Quantitative analysis of the factors influencing spatial distribution of soil heavy metals based on geographical detector

污染 环境科学 地形 土壤水分 归一化差异植被指数 环境化学 土壤pH值 土壤科学 重金属 水文学(农业) 环境工程 地质学 地理 化学 生态学 岩土工程 气候变化 海洋学 生物 地图学
作者
Pengwei Qiao,Sucai Yang,Mei Lei,Tongbin Chen,Nan Dong
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:664: 392-413 被引量:165
标识
DOI:10.1016/j.scitotenv.2019.01.310
摘要

With the rapid development of modern industry, heavy metals in the soil introduce the risk of serious pollution. To reduce this pollution risk, the following four research questions needed to be addressed: What are the main influencing factors of soil pollution? What is the degree of influence? Do factors operate independently or are they interconnected? Which regions have high pollution risk and should be paid more attention? The study area was in Huanjiang County, with 273 km2, and geographical detector proved to be a useful tool to solve these four problems. We found that mine activity and pH value were the primary influencing factors for total and water-soluble heavy metals. The interaction effects of mine activity and soil type, pH values, and normalized difference vegetation index (NDVI) for total heavy metals, as well as pH value and mine activity for water-soluble heavy metals, were greater than the sum effect of two factors. Zones with a high concentration of heavy metals were closer to the road and farther from the mine area, which had low NDVI, large slope, high terrain, and large pH values. Concentrations of total heavy metals were higher in calcareous soils and in dryland and forests. Zones with a higher concentration of water-soluble heavy metals were closer to the mine and river, which had lower DEM and pH values. The uncertainty of geographical detector was also analyzed on the basis of their interpolation accuracy and the stratification number of influencing factors, and we found that the existing sample numbers and the stratification number of influencing factors met the needs of geographical detector calculation. This study's conclusions are useful for soil pollution control and restoration.
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