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首页> 外文期刊>Journal of Environmental Management >Use of nano-/micro-magnetite for abatement of cadmium and lead contamination
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Use of nano-/micro-magnetite for abatement of cadmium and lead contamination

机译:使用纳米/微磁铁矿以减轻镉和铅污染

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摘要

Structural variations of a mineral dictate its adsorption capacity which affects the mobility and toxicity of contaminants in natural and engineered systems. Present batch study evaluates the adsorption of lead (Pb) and cadmium (Cd) onto three magnetites having nanometric (M1-30 nm and M2-60 nm) and micrometric particle sizes (M3-1.5 μm). Obtained data revealed that particle size of tested magnetites strongly affected the extent and kinetics of metal adsorption and desorption. Observed order of adsorption efficiency was M1 > M2 > M3 with optimum monolayer adsorption of 408.14, 331.40, 178.47 mg/g (for Pb) and 228.05, 170.86, 83.49 mg/g (for Cd), respectively. Adsorption data were well fitted to the Freundlich (R~2 = 0.99), Langmuir (R~2 = 0.99) and pseudo-first order models (R~2 = 0.98). Electrostatic attraction and surface precipitation interaction via external mass transfer between bulk liquid-solid interfaces were the potential adsorption pathways. Pb showed higher affinity than Cd in multi-metal system. Desorption efficiency was higher in acidic environment (92%) than in distilled water (44%). Moreover, regenerated magnetite samples retained good adsorption capacity for six cycles. As soils are characterized by large variability of iron minerals, these findings have important implications regarding the transport and immobilization of contaminants particularly in the management of contaminated soils.
机译:矿物质的结构变化决定了其吸附能力,影响自然和工程系统中污染物的迁移率和毒性。目前的批量研究评估铅(Pb)和镉(Cd)的吸附到具有纳米(M1-30nm和M2-60nm)和微米粒径(M3-1.5μm)的三磁体上。获得的数据显示,测试磁纤数的粒度强烈影响金属吸附和解吸的程度和动力学。观察到的吸附效率顺序为M1> M2> M3,分别具有408.14,331.40,178.47mg / g(Pb)和228.05,170.86,83.49mg / g(用于CD)的最佳单层吸附。吸附数据适合于Freundlich(R〜2 = 0.99),Langmuir(R〜2 = 0.99)和伪第一订单型号(R〜2 = 0.98)。通过散装液固 - 固体界面之间的外部传质的静电吸引和表面沉淀相互作用是潜在的吸附途径。 PB在多金属系统中显示比CD更高的亲和力。酸性环境(92%)的解吸效率高于蒸馏水(44%)。此外,再生磁铁矿样品保留了六个循环的良好吸附能力。由于土壤的特征在于铁矿物质的大变异性,这些结果对污染物的污染物的运输和固定性具有重要意义,特别是在污染的土壤的管理中。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第15期|110477.1-110477.10|共10页
  • 作者单位

    Institute of Soil and Environmental Sciences University of Agriculture Faisalabad 38040 Pakistan MoA Key Laboratory for Clean Production and Utilization of Renewable Energy MoST National Center for International Research of BioEnergy Science and Technology College of Engineering China Agricultural University 100083 Beijing China;

    Institute of Soil and Environmental Sciences University of Agriculture Faisalabad 38040 Pakistan PEIE Research Public Establishment for Industrial Estates and Free Zones Center for Environmental Studies and Research Sultan Qaboos University Al-Khoud 123 Muscat Oman;

    Radioanalytical and Environmental Chemistry Group Department of Chemistry University of Cyprus P.O. Box 20537 Nicosia CY-1678 Cyprus;

    Institute of Soil and Environmental Sciences University of Agriculture Faisalabad 38040 Pakistan Key Laboratory of Geographic Information Science of the Ministry of Education School of Geographical Sciences East China Normal University Shanghai 200241 China;

    Guangzhou Institutes of Geochemistry Chinese Academy of Sciences 510640 Guangzhou China;

    Institute of Soil and Environmental Sciences University of Agriculture Faisalabad 38040 Pakistan;

    MoA Key Laboratory for Clean Production and Utilization of Renewable Energy MoST National Center for International Research of BioEnergy Science and Technology College of Engineering China Agricultural University 100083 Beijing China;

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

    Metal contamination; Magnetite; Nanotechnology; Adsorption; Metal immobilization; Soil remediation;

    机译:金属污染;磁铁矿;纳米技术;吸附;金属固定化;土壤修复;

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