重庆市中心城区土壤重金属来源识别及空间分布

Zhuang Kun, Cai Yankun, Chen Wende, Peng Peihao
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引用次数: 1

摘要

摘要为了解土壤重金属污染特征,确定土壤重金属来源,对重庆市342个表层土壤样品进行了采集。测定了砷(As)、镉(Cd)、铬(Cr)、铅(Pb)、铜(Cu)、锌(Zn)、镍(Ni)、汞(Hg)、锑(Sb)、锰(Mn)、钼(Mo)等11种重金属的含量。采用主成分分析/绝对主成分分数(PCA/APCS)受体模型、分类回归(CATREG)模型和热点模型对数据进行分析。土壤中As、Cd、Cr、Pb、Cu、Zn、Ni、Hg、Sb、Mn和Mo的含量分别为5.80、0.13、76.56、25.55、23.99、75.58、30.50、0.05、0.64、573.32和0.56 mg·kg−1。主成分分析结果表明,第1主成分负荷下主要重金属元素为Cu、Ni、Zn、Mn、Cr、Pb和Cd,第2主成分负荷下主要重金属元素为Mo、As、Hg和Sb。分类回归分析结果表明,人口密度主要影响Cu(0.54),土壤主要影响Ni(0.41)、Sb(0.49)、Zn(0.47)和Mn(0.21),水质主要影响As(0.45)和Mo(0.37)。空气质量主要影响Cd(0.33)和Cr(0.37),交通活动主要影响Hg(0.31),坡度主要影响Pb(0.31)。研究成果可用于追溯土壤重金属的环境来源,从根本上预防和修复土壤重金属污染,保护城市土壤环境质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Source identification and spatial distribution of heavy metals in soil of central urban area of Chongqing, China
ABSTRACT To understand the characteristics of heavy metal pollution in soil and identify the source of heavy metals, 342 surface soil samples were collected in Chongqing, China. The contents of 11 heavy metals (i.e., arsenic (As), cadmium (Cd), chromium (Cr), lead (Pb), copper (Cu), zinc (Zn), nickel (Ni), mercury (Hg), antimony (Sb), manganese (Mn), and molybdenum (Mo)) were determined. The Principal Component analysis/absolute Principal component fraction (PCA/APCS) receptor model, the classified regression (CATREG) model, and the hot spot model were employed to analyze the data. The contents of As, Cd, Cr, Pb, Cu, Zn, Ni, Hg, Sb, Mn, and Mo in soil were 5.80, 0.13, 76.56, 25.55, 23.99, 75.58, 30.50, 0.05, 0.64, 573.32, and 0.56 mg·kg−1, respectively. The results of principal component analysis showed that the main heavy metal elements under the first principal component load were Cu, Ni, Zn, Mn, Cr, Pb, and Cd. The second principal component is mainly loaded with Mo, As, Hg, and Sb. The results of classified regression analysis showed that population density mainly affected Cu (0.54), soil mainly affected Ni (0.41), Sb (0.49), Zn (0.47), and Mn (0.21), and water quality mainly affected As (0.45) and Mo (0.37). Air quality mainly affected Cd (0.33) and Cr (0.37), traffic activity mainly affected Hg (0.31), and slope mainly affected Pb (0.31). The research results can be used to trace the environmental sources of soil heavy metals, fundamentally prevent and repair soil heavy metal pollution, and protect urban soil environmental quality.
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