Key factors determining soil organic carbon changes after freeze-thaw cycles in a watershed located in northeast China
Author:
Publisher
Elsevier BV
Subject
Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering
Reference67 articles.
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4. The effect of soil water content and erodibility on losses of available nitrogen and phosphorus in simulated freeze-thaw conditions;Cheng;Catena,2018
5. Nutrient release from living and terminated cover crops under variable freeze-thaw cycles;Cober;Agron. J.,2018
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1. Spatiotemporal heterogeneity of soil available nitrogen during freeze–thaw cycles in a watershed: A 3‐year investigation;Land Degradation & Development;2023-12-14
2. Effects of raster resolution on quantifying farmland soil organic carbon stock in various landforms of a complex topography, China;Geoderma Regional;2023-09
3. Spatial heterogeneity of soil available phosphorus changed after freeze and thaw cycles in Mollisols of a watershed;Nutrient Cycling in Agroecosystems;2023-08-29
4. Effects of organic amendments on soil hydraulic characteristics in the Mollisols of Northeast China;Land Degradation & Development;2023-08-02
5. Effects of freeze-thaw intensities on N2O release from subsurface wastewater infiltration system;Journal of Environmental Chemical Engineering;2023-06
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