首页> 外文期刊>Environmental Geochemistry and Health >Effects of biochar, ochre and manure amendments associated with a metallicolous ecotype of Agrostis capillaris on As and Pb stabilization of a former mine technosol
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Effects of biochar, ochre and manure amendments associated with a metallicolous ecotype of Agrostis capillaris on As and Pb stabilization of a former mine technosol

机译:生物炭,赭石和粪肥修正的影响与前矿山的Agrostis Capillaris富含金属色体育型相关的肥料和Pb稳定

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摘要

Metal(loid) soil pollution is a major environmental and health issue, requiring these areas to be remediated, for example through phytoremediation processes. In order to allow proper plant establishment and growth, amendments must be applied to highly contaminated and poorly fertile soils. Amendments are diverse, but many studies have shown the beneficial effects of biochar, manure and ochre, although studies on their combined use are scarce. Moreover, no studies have evaluated the effect of these combined amendments on endemic plant growth. Endemic plants growing on contaminated soils showed higher tolerance toward pollutants compared to plants coming from unpolluted areas. Therefore, the aim of the present study was to evaluate both the effect of amendments (single or combined) on the physicochemical properties of a former mining technosol, and the growth and metal(loid) accumulation ability of endemic Agrostis capillaris plants. This study revealed an improvement in the soil physicochemical properties following the application of amendments, with combined amendments showing better results than the application of just one. On top of this, Agrostis plants performed better on the amended technosols, especially the ones receiving manure, due to its high nutrient content. Finally, based on soil properties, plant growth and the metal(loid) accumulation profile, the use of biochar combined with manure seems to be the most appropriate treatment. Indeed, this treatment showed an improvement in both soil fertility and plant growth. Moreover, Agrostis plants grown in these conditions were among those showing higher root metal(loid) concentration associated with a lower translocation toward aerial parts.
机译:金属(懒惰)土壤污染是一个主要的环境和健康问题,要求这些领域进行修复,例如通过植物修复过程。为了允许适当的植物建立和增长,必须适用于高度污染和肥沃的土壤污染的修正。修正案是多元化的,但许多研究表明生物炭,粪肥和赭石的有益效果,尽管对它们的结合使用的研究是稀缺的。此外,没有研究评估了这些组合修正对流动植物生长的影响。与来自未受污染的区域的植物相比,生长在受污染的土壤上的流动植物表现出对污染物的耐受性更高。因此,本研究的目的是评估修改(单一或组合)对前采矿技术的物理化学特性的影响,以及特异性盐水毛细管植物的生长和金属(LoID)积累能力。该研究表明,在施用修正后的土壤物理化学性质的改善,组合的修正案显示比仅应用更好的结果。在此之上,由于其高营养含量,Agrostis植物在修改后的技术溶剂上表现更好,特别是接受粪便。最后,基于土壤性质,植物生长和金属(准)累积分布,使用生物炭与粪肥结合似乎是最合适的治疗。实际上,这种治疗表现出土壤肥力和植物生长的改善。此外,在这些条件下生长的盐水系统是呈现与朝向空中零件较低的易位相关的较高的根金属(Loid)浓度的植物。

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  • 来源
    《Environmental Geochemistry and Health》 |2021年第4期|1491-1505|共15页
  • 作者单位

    Univ Orleans LBLGC INRA USC1328 Rue Chartres BP 6759 F-45067 Orleans 2 France|Univ Molise Dipartimento Biosci & Terr I-86090 Pesche Italy;

    Univ Orleans LBLGC INRA USC1328 Rue Chartres BP 6759 F-45067 Orleans 2 France|IDDEA Environm Consulting Engn F-45160 Olivet France|ISTO UMR 7327 BRGM BP 36009 F-45060 Orleans France;

    Univ Orleans LBLGC INRA USC1328 Rue Chartres BP 6759 F-45067 Orleans 2 France;

    Univ Orleans CNRS BRGM ISTO UMR 7327 F-45071 Orleans France;

    Univ Orleans LBLGC INRA USC1328 Rue Chartres BP 6759 F-45067 Orleans 2 France;

    Univ Orleans LBLGC INRA USC1328 Rue Chartres BP 6759 F-45067 Orleans 2 France;

  • 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

    Agrostis capillaris; Amendment; Metal(loid)s; Mine; Stabilization;

    机译:Agrostis Capillaris;修正;金属(懒惰)S;矿井;稳定化;
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