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Inter-provincial Differences in Rice Multi-cropping Changes in Main Double-cropping Rice Area in China: Evidence from Provinces and Households 期刊论文
CHINESE GEOGRAPHICAL SCIENCE, 2019, 卷号: 29, 期号: 1, 页码: 127-138
Authors:  Wang, Renjing;  Li, Xiubin;  Tan, Minghong;  Xin, Liangjie;  Wang, Xue;  Wang, Yahui;  Jiang, Min
Favorite  |  View/Download:17/0  |  Submit date:2019/05/23
multi-cropping change  inter-provincial differences  cropping system adaption  accumulated temperature  double-cropping rice area  China  
Soil CO2 emission and carbon budget of a wheat/maize annual double-cropped system in response to tillage and residue management in the North China Plain 期刊论文
Authors:  Wu, LF;  Li, BB;  Qin, Y;  Gregorich, E
Favorite  |  View/Download:63/0  |  Submit date:2018/04/14
CO2 emission  carbon budget  tillage  crop residues management  wheat  maize double-cropping system  
Changes of anaerobic to aerobic conditions but not of crop type induced bulk soil microbial community variation in the initial conversion of paddy soils to drained soils SCI/SSCI论文
Authors:  Dai X. Q.;  Yuan, Y.;  Wang, H. M.
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Double cropping system  Land use conversion  Phospholipid fatty acid  (PLFA)  Red soil  Soil properties  Subtropical China  land-use change  fatty-acid analysis  organic-carbon  rice  china  fertilization  cultivation  diversity  bacterial  shifts  
Field scale interaction and nutrient exchange between surface water and shallow groundwater in the Baiyang Lake region, North China Plain SCI/SSCI论文
Authors:  Brauns B.;  Bjerg, P. L.;  Song, X. F.;  Jakobsen, R.
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Groundwater pollution  North China Plain  Surface water-groundwater  interaction  Wheat-maize double cropping  Nitrogen  Anammox  anaerobic ammonium oxidation  nitrate pollution  nitrogen-balance  cropping system  soil  isotopes  maize  river  evapotranspiration  contamination  
Changes of anaerobic to aerobic conditions but not of crop type induced bulk soil microbial community variation in the initial conversion of paddy soils to drained soils 期刊论文
CATENA, 2016, 卷号: 147, 页码: 578-585
Authors:  Dai, XQ;  Yuan, Y;  Wang, HM
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Double cropping system  Land use conversion  Phospholipid fatty acid (PLFA)  Red soil  Soil properties  Subtropical China  
Effects of no-tillage systems on soil physical properties and carbon sequestration under long-term wheat-maize double cropping system SCI/SSCI论文
Authors:  Huang M. X.;  Liang, T.;  Wang, L. Q.;  Zhou, C. H.
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No Tillage System  Conventional Tillage System  Soil Physical  Properties  Carbon Sequestration  Crop Residue  Manure  Wheat-maize  Double Cropping  Organic-matter Dynamics  Particle-size Fractions  Conventional Tillage  Aggregate Stability  Quality Indicators  Water Infiltration  Residue  Management  Microbial Biomass  Nitrogen Dynamics  Agroecosystems  
Leaching losses of nitrate nitrogen and dissolved organic nitrogen from a yearly two crops system, wheat-maize, under monsoon situations SCI/SSCI论文
Authors:  Huang M. X.;  Liang T.;  Ou-Yang Z.;  Wang L. Q.;  Zhang C. S.;  Zhou C. H.
View  |  Adobe PDF(321Kb)  |  Favorite  |  View/Download:214/64  |  Submit date:2012/06/08
Dissolved Organic Nitrogen  Nitrate Nitrogen  Leaching Losses  North China Plain  Double-cropping System  In-field Lysimeters  Winter-wheat  Management Strategies  Agricultural Soils  Corn  Fertilization  Accumulation  Rotation  
Water resources and water use efficiency in the North China Plain: Current status and agronomic management options SCI/SSCI论文
Authors:  Fang Q. X.;  Ma L.;  Green T. R.;  Yu Q.;  Wang T. D.;  Ahuja L. R.
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Water Deficit  Water Use Efficiency  Water Production  Agronomic  Management  Systems Modeling  North China Plain  Double-cropping System  Root-zone Irrigation  Yellow-river Basin  Regulated Deficit Irrigation  Winter-wheat  Climate-change  Stress  Index  Reference Evapotranspiration  Institutional Reform  Saving  Agriculture  
Modeling Wheat and Maize Productivity as Affected by Climate Variation and Irrigation Supply in North China Plain SCI/SSCI论文
Authors:  Chen C.;  Wang E. L.;  Yu Q.
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Water-use Efficiency  Double-cropping System  Lower Yellow-river  Winter-wheat  Simulation-model  Agricultural Production  Production  Potentials  Weighing Lysimeter  Summer Maize  Apsim  
Regional crop yield, water consumption and water use efficiency and their responses to climate change in the North China Plain SCI/SSCI论文
Authors:  Mo X. G.;  Liu S. X.;  Lin Z. H.;  Guo R. P.
View  |  Adobe PDF(1017Kb)  |  Favorite  |  View/Download:308/134  |  Submit date:2012/06/08
Vip Model  Winter Wheat-summer Maize Double Cropping System  Evapotranspiration  Yield Level  Photosynthesis  Winter-wheat Yields  Elevated Co2  Weighing Lysimeter  Biochemical-model  Change Scenarios  Carbon-dioxide  Change Impacts  United-states  Photosynthesis  Productivity