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Prospects of biosynthesized nanomaterials for the remediation of organic and inorganic environmental contaminants

机译:生物合成纳米材料的展望,用于修复有机和无机环境污染物

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摘要

Nanotechnology deals with matter at dimensions within 1-100 nm, with such material displaying a wide range of applications in industry, medicine and environmental remediation. Futuristic approaches for the green synthesis of nanomaterials (NMs) and nanoparticles (NPs) via modification to control their size and shape can enhance their qualities for future applications. The new horizon of opportunities and potential for innovation together with the impact of recent advances in nanotechnology research have led to the recognition of these materials for application in environmental remediation. Diverse microorganisms, microbially synthesized compounds and plant extracts-mediated biosynthesized NMs/NPs have significant relevance in remediation. Biological nanofactories yield NPs that are considered more cost-effective and environmentally friendly than conventional chemical methods. Nanoremediation incorporates NMs, NPs, nanomembranes and nanopowders for detection as well as for the removal of toxic metals and organic compounds from the environment. Various processes of adsorption, transformation, photocatalysis and catalytic reduction have been achieved by various inorganic and organic nanoscale materials for the removal of toxic metals and organic compounds. Nanobiosensors have also been utilized to detect heavy metals and persistent organic pollutants and could be commercialized for their application in environment sampling. This review summarizes the different types of biologically synthesized NMs/NPs together with their mechanisms for the biosensing and remediation of environmental pollutants.
机译:纳米技术在1-100纳米内的尺寸下涉及物质,具有在工业,医学和环境修复方面的各种应用中的这种材料。通过修改控制其尺寸和形状的纳米材料(NMS)和纳米颗粒(NPS)的绿色合成的未来方法可以增强它们对未来应用的素质。纳米技术研究最近进步的机会和创新潜力的新地平线导致了对这些材料在环境修复中的应用。多种微生物,微生物合成化合物和植物提取物介导的生物合成的NMS / NPS在修复方面具有显着的相关性。生物纳压件产量NPS被认为比传统化学方法更具成本效益和环保。纳米化含有NMS,NPS,纳米爆发和纳米粉末,用于检测,以及从环境中除去有毒金属和有机化合物。通过各种无机和有机纳米级材料实现了各种吸附,转化,光催化和催化还原方法,用于去除有毒金属和有机化合物。纳米极细管也被用来检测重金属和持久性有机污染物,可以在环境采样中的应用程序进行商业化。本综述总结了不同类型的生物合成的NMS / NPS以及它们的生物传感和整理环境污染物的机制。

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  • 来源
    《Environmental Science: Nano》 |2018年第12期|共25页
  • 作者单位

    Natl Inst Technol Lab Environm Microbiol &

    Ecol LEnME Dept Life Sci Rourkela 769008 Odisha India;

    Natl Inst Technol Lab Environm Microbiol &

    Ecol LEnME Dept Life Sci Rourkela 769008 Odisha India;

    Natl Inst Technol Lab Environm Microbiol &

    Ecol LEnME Dept Life Sci Rourkela 769008 Odisha India;

    Natl Inst Technol Lab Environm Microbiol &

    Ecol LEnME Dept Life Sci Rourkela 769008 Odisha India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
  • 关键词

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