首页> 外文期刊>Water, Air, and Soil Pollution >Assisted Phytoremediation of a Multi-contaminated Industrial Soil Using Biochar and Garden Soil Amendments Associated with Salix alba or Salix viminalis: Abilities to Stabilize As, Pb, and Cu
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Assisted Phytoremediation of a Multi-contaminated Industrial Soil Using Biochar and Garden Soil Amendments Associated with Salix alba or Salix viminalis: Abilities to Stabilize As, Pb, and Cu

机译:使用与沙柳或沙柳相关的生物炭和花园土壤改良剂辅助修复多污染工业土壤的植物:稳定As,Pb和Cu的能力

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摘要

With the development of the industrial era, environmental pollution by organic and inorganic pollutants increased and became a worldwide issue. Particularly, former industrial sites often present high concentrations of metal(loid)s. These pollutions have adverse effects not only on the environment but also to human health, as pollutants can enter the food chain. Therefore, contaminated sites need rehabilitation. Phytoremediation is a clean and low-cost solution to remediate such sites. However, vegetation establishment can be difficult on such extreme soils from both a physical and a chemical point of view. Consequently, amendments, like biochar and garden soil, must be applied. Biochar, product of biomass pyrolysis under low-oxygen conditions, showed beneficial effects on soil fertility and plant growth, as well as metal(loid) sorption properties. The aims of this study were to investigate the effects of two organic amendments, biochar and garden soil, alone or combined, on the physico-chemical properties of a post-industrial soil and the growth of two Salix species (Salix alba and Salix viminalis) and evaluate the phytostabilizing capacities of the two Salix species. In this goal, a greenhouse experiment was performed, using garden soil at 50% (v/v) and/or biochar at 2 or 5% (w/w). The results showed that biochar did not improve soil physico-chemical properties, neither did it affect plant parameters (dry weight, organ metal(loid)s concentrations). Moreover, higher metal(loid) concentrations were found in the roots compared to the upper parts. Finally, S. alba presented lower metal(loid) concentrations in the aboveground parts compared to S. viminalis, associated with a good growth, which make it a better candidate for phytostabilization of the studied soil.
机译:随着工业时代的发展,有机和无机污染物对环境的污染增加,已成为世界性的问题。特别是,以前的工业场所经常会出现高浓度的金属(金属)。由于污染物可进入食物链,因此这些污染不仅对环境而且对人类健康都有不利影响。因此,受污染的场地需要修复。植物修复是一种清洁且低成本的解决方案,用于修复此类场所。然而,从物理和化学的角度来看,在这样的极端土壤上建立植被都是困难的。因此,必须采用生物炭和花园土壤等改良剂。生物炭是低氧条件下生物质热解的产物,对土壤肥力和植物生长以及金属(胶体)吸附特性表现出有益的影响。这项研究的目的是研究两种有机改良剂,单独或组合使用的生物炭和花园土壤,对工业化后土壤的理化性质和两种柳属植物(Salix alba和Salix viminalis)的生长的影响。并评估了两种柳属植物的植物稳定能力。在这个目标中,进行了温室试验,使用了50%(v / v)的花园土壤和/或2%或5%(w / w)的生物炭。结果表明,生物炭不能改善土壤理化性质,也不会影响植物参数(干重,器官金属(金属)含量)。此外,与上部相比,在根部发现较高的金属(胶体)浓度。最后,与土壤线虫相比,白线菌在地上部分的金属(胶体)浓度较低,具有良好的生长性,这使其更适合用于研究土壤的植物稳定性。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2018年第5期|163.1-163.13|共13页
  • 作者单位

    Univ Orleans, INRA, LBLGC EA 1207, USC 1328, Rue Chartres,BP 6759, F-45067 Orleans 2, France;

    Univ Orleans, INRA, LBLGC EA 1207, USC 1328, Rue Chartres,BP 6759, F-45067 Orleans 2, France;

    Univ Orleans, INRA, LBLGC EA 1207, USC 1328, Rue Chartres,BP 6759, F-45067 Orleans 2, France;

    Univ Orleans, INRA, LBLGC EA 1207, USC 1328, Rue Chartres,BP 6759, F-45067 Orleans 2, France;

    Univ Orleans, INRA, LBLGC EA 1207, USC 1328, Rue Chartres,BP 6759, F-45067 Orleans 2, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Industrial site; Metal(loid)s; Phytostabilization; Salix;

    机译:生物炭;工业场所;金属(胶体);植物稳定;Salix;
  • 入库时间 2022-08-17 13:36:40

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