292 results on '"Feng, Puyu"'
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2. Organic farming decreases nitrate leaching but increases dissolved organic nitrogen leaching in greenhouse vegetable production systems
3. Response of hydrology and nutrient losses to different extreme rainfall conditions in a coastal watershed influenced by orchards
4. Assessing the impacts of long-term climate change on hydrology and yields of diversified crops in the Texas High Plains
5. Probabilistic analysis of drought impact on wheat yield and climate change implications
6. Improving hydrological modeling to close the gap between elevated CO2 concentration and crop response: Implications for water resources
7. The response of non-point source pollution to climate change in an orchard-dominant coastal watershed
8. Quantitative analysis and planting optimization of multi-genotype sugar beet plant types based on 3D plant architecture
9. Modelling changes in vegetation productivity and carbon balance under future climate scenarios in southeastern Australia
10. Projecting heat-related cardiovascular mortality burden attributable to human-induced climate change in China
11. Unleashing the power of machine learning and remote sensing for robust seasonal drought monitoring: A stacking ensemble approach
12. The optimization of model ensemble composition and size can enhance the robustness of crop yield projections
13. China can be self-sufficient in maize production by 2030 with optimal crop management
14. Improved random patches and model transfer for deriving leaf mass per area across multispecies from spectral reflectance
15. Soil buffering capacity enhances maize yield resilience amidst climate perturbations
16. Assessing the feasibility of sprinkler irrigation schemes and their adaptation to future climate change in groundwater over-exploitation regions
17. Can agronomic options alleviate the risk of compound drought-heat events during the wheat flowering period in southeastern Australia?
18. Adaptations of potato production to future climate change by optimizing planting date, irrigation and fertilizer in the Agro-Pastoral Ecotone of China
19. Determining the effects of organic manure substitution on soil pH in Chinese vegetable fields: a meta-analysis
20. Performance of potential evapotranspiration models across different climatic stations in New South Wales, Australia
21. Modeling streamflow response under changing environment using a modified SWAT model with enhanced representation of CO2 effects
22. Integrating machine learning and environmental variables to constrain uncertainty in crop yield change projections under climate change
23. Evaluating the effects of single and integrated extreme climate events on hydrology in the Liao River Basin, China using a modified SWAT-BSR model
24. Increasing dominance of Indian Ocean variability impacts Australian wheat yields
25. Assessing impacts of global climate change on water and food security in the black soil region of Northeast China using an improved SWAT-CO2 model
26. Clarifying confusions over carbon conclusions: antecedent soil carbon drives gains realised following intervention
27. Assessment of the sustainability of groundwater utilization and crop production under optimized irrigation strategies in the North China Plain under future climate change
28. Development and testing of a dynamic CO2 input method in SWAT for simulating long-term climate change impacts across various climatic locations
29. Effects of global climate change on the hydrological cycle and crop growth under heavily irrigated management – A comparison between CMIP5 and CMIP6
30. Post-processing R tool for SWAT efficiently studying climate change impacts on hydrology, water quality, and crop growth
31. Assessing future runoff changes with different potential evapotranspiration inputs based on multi-model ensemble of CMIP5 projections
32. Modeling ammonia volatilization following urea and controlled-release urea application to paddy fields
33. Soil properties resulting in superior maize yields upon climate warming
34. Developing machine learning models with multi-source environmental data to predict wheat yield in China
35. Crop traits enabling yield gains under more frequent extreme climatic events
36. Future climate impacts on forest growth and implications for carbon sequestration through reforestation in southeast Australia
37. Modelling and mapping soil organic carbon stocks under future climate change in south-eastern Australia
38. Assessing the Fates of Water and Nitrogen on an Open-Field Intensive Vegetable System under an Expert-N System with EU-Rotate_N Model in North China Plain.
39. Assessing the Response Mechanisms of Elevated CO2 Concentration on Various Forms of Nitrogen Losses in the Golden Corn Belt.
40. Assessing maize potential to mitigate the adverse effects of future rising temperature and heat stress in China
41. Crop yield forecasting and associated optimum lead time analysis based on multi-source environmental data across China
42. Responses of soil organic carbon and crop yields to 33-year mineral fertilizer and straw additions under different tillage systems
43. Quantifying future drought change and associated uncertainty in southeastern Australia with multiple potential evapotranspiration models
44. Projecting future changes in extreme climate for maize production in the North China Plain and the role of adjusting the sowing date
45. Quantifying the impacts of pre-occurred ENSO signals on wheat yield variation using machine learning in Australia
46. Dynamic wheat yield forecasts are improved by a hybrid approach using a biophysical model and machine learning technique
47. Projecting potential evapotranspiration change and quantifying its uncertainty under future climate scenarios: A case study in southeastern Australia
48. Ground Cover Rice Production System Affects Soil Water, Nitrogen Dynamics and Crop Growth Differentially with or without Climate Stress
49. Sources of uncertainty for wheat yield projections under future climate are site-specific
50. Potential Benefits of Potato Yield at Two Sites of Agro-Pastoral Ecotone in North China Under Future Climate Change
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