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华北平原土壤有机碳的时空变化。

Spatial and temporal variation of soil organic carbon in the North China Plain.

机构信息

Institute of Hydrogeology and Environmental Geology|, Shijiazhuang, 050061, China.

Hebei Geological University, Shijiazhuang, 050061, China.

出版信息

Environ Monit Assess. 2018 May 23;190(6):357. doi: 10.1007/s10661-018-6734-z.

Abstract

The organic carbon, permeability test, grain size, chemical composition, and mineral composition were analyzed for 147 samples collected from the Luan River catchment, Hebei province, China, to quantitatively characterize the effects of land use, climate change, sedimentary environment, mineral composition, and chemical composition on the spatial and temporal variation of soil organic carbon (SOC). The results indicate that there was higher SOC content and stronger variation in the south plain than in the northern low mountain. The effects of land use, climate change, and sedimentary environment on SOC distribution were greater than the effects of mineral composition and chemical composition. The cropping systems in the Luan River catchment resulted in significant difference in SOC concentration between the south plain and north mountain. The precipitation mainly transmitted its effects through the sedimentary environment to SOC, which caused the stronger temporal variation in SOC from June to October in the south plain. The north mountain did not have significant temporal variation because of the lower hydraulic conductivity of the sedimentary sequence. The spatial variation of SOC was correlated with land use, and their temporal variation was attributed to climate change and sedimentary environment. Apart from land use, the decision maker can also affect the organic carbon mineral and sequence through the sedimentary environment.

摘要

对中国河北省滦河流域采集的 147 个样本进行了有机碳、渗透性测试、粒度、化学成分和矿物成分分析,以定量描述土地利用、气候变化、沉积环境、矿物成分和化学成分对土壤有机碳(SOC)时空变化的影响。结果表明,南部平原的 SOC 含量和变化幅度均高于北部低山。土地利用、气候变化和沉积环境对 SOC 分布的影响大于矿物成分和化学成分的影响。滦河流域的耕作制度导致了南部平原和北部山区 SOC 浓度的显著差异。降水主要通过沉积环境对 SOC 产生影响,导致南部平原 6 月至 10 月 SOC 的时间变化较强。由于沉积序列的水力传导率较低,北部山区 SOC 没有明显的时间变化。SOC 的空间变化与土地利用有关,其时间变化归因于气候变化和沉积环境。除土地利用外,决策者还可以通过沉积环境影响有机碳矿物和序列。

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