Quantifying the Effects of Climate Change and Revegetation on Erosion-Induced Lateral Soil Organic C...
Quantifying the Effects of Climate Change and Revegetation on Erosion-Induced Lateral Soil Organic Carbon Loss on the Chinese Loess Plateau
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Basel: MDPI AG
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English
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Basel: MDPI AG
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Erosion-induced soil organic carbon (SOC) loss substantially affects the redistribution of global organic carbon. The Chinese Loess Plateau, the most severely eroded region on Earth, has experienced notable soil erosion mitigation over the last few decades, making it a hotspot for soil erosion studies. However, the overall rate of SOC loss and spat...
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Quantifying the Effects of Climate Change and Revegetation on Erosion-Induced Lateral Soil Organic Carbon Loss on the Chinese Loess Plateau
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TN_cdi_doaj_primary_oai_doaj_org_article_2d26d17965214f61aad9d2ff18596159
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https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_2d26d17965214f61aad9d2ff18596159
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ISSN
2072-4292
E-ISSN
2072-4292
DOI
10.3390/rs15071775