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Multi-element contamination in soils from major mining areas in Northeastern of Brazil

机译:巴西东北部主要采矿区土壤中的多元素污染

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摘要

Mining has become one of the main factors in the global biogeochemical cycle of potentially toxic elements. Therefore, it is considered one of the anthropogenic activities with the greatest negative impact on the environment. These impacts are maximized in semiarid regions, where mining activities can lead to soil degradation and decrease in land productivity. This study aimed to assess the level of contamination in natural, urban, and agricultural soils of three important mining areas, where approximately 80,000 people live, and pollution levels have never been determined before. For this purpose, soil samples were collected around iron, uranium, and vanadium mines, as well as in the main human settlements of the region. The concentrations of 34 elements were determined by instrumental neutron analysis activation (INAA) and inductively coupled plasma optical emission spectrometry (ICP OES) techniques. Pollution indices (CF, EF, mC(d), PLI, and REEP) revealed that there is a moderate to heavy level of pollution for 89% of the analyzed elements. Additionally, an extreme contamination level was observed in 78% of the samples, for at least one element. Statistical analyses were performed to identify patterns in the distribution and common sources of pollution. The results suggest that the concentrations for Al, Ba, Hf, Na, Pb, Rb, REE, Ta, Th, U, Zn, and Zr are associated with geogenic causes. However, the influence of anthropogenic sources such as agriculture and mining on the accumulation of these elements in soils should not be disregarded. In contrast, the contents of As, Br, Cd, Co, Cr, Cs, Cu, Fe, K, Mn, Ni, Sc, Ti, and V reflect the direct impact of anthropogenic sources.[GRAPHICS].
机译:矿业已成为潜在有毒元素的全球生物地球化学循环的主要因素之一。因此,它被认为是对环境影响最大的人为活动之一。这些影响最大化在半干旱地区,采矿活动可能导致土壤降低和降低土地生产力。本研究旨在评估三个重要采矿区的自然,城市和农业土壤中的污染水平,其中大约80,000人生活,并未确定污染水平。为此目的,在铁,铀和钒矿周围收集土壤样品,以及该地区的主要人体沉积物。通过仪器中子分析激活(INAA)和电感耦合等离子体光发射光谱法(ICP OES)技术确定34个元件的浓度。污染指数(CF,EF,MC(D),PLI和REEP)透露,89%的分析元素有中度至重量污染。另外,对于至少一个元素,在78%的样品中观察到极端污染水平。进行统计分析以确定分布和常见污染源的模式。结果表明,Al,Ba,Hf,Na,Pb,Rb,Ree,Ta,Th,U,Zn和Zr的浓度与造环导致相关。然而,不应忽视土壤中这些元素的农业和挖掘等人类和挖掘的人为源的影响。相反,如,Br,Cd,Co,Cr,Cs,Cu,Fe,K,Mn,Ni,Sc,Ti和V的内容物反映了人为源的直接影响。[图形]。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2021年第11期|4553-4576|共24页
  • 作者单位

    State Univ Santa Cruz UESC Ctr Res Radiat Sci & Technol CPqCTR Highway Jorge Amado Km 16 BR-45662900 Ilheus BA Brazil;

    State Univ Santa Cruz UESC Ctr Res Radiat Sci & Technol CPqCTR Highway Jorge Amado Km 16 BR-45662900 Ilheus BA Brazil;

    State Univ Santa Cruz UESC Ctr Res Radiat Sci & Technol CPqCTR Highway Jorge Amado Km 16 BR-45662900 Ilheus BA Brazil;

    State Univ Santa Cruz UESC Ctr Res Radiat Sci & Technol CPqCTR Highway Jorge Amado Km 16 BR-45662900 Ilheus BA Brazil;

    State Univ Santa Cruz UESC Ctr Res Radiat Sci & Technol CPqCTR Highway Jorge Amado Km 16 BR-45662900 Ilheus BA Brazil;

    CNEN SP IPEN Ave Prof Lineu Prestes 2242 BR-05508000 Sao Paulo Brazil;

    CNEN SP IPEN Ave Prof Lineu Prestes 2242 BR-05508000 Sao Paulo Brazil;

    CNEN SP IPEN Ave Prof Lineu Prestes 2242 BR-05508000 Sao Paulo Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil analysis; Trace elements; Neutron activation analysis; ICP OES; Anthropogenic impacts;

    机译:土壤分析;微量元素;中子激活分析;ICP OES;人为影响;

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