首页> 外文期刊>Environmental Geochemistry and Health >Contrasted tolerance of Agrostis capillaris metallicolous and non-metallicolous ecotypes in the context of a mining technosol amended by biochar, compost and iron sulfate
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Contrasted tolerance of Agrostis capillaris metallicolous and non-metallicolous ecotypes in the context of a mining technosol amended by biochar, compost and iron sulfate

机译:在Biochar,堆肥和硫酸铁修正的采矿技术奖的背景下,盐水囊囊性和非金属型生态型对比耐受性耐受性

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摘要

Metal(loid) contamination of soil, resulting from the mining activities, is a major issue worldwide, due to its negative effects on the environment and health. Therefore, these contaminated soils need to be remediated. One realistic method is the assisted phytostabilization, which aims at establishing a vegetation cover on the soil that will reduce metal(loid) bioavailability and spreading through the prevention of wind erosion and water leaching. In addition, amendments are applied to improve soil conditions and ameliorate plant growth. In this goal, biochar and compost showed good results in terms of amelioration of soil fertility and reduction in lead bioavailability. However, they usually have a negative effect on arsenic. On the contrary, iron sulfate showed capacity to reduce arsenic mobility through interaction with its iron hydroxides. Finally, the choice of the appropriate plant species is crucial for the success of assisted phytostabilization. One good option is to use endemic species, adapted to the metal(loid) stress, with a fast growth and large shoot and root systems. The aims of this study were to (1) evaluate the effects of applying biochar, compost and iron sulfate, alone or combined, to a former mine soil on the soil properties and Agrostis capillaris growth, and (2) assess the difference between two Agrostis capillaris ecotypes, an endemic metallicolous ecotype and a non-metallicolous ecotype. Results of the mesocosm experiment showed that amendment application improved soil properties, i.e., reduced soil acidity, increased nutrient availability and lower metal(loid) stress, the best being the combination biochar-compost-iron sulfate. These ameliorations allowed a better plant growth. Finally, the metallicolous ecotype performed better in terms of growth than the non-metallicolous one and could thus be used in an assisted phytostabilization process on the former mine site.
机译:由于其对环境和健康的负面影响,金属(懒惰)土壤污染是全球范围的主要问题。因此,这些受污染的土壤需要进行补救。一种现实方法是辅助植物化,旨在在土壤上建立植被覆盖,这将减少金属(懒惰)生物利用度和通过防止风蚀和水浸出来扩散。此外,适用于改善土壤条件和改善植物生长的修正。在这一目标中,Biochar和堆肥在土壤肥力的改善和铅生物利用度降低的改善方面表现出良好的结果。然而,它们通常对砷产生负面影响。相反,硫酸铁通过与其铁氢氧化物相互作用而显示减少砷迁移率的能力。最后,适当的植物物种的选择对于辅助植物化的成功至关重要。一个不错的选择是利用单一的物种,适应金属(懒惰)应力,具有快速生长和大枝条和根系。本研究的目的是:(1)评估应用生物炭,堆肥和硫酸铁,单独或联合,对土壤性质前矿土和剪股颖茵陈生长,和(2)的效果评估2个剪股颖之间的差Capillaris Ecotypes,一种流动的金属化生态型和非金属溶解的生态型。 Mesocosm实验的结果表明,修正申请改善了土壤性质,即降低土壤酸度,增加的养分可用性和较低的金属(漏洞)应力,是最佳的Biochar - 堆肥 - 硫酸铁。这些改善允许更好的植物生长。最后,金属色的生态型在生长方面比非金属沉积物更好,因此可以用于前矿位点的辅助植物化过程中。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2021年第4期|1457-1475|共19页
  • 作者单位

    Univ Orleans INRA USC1328 LBLGC EA 1207 Rue Chartres BP 6759 F-45067 Orlans 2 France|IDDEA Environm Consulting Engn F-45160 Olivet France|ISTO UMR 7327 BRGM BP 36009 F-45060 Orleans France;

    Univ Orleans INRA USC1328 LBLGC EA 1207 Rue Chartres BP 6759 F-45067 Orlans 2 France|Univ Molise Dipartimento Biosci & Terr I-86090 Pesche Italy;

    Univ Orleans INRA USC1328 LBLGC EA 1207 Rue Chartres BP 6759 F-45067 Orlans 2 France;

    IDDEA Environm Consulting Engn F-45160 Olivet France;

    IDDEA Environm Consulting Engn F-45160 Olivet France;

    Univ Orleans INRA USC1328 LBLGC EA 1207 Rue Chartres BP 6759 F-45067 Orlans 2 France;

    Univ Orleans INRA USC1328 LBLGC EA 1207 Rue Chartres BP 6759 F-45067 Orlans 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; Biochar; Compost; Iron sulfate; Non-metallicolous; Metallicolous;

    机译:Agrostis capillaris;生物炭;堆肥;硫酸铁;非金属溶胶;金属粗糙;
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