磁性纳米复合材料作为减少水源砷的新兴范例

IF 3.9 3区 化学 Q2 POLYMER SCIENCE
Mohammed Ahmaruzzaman, Saptarshi Roy, Loveleena Khanikar, Mika Sillanpää, Sami Rtimi
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引用次数: 0

摘要

不可否认,现代社会的快速城市化推动了人类的进步,但它也引入了一系列环境污染物,包括砷等有害重金属,对公众健康产生不利影响。饮用水和砷浓度升高的其他水生水源受到污染是一个重大的环境和公共卫生问题。要解决这个问题,必须对含砷水进行净化。近年来,纳米吸附剂已成为一种有效去除水中砷的有前途的解决方案。然而,一个关键的挑战在于将这些纳米吸附剂从处理过的水中分离出来,这阻碍了它们在天然水系统中的实际应用。为了减轻这一限制,研究人员越来越多地关注磁性纳米复合吸附剂,它具有表面功能化的双重优势-使其能够精确定位和吸附砷-并且易于磁分离,显著提高了其在实际水处理应用中的潜力。磁性纳米吸附剂具有几个关键特性,包括高表面积、小粒径、优异的化学稳定性、超顺磁性和强磁化率,使其成为通过外磁场分离的理想候选者。本文综述了磁性纳米吸附剂的最新进展,重点介绍了利用不同载体基质对砷污染水体进行修复的各种改性策略。此外,系统地分析了不同的合成方法、主要表征技术、潜在的吸附机理以及不同参数变量对砷去除效率的影响。此外,本研究探讨了这些纳米吸附剂的实际应用、再生和适当的稳定选择,这对废物管理至关重要。此外,还对磁性纳米复合材料的毒理学评估研究、潜在的研究挑战和未来工业大规模利用的前景进行了展望,为磁性纳米复合材料在含砷废水修复中的进一步发展提供了重要的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic Nanocomposites as Emerging Paradigm for Mitigation of Arsenic from Aqueous Sources

The rapid urbanization of modern society has undeniably driven human progress, but it has also introduced a wide array of environmental contaminants, including hazardous heavy metals like arsenic, which adversely affects the public health. The contamination of drinking water and other aquatic sources with elevated concentrations of arsenic is a significant environmental and public health concern. To address this issue, the decontamination of arsenic-containing water is essential. In recent years, nano-adsorbents have emerged as a promising solution for the effective removal of arsenic from water. However, a key challenge lies in the separation of these nano-adsorbents from the treated water, which hinders their practical applications in natural water systems. To mitigate this limitation, researchers have increasingly focused on magnetic nanocomposite adsorbents which offer the dual advantage of surface functionalization– enabling their ability to precisely target and adsorb arsenic– and easy magnetic separation, significantly improving their potential for real-world water treatment applications. Magnetic nano-adsorbents exhibit several key attributes, including high surface area, small particle size, excellent chemical stability, superparamagnetic, and strong magnetic susceptibility, making them ideal candidates for separation via external magnetic fields. This research article provides a comprehensive overview of the recent advancements in magnetic nano-adsorbents, focusing on various modification strategies using different support matrices for the remediation of arsenic-contaminated water. Additionally, an in-depth analysis of the different synthetic methodologies, primary characterization techniques, the underlying adsorption mechanism, and the influence of the different parametric variables that affect the arsenic removal efficiency are systematically presented. Moreover, this study examines the practical applications, regeneration and proper stabilization options of these nano-adsorbents which is crucial for waste management. Furthermore, the toxicological assessment studies, potential research challenges and future perspective pertaining to the large-scale utilization in industries are also highlighted, offering critical insights for the further advancement of magnetic nanocomposites in arsenic-laden wastewater remediation.

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来源期刊
CiteScore
8.30
自引率
7.50%
发文量
335
审稿时长
1.8 months
期刊介绍: Journal of Inorganic and Organometallic Polymers and Materials [JIOP or JIOPM] is a comprehensive resource for reports on the latest theoretical and experimental research. This bimonthly journal encompasses a broad range of synthetic and natural substances which contain main group, transition, and inner transition elements. The publication includes fully peer-reviewed original papers and shorter communications, as well as topical review papers that address the synthesis, characterization, evaluation, and phenomena of inorganic and organometallic polymers, materials, and supramolecular systems.
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