Use of zeolites in wastewater remediation

Ismael Ki̇noti̇, C. M. M’thiruaine, Josheph Mwiti Marangu
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Abstract

Huge amounts of wastewater in low and lower-middle-income countries is released into the environment in untreated forms due to an increase in anthropogenic activities and disposal in water bodies. Pollution in water ecosystems results in water scarcity and crisis if effective and sustainable water treatment technologies are not adopted. Due to their abundance, cost-effective synthesis, and high contaminant removal capacities, zeolites have been considered as green and effective wastewater remediation materials. This paper presents an overview of the methods of synthesis, types, and efficiencies of zeolitic materials reported in wastewater remediation. In a state-of-the-art review, the latest data, discussion, conclusions, recommendations, and future perspectives are presented. In summary, synthetic zeolites are preferable in wastewater remediation because their structural characteristics can be fine-tuned at synthesis. In addition, synthetic zeolites can be tailored to remove specific contaminants based on ionic size, charge or type. The most common method of zeolite synthesis that has been reported is hydrothermal synthesis, which simulates the natural conditions of formation of zeolites. It is however not environmentally friendly due to large quantities of solvent-based byproducts. Recent methods utilize microwave radiation and solid-state synthesis methods to achieve green high-yield zeolites to be utilized in wastewater remediation. These materials are applicable in the removal of heavy metals, organic pollutants, and dyes, among others. The removal of these and other pollutants cost-effectively, sustainably, and efficiently is a great step toward a sustainable blue and green economy.
沸石在废水修复中的应用
在低收入和中低收入国家,由于人为活动和水体处理的增加,大量废水以未经处理的形式排放到环境中。如果不采用有效和可持续的水处理技术,水生态系统的污染将导致水资源短缺和危机。沸石由于其丰富、合成成本低、去除污染物能力强等优点,被认为是一种绿色有效的废水修复材料。本文综述了废水处理中沸石材料的合成方法、类型和效率。在最新的回顾,最新的数据,讨论,结论,建议和未来的观点提出。综上所述,合成沸石由于其结构特性可以在合成过程中进行微调,因此在废水修复中具有较好的应用前景。此外,合成沸石可以根据离子大小、电荷或类型来去除特定的污染物。目前报道的沸石合成最常见的方法是水热合成,它模拟了沸石形成的自然条件。然而,由于大量的溶剂型副产品,它并不环保。近年来,利用微波辐射和固体合成方法制备绿色高产沸石用于废水的修复。这些材料适用于去除重金属、有机污染物和染料等。经济有效、可持续、高效地去除这些污染物和其他污染物是迈向可持续蓝色和绿色经济的一大步。
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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