Smart Capsules for Lead Removal from Industrial Wastewater.

Bartosz Tylkowski, Renata Jastrząb
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引用次数: 3

Abstract

Ground and especially drinking water could be contaminated by heavy metal ions such as lead and chromium, or the metalloid arsenic, discarded from industrial wastewater. These heavy metal ions are regarded as highly toxic pollutants which could cause a wide range of health problems in case of a long-term accumulation in the body. Thus, there have been many efforts to reduce the concentration of lead ions in effluent wastewater. They have included the establishment of stringent permissible discharge levels and management policies, the application of various pollution-control technologies, and the development of adsorbent materials for lead reduction. According to Science [1] encapsulation, developed approximately 65 years ago, has been defined as a major interdisciplinary research technology. Encapsulation has been used to deliver almost everything from advanced drugs to unique consumer sensory experiences. In this chapter we review the art of encapsulation technology as a potential breakthrough solution for a recyclable removal system for lead ions. Moreover, in order to provide the readers with a comprehensive and in-depth understanding of recent developments and innovative applications in this field, we highlight some remarkable advantages of encapsulation for heavy metal remove, such as simplicity of preparation, applicability for a wide range of selective extractants, large special interfacial area, ability for concentration of metal ions from dilute solutions, and less leakage of harmful components to the environment.

用于工业废水中铅去除的智能胶囊。
地表水,特别是饮用水,可能被工业废水中丢弃的铅、铬等重金属离子或类金属砷污染。这些重金属离子被认为是剧毒污染物,如果在体内长期积累,可能会引起广泛的健康问题。因此,人们已经做出了许多努力来降低废水中铅离子的浓度。这些措施包括制定严格的允许排放水平和管理政策,应用各种污染控制技术,以及开发减少铅的吸附材料。据Science[1]报道,封装技术大约在65年前发展起来,已经被定义为一项重要的跨学科研究技术。从先进的药物到独特的消费者感官体验,封装几乎被用于传递所有东西。在本章中,我们回顾了封装技术作为可回收铅离子去除系统的潜在突破性解决方案的艺术。此外,为了使读者全面深入地了解该领域的最新发展和创新应用,我们强调了封装去除重金属的一些显着优点,例如制备简单,适用于广泛的选择性萃取剂,特殊界面面积大,能够从稀溶液中浓缩金属离子,以及对环境有害成分的泄漏较少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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