.. [5]
83. 紫色土不同土地利用条件下的土壤抗冲性研究 [5]
84. 蔬菜亚硝酸盐污染现状分析 [5]
85. The characteristics of overland flow under varied tillage and crop.. [5]
86. 农业面源污染的环境效应及其研究进展 [5]
87. Anti-scourability of purple soil on hillslopes with different land.. [5]
88. 长期施肥对紫色土农田土壤动物群落的影响 [5]
89. 紫色土夏玉米-冬小麦轮作农田的NO排放特征 [5]
90. Dissolved organic carbon loss fluxes through runoff and sediment o.. [5]
91. Nitrous oxide and methane emissions from a subtropical rice-rapese.. [5]
92. 紫色丘陵区典型小流域非点源磷迁移特征 [5]
93. 施肥方式对冬小麦一夏玉米轮作土壤N_2O排放的影响 [5]
94. Nutrient removal in a trapezoidal vegetated drainage ditch used to.. [5]
95. Long-term impact of primary domestic sewage on metal/loid accumula.. [5]
96. Plant soaking decomposition as well as nitrogen and phosphorous re.. [5]
97. Seasonal variations in indirect N2O emissions from an agricultural.. [5]
98. Effects of slope gradient on runoff from bare-fallow purple soil i.. [5]
99. Seasonal N2O emissions respond differently to environmental and mi.. [5]
100. Anthropogenic reactive nitrogen deposition and associated nutrient.. [5]