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Sorbent Nanotechnologies for Water Cleaning

机译:用于水净化的吸附剂纳米技术

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摘要

Despite decades of regulatory efforts to mitigate water pollution, many chemicals, particularly heavy metals, still present risks to human health. In addition to direct exposure, certain metals such as mercury threaten public health due to its persistence, bioaccumulation and bioamplification throughout the food chain. A number of U.S. Federal and State regulations have been established to reduce the levels of mercury in water.;Activated carbon (AC) has been widely explored for the removal of mercury. However, AC suffers from many limitations inherent to its chemical properties, and it becomes increasingly challenging to meet current and future regulations by simply modifying AC to enhance its performance. Recently, the performance of nanosorbents have been studied in order to removal pollutants. Nanosorbents utilize the ultra-high reactive surface of nanoparticles for rapid, effective and even permanent sequestration of heavy metals from water and air, thus showed promising results as compared to AC.;The goal of this thesis research is to develop nanomaterial-based sorbents for the removal of mercury from water. It describes the development of a new solid-support assisted growth of selenium nanoparticles, their use for water remediation, and the development of a new nanoselenium-based sorbent sponge for fast and efficient mercury removal. The nanoselenium sorbent not only shows irreversible interaction with mercury but also exhibits remarkable properties by overcoming the limitations of AC. The nanoselenium sponge was shown to remove mercury to undetectable levels within one minute. This new sponge technology would have an impact on inspiring new stringent regulations and lowering costs to help industries meet regulatory requirements, which will ultimately help improve air and water quality, aquatic life and public health.
机译:尽管为减轻水污染进行了数十年的监管工作,但许多化学药品,特别是重金属,仍然对人体健康构成威胁。除了直接暴露外,某些金属(例如汞)还因其在整个食物链中的持久性,生物蓄积性和生物放大作用而威胁着公共健康。已经建立了许多美国联邦和州法规以减少水中的汞含量;广泛地研究了活性炭(AC)来去除汞。但是,AC遭受其化学性质固有的许多限制,并且通过简单地修改AC以增强其性能来满足当前和将来的法规变得越来越具有挑战性。近来,已经研究了纳米吸附剂的性能以去除污染物。纳米吸附剂利用纳米颗粒的超高反应活性表面从水中和空气中快速,有效,甚至持久地螯合重金属,因此与AC相比显示出令人鼓舞的结果。;本研究的目的是开发用于纳米材料的吸附剂从水中去除汞。它描述了新的固体支持的硒纳米颗粒的生长,其在水修复中的应用以及新的基于纳米硒的吸附海绵的开发,该海绵可快速有效地去除汞。纳米硒吸附剂不仅显示出与汞不可逆的相互作用,而且还克服了AC的局限性,表现出显着的性能。纳米硒海绵已显示在一分钟内将汞去除到不可检测的水平。这项新的海绵技术将对激​​发新的严格法规产生影响,并降低成本以帮助行业满足法规要求,从而最终有助于改善空气和水质,水生生物和公共卫生。

著录项

  • 作者

    Ahmed, Snober.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Agricultural engineering.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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