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Dynamics of soil organic carbon and nitrogen following agricultural abandonment in a karst region

白云石 生态演替 土壤碳 喀斯特 环境科学 土壤科学 土壤水分 地质学 矿物学 生态学 生物 古生物学
作者
Dejun Li,Li Wen,Liqiong Yang,Pan Luo,Kongcao Xiao,Hao Chen,Wei Zhang,Xunyang He,Hongsong Chen,Kelin Wang
出处
期刊:Journal Of Geophysical Research: Biogeosciences [Wiley]
卷期号:122 (1): 230-242 被引量:148
标识
DOI:10.1002/2016jg003683
摘要

Abstract Agricultural abandonment is regarded as a major driver of soil organic carbon (C) dynamics, but the mechanisms underlying the direction and magnitude of soil C dynamics following agricultural abandonment are poorly understood. Here dynamics of soil C and N contents during postagricultural succession were investigated in areas underlain by dolomite or limestone by using a space‐for‐time substitution approach in a karst region, southwest China. One hundred twenty‐five sites from cropland, grassland, shrubland, and secondary forest were selected to represent different succession stages. Overall, soil C and N contents were greater ( P < 0.05) over limestone than over dolomite mainly due to significantly greater contents of soil C and N in the cropland and grassland underlain by limestone. Both soil C and N contents were lowest in the cropland while highest in the forest. Further analysis indicated that the patterns of soil C and N dynamics differed between the two lithology types. Soil C and N contents increased significantly from cropland to forest over dolomite, while varied insignificantly among succession stages over limestone. Exchangeable calcium explained most of soil C and N variance. We proposed that higher dissolution rate of limestone could replenish the lost calcium so that the calcium levels, and in turn soil C and N contents, were stable from the cropland to the forest. Nevertheless, due to relatively low dissolution rate for dolomite, the calcium level was depleted in the cropland. Following agricultural abandonment, calcium level recovered due to decreased loss, which in turn resulted in recovery of soil C and N.
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