Comparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in China

Highlights Soil organic carbon (SOC) loss determined by sediment loss for loess, red soil, and black soil. SOC is more easily enriched in sediments of red soil and loess soil than in that of black soil. Logarithmic relationship exists between ERocs and soil loss for high aggregate and clay content s...

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Main Authors: Zhongxuan Cao, Zhijun Chen, Junmei Gao, Lin Liu, Hui Zhu, Shuyan Yang, Yu Shao, Taoyi Wen
Format: Article
Language:English
Published: Springer 2022-09-01
Series:SN Applied Sciences
Subjects:
Online Access:https://doi.org/10.1007/s42452-022-05166-x
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author Zhongxuan Cao
Zhijun Chen
Junmei Gao
Lin Liu
Hui Zhu
Shuyan Yang
Yu Shao
Taoyi Wen
author_facet Zhongxuan Cao
Zhijun Chen
Junmei Gao
Lin Liu
Hui Zhu
Shuyan Yang
Yu Shao
Taoyi Wen
author_sort Zhongxuan Cao
collection DOAJ
description Highlights Soil organic carbon (SOC) loss determined by sediment loss for loess, red soil, and black soil. SOC is more easily enriched in sediments of red soil and loess soil than in that of black soil. Logarithmic relationship exists between ERocs and soil loss for high aggregate and clay content soil. Exponential relationship exists between ERocs and soil loss for low clay and aggregate soils. SOC and clay content determine the SOC enrichment in sediments.
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spelling doaj.art-c4340d64e2d24f748c035869523b3a1c2022-12-22T03:24:14ZengSpringerSN Applied Sciences2523-39632523-39712022-09-0141011410.1007/s42452-022-05166-xComparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in ChinaZhongxuan Cao0Zhijun Chen1Junmei Gao2Lin Liu3Hui Zhu4Shuyan Yang5Yu Shao6Taoyi Wen7College of Geography and Environment, Shandong Normal UniversityCollege of Geography and Environment, Shandong Normal UniversityCollege of Geography and Environment, Shandong Normal UniversityCollege of Geography and Environment, Shandong Normal UniversityCollege of Geography and Environment, Shandong Normal UniversityCollege of Geography and Environment, Shandong Normal UniversityCollege of Geography and Environment, Shandong Normal UniversityCollege of Geography and Environment, Shandong Normal UniversityHighlights Soil organic carbon (SOC) loss determined by sediment loss for loess, red soil, and black soil. SOC is more easily enriched in sediments of red soil and loess soil than in that of black soil. Logarithmic relationship exists between ERocs and soil loss for high aggregate and clay content soil. Exponential relationship exists between ERocs and soil loss for low clay and aggregate soils. SOC and clay content determine the SOC enrichment in sediments.https://doi.org/10.1007/s42452-022-05166-xSOC lossWater erosionSoil lossRed soilBlack soilLoess
spellingShingle Zhongxuan Cao
Zhijun Chen
Junmei Gao
Lin Liu
Hui Zhu
Shuyan Yang
Yu Shao
Taoyi Wen
Comparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in China
SN Applied Sciences
SOC loss
Water erosion
Soil loss
Red soil
Black soil
Loess
title Comparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in China
title_full Comparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in China
title_fullStr Comparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in China
title_full_unstemmed Comparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in China
title_short Comparisons of soil organic carbon enrichment and loss in sediments among red soil, black soil, and loess in China
title_sort comparisons of soil organic carbon enrichment and loss in sediments among red soil black soil and loess in china
topic SOC loss
Water erosion
Soil loss
Red soil
Black soil
Loess
url https://doi.org/10.1007/s42452-022-05166-x
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