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Biochar from Different Carbonaceous Waste Materials: Ecotoxicity and Effectiveness in the Sorption of Metal(loid)s

机译:来自不同含碳废物的生物炭:吸附金属(胶体)的生态毒性和有效性

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摘要

In this study, biochar produced by pyrolysis of urban pruning wood (Bpw) and sewage sludge (Bss) were characterized and investigated as adsorbents for the removal of Cu(II), Pb(II), Zn(II), and As(V) from contaminated solutions. Both types of biochars showed different physical-chemical properties and metal(loid) content. In Bss, Cu, Zn, and Pb concentrations exceeded the upper limit of the common ranges in soils. However, when they were tested for their effect on soil invertebrates, neither of the biochar was expected to exert negative effects as long as the dose applied as an amendment was = 4.8 t ha(-1). For an assessment of the effectiveness of biochar in the immobilization of metal(loid)s, three contaminated solutions with acidic pH and different pollutant concentrations were added to both types of biochar. Precipitation as oxy-hydroxides and the formation of complexes with active functional groups of the organic matter were the main mechanisms of metal(loid) fixation by the biochar, with increased precipitation and a rising pH. Both types of biochar were effective at immobilizing Pb and Cu, while Zn showed less effectiveness in this regard and As the least. The high P content of the biochar from sewage sludge favored Pb fixation, presumably forming complexes with phosphates, while competition between phosphate and arsenate ions decreased As adsorption by Fe compounds. The metal(loid)s immobilized by biochar from urban pruning wood were more bioavailable than those fixed by biochar from sewage sludge.
机译:在这项研究中,对城市修剪木材(Bpw)和污水污泥(Bss)的热解产生的生物炭进行了表征,并研究了其作为去除Cu(II),Pb(II),Zn(II)和As(V)的吸附剂)。两种类型的生物炭都表现出不同的物理化学性质和金属(金属)含量。在Bss中,Cu,Zn和Pb的浓度超过了土壤中常见范围的上限。然而,当测试它们对土壤无脊椎动物的作用时,只要作为改良剂施用的剂量> = 4.8 t ha(-1),就不会期望任何一种生物炭都具有负面作用。为了评估生物炭在固定金属(胶体)中的有效性,将三种具有酸性pH和不同污染物浓度的受污染溶液添加到两种类型的生物炭中。作为氢氧根的沉淀和具有有机物活性官能团的配合物的形成是生物炭固定金属(胶体),增加沉淀和增加pH的主要机理。两种类型的生物炭都能有效地固定Pb和Cu,而Zn在这方面的有效性较低,而最少。污水污泥中生物炭的高P含量有利于Pb的固定,大概与磷酸盐形成络合物,而磷酸盐和砷离子之间的竞争则随着铁化合物​​的吸附而降低。用生物炭固定的城市修剪木材中的金属(生物)比通过污水污泥中的生物炭固定的金属(生物)具有更高的生物利用度。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2018年第7期|224.1-224.12|共12页
  • 作者单位

    Univ Almeria CITE IIB, Dept Agron, Area Ciencia Suelo, Campus Excelencia Int Agroalimentario CeiA3, Almeria 04120, Spain;

    Univ Almeria CITE IIB, Dept Agron, Area Ciencia Suelo, Campus Excelencia Int Agroalimentario CeiA3, Almeria 04120, Spain;

    LEITAT Technol Ctr, C Pallars 179-185, Barcelona 08005, Spain;

    LEITAT Technol Ctr, C Pallars 179-185, Barcelona 08005, Spain;

  • 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

    Organic waste; Biochar; Amendment; Risk assessment; Pollutant immobilization;

    机译:有机废物;生物炭;修正;风险评估;污染物固定化;
  • 入库时间 2022-08-17 13:36:42

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