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γ-Al_2O_3-based nanocomposite adsorbents for arsenic(V) removal: Assessing performance, toxicity and particle leakage

机译:基于γ-Al_2O_3的纳米复合吸附剂去除砷(V):评估性能,毒性和颗粒泄漏

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摘要

The generation and development of effective adsorption materials for arsenic removal are urgently needed due to acute arsenic contamination of water sources in many regions around the world. In the search for these new adsorbents, the application of nanomaterials or nanocomposites, and especially the use of nanopartides (NPs), has proven increasingly attractive. While the adsorptive performance of a range of nanocomposite and nanomaterial-based systems has been extensively reviewed in previously-published literature, the stability of these systems in terms of NP release, i.e. the ability of the nanomaterial or nanocomposite to retain incorporated NPs, is less well understood. Here we examine the performance of nanocomposites comprised of aluminium oxide nanopartides (AluNPs) incorporated in macroporous polyacrylamide-based cryogels (n-Alu-cryo, where n indicates the percentage of AluNPs in the polymer material (n = 0-6%, w/v)) for As(V) adsorption, and evaluate AluNP leakage before and after the use of these materials. A range of techniques is utilised and assessed (SEM, TEM, mass weight change, PIXE and in vitro toxicity studies). The 4-Alu-cryo nanocomposite was shown to be optimal for minimising AluNP losses while maximising As(V) removal. From the same nanocomposite we were further able to show that NP losses were not detectable at the AluNP concentrations used in the study. Toxicity tests revealed that no cytotoxic effects could be observed. The cryogel-AluNPs composites were not only effective in As(V) removal but also in immobilising the AluNPs. More challenging flow-through conditions for the evaluation of NP leakage could be included as a next step in a continued study assessing particle loss and subsequent toxicity.
机译:由于世界上许多地区的水源都受到砷的严重污染,因此迫切需要产生和开发用于除砷的有效吸附材料。在寻找这些新的吸附剂时,纳米材料或纳米复合材料的应用,尤其是纳米颗粒(NPs)的使用,已被证明越来越有吸引力。尽管在以前发表的文献中已广泛审查了一系列基于纳米复合材料和纳米材料的系统的吸附性能,但是这些系统在NP释放方面的稳定性(即纳米材料或纳米复合材料保留掺入的NP的能力)较小。非常明白。在这里,我们研究了掺入大孔聚丙烯酰胺基冰晶(n-Alu-cryo,其中n表示聚合物材料中AluNPs的百分比(n = 0-6%,w / v))吸附As(V),并评估使用这些材料前后的AluNP泄漏。利用和评估了一系列技术(SEM,TEM,质量重量变化,PIXE和体外毒性研究)。已显示4-Alu-cryo纳米复合材料是最理想的选择,它可以最大程度地减少As(V)的去除,从而最大程度地减少AluNP的损失。从同一纳米复合材料中,我们进一步能够证明在研究中使用的AluNP浓度下无法检测到NP损失。毒性测试表明未观察到细胞毒性作用。冷冻凝胶-AluNPs复合材料不仅有效去除As(V),而且还可以固定AluNPs。评估NP泄漏的更具挑战性的流通条件可以作为评估颗粒损失和后续毒性的持续研究的下一步。

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  • 来源
    《Science of the total environment》 |2014年第1期|207-214|共8页
  • 作者单位

    Department of Biotechnology, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden;

    Economics and Aerosol Technology, Lund University, Soelvegatan 26, SE-221 00 Lund, Sweden;

    Faculty of Science and Engineering University of Brighton, Brighton BN2 4GJ, UK,Blond Mclndoe Research Foundation, Queen Victoria Hospital NHS Trust East Crinstead, West Sussex RH19 3DZ, UK;

    Faculty of Science and Engineering University of Brighton, Brighton BN2 4GJ, UK,Kingston University, Faculty of Science, Engineering and Computing, School of Pharmacy and Chemistry, Penrhyn Road, Kingston Upon Thames, Surrey, KT1 2EE, UK;

    Department of Biotechnology, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden;

    Department of Biotechnology, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composites; Adsorbents; Macroporous polyrners; Nanopartides; Aluminium oxide; Risk assessment;

    机译:复合材料;吸附剂;大孔聚合物纳米粒子氧化铝风险评估;

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