Ning Jin
Northwest A&F University
17 Papers
3 Citations
Ning Jin is an academic researcher from Northwest A&F University. The author has contributed to research in topics: Climate change & Environmental science. The author has an hindex of 9, co-authored 12 publications. Previous affiliations of Ning Jin include Chinese Academy of Sciences.
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Papers
Impacts of recent climate warming, cultivar changes, and crop management on winter wheat phenology across the Loess Plateau of China
Liang He,Senthold Asseng,Gang Zhao,Dingrong Wu,Xiaoya Yang,Wei Zhuang,Ning Jin,Qiang Yu,Qiang Yu +8 more
TL;DR: Applying a crop simulation model using a field-tested standard cultivar across locations and years indicated that the simulated Phenological stages have accelerated with the warming trend more than the observed phenological stages, indicating that later sowing dates and the introduction of new cultivars with longer thermal time requirement have compensated for some of the increased temperature-induced changes in wheat phenology.
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Attribution of climate and human activities to vegetation change in China using machine learning techniques
TL;DR: Zhang et al. as mentioned in this paper analyzed the dynamic characteristics of vegetation area and greenness in China's ecological restoration engineering zones from 1990 to 2015, using Landsat TM/ETM/OLI images combined with a support vector machine (SVM) classification model.
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Impacts of climate change and crop management practices on soybean phenology changes in China.
TL;DR: Results indicate that farmers have a wider sowing window in spring and can select cultivars with long growing season duration and frost-tolerance to mitigate detrimental effects of a future warmer climate.
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Effects of water stress on water use efficiency of irrigated and rainfed wheat in the Loess Plateau, China.
TL;DR: This study classified irrigated and rainfed wheat areas based on MODIS data, and calculated the winter wheat yield by using an improved light use efficiency model, and suggested that winter wheat in the Loess Plateau was primarily dominated byRainfed wheat.
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Satellite-observed vegetation stability in response to changes in climate and total water storage in Central Asia
TL;DR: The results suggest that accounting for the effects of total water column instead of precipitation only is critical in understanding vegetation-water relationships in drylands.
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