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Screening of native plant species for phytoremediation potential at a Hg-contaminated mining site

机译:筛选受汞污染的采矿场的植物修复潜力

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摘要

Artisanal and small-scale gold mining (ASGM) is the largest sector of demand for mercury (Hg), and therefore, one of the major sources of Hg pollution in the environment This study was conducted in the Alacrin gold-mining site, one of the most important ASGM sites in Colombia, to identify native plant species growing in Hg-contaminated soils used for agricultural purposes, and to assess their potential as phytoremediation systems. Twenty-four native plant species were identified and analysed for total Hg (THg) in different tissues (roots, stems, and leaves) and in underlying soils. Accumulation factors (AF) in the shoots, translocation (TF) from roots to shoots, and bioconcentration (BCF) from soil-to-roots were determined. Different tissues from all plant species were classified in the order of decreasing accumulation of Hg as follows: roots > leaves > stems. THg concentrations in soil ranged from 230 to 6320 ng g~(-1). TF values varied from 033 to 1.73, with high values in the lower Hg-contaminated soils. No correlation was found between soils with low concentrations of Hg and plant leaves, indicating that TF is not a very accurate indicator, since most of the Hg input to leaves at ASGM sites comes from the atmosphere. On the other hand, the BCF ranged from 0.28 to 0.99, with Jatropha curcas showing the highest value. Despite their low biomass production, several herbs and sub-shrubs are suitable for phytoremediation application in the field, due to their fast growth and high AF values in large and easily harvest-able plant parts. Among these species, herbs such as Piper marginathum and Stecherus bifidus, and the sub-shrubs J. curcas and Capsicum annuum are promising native plants with the potential to be used in the phytoremediation of soils in tropical areas that are impacted by mining.
机译:手工和小型金矿开采(ASGM)是汞(Hg)需求的最大部门,因此,是环境中汞污染的主要来源之一。这项研究是在Alacrin金矿场进行的,该场址之一是哥伦比亚最重要的手工和小规模采金基地,以鉴定在用于农业目的的汞污染土壤中生长的本地植物物种,并评估其作为植物修复系统的潜力。鉴定了二十四个天然植物物种,并分析了不同组织(根,茎和叶)和下层土壤中的总Hg(THg)。确定了芽中的积累因子(AF),从根到芽的转运(TF)和从土壤到根的生物富集(BCF)。所有植物物种的不同组织按汞的积累量递减的顺序分类如下:根>叶>茎。土壤中THg的浓度范围为230至6320 ng g〜(-1)。 TF值在033至1.73之间变化,在受汞污染程度较低的土壤中,TF值较高。在汞含量低的土壤和植物叶片之间未发现相关性,这表明TF并不是一个非常准确的指标,因为在ASGM站点输入到叶片的大部分汞来自大气。另一方面,BCF的范围从0.28到0.99,麻风树麻疯树显示出最高的值。尽管它们的生物量较低,但由于它们在大型且易于收获的植物部位中具有快速生长和高AF值的特性,因此仍适合在野外进行植物修复的几种草药和半灌木丛。在这些物种中,诸如Piper marginathum和Schercherus bifidus的草本植物,以及亚灌木J. curcas和Capsicum annuum是很有前途的本地植物,它们有潜力用于对受采矿影响的热带地区的土壤进行植物修复。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|809-816|共8页
  • 作者单位

    University of Cordoba, Faculty of Basic Sciences, Department of Chemistry, Water, Applied and Environmental Chemistry Group, Laboratory of Toxicology and Environmental Management, Monteria, Colombia;

    University of Cordoba, Faculty of Basic Sciences, Department of Chemistry, Water, Applied and Environmental Chemistry Group, Laboratory of Toxicology and Environmental Management, Monteria, Colombia;

    University of Cordoba, Faculty of Basic Sciences, Department of Chemistry, Water, Applied and Environmental Chemistry Group, Laboratory of Toxicology and Environmental Management, Monteria, Colombia;

    University of Cordoba, Faculty of Basic Sciences, Department of Chemistry, Water, Applied and Environmental Chemistry Group, Laboratory of Toxicology and Environmental Management, Monteria, Colombia;

    Environmental Chemistry Department, Institute of Environmental Assessment and Water Research, IDAEA-CSIC, E-08034 Barcelona, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Translocation; Accumulation; Bioconcentration; Soils; Gold mining; Jatropha curcas; Colombia;

    机译:易位;积累;生物浓缩;土壤;黄金开采;麻疯树哥伦比亚;

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