Unveiling the potential of silicon carbide as a support material and membranes for oily wastewater remediation

IF 9 1区 工程技术 Q1 ENGINEERING, CHEMICAL
Arthur S. Romero , Murilo D.M. Innocentini , J. Vladimir Oliveira , Andrey Lider , Tobias Fey , Nahum Travitzky , Dachamir Hotza
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Abstract

The increasing global water consumption, especially due to industrial growth, results in a proportional generation of wastewater that must be treated before reuse or return to nature. Effective solutions are especially needed for treating oily wastewater, a common industrial effluent with serious environmental and public health consequences when discharged untreated. Membrane separation processes have emerged as a promising technology to replace conventional methods for oil–water separation due to their selectivity and environmental benefits. While polymeric membranes currently dominate industrial oily wastewater treatment, challenges such as fouling susceptibility and poor stability against chemicals hinder their long-term sustainability. In response, highly hydrophilic ceramic membranes, especially silicon carbide (SiC), have gained significant attention owing to their remarkable attributes, including high durability, chemical resistance, and mechanical stability. SiC membranes enable the treatment of oil solutions with high concentrations, bypassing the need for additional pre-treatment steps. Notably, SiC membrane separation is considered an environmentally friendly method for reducing oil, dissolved organic matter, and salt in the crude oil–water-rich phase, enhancing the industrial viability of oily wastewater separation in various processes, including wastewater treatment plants, petroleum, food, and pharmaceuticals. This review article provides a comprehensive overview of the state-of-the-art in SiC membranes for efficient oily wastewater treatment, encompassing processing methods, membrane properties, and performance evaluation. Moreover, it delves into the challenges and future directions of SiC membranes, including fouling mitigation, cost-effectiveness, and scalability. By shedding light on the untapped potential of SiC membranes, this review aims to contribute to the advancement of sustainable oily wastewater treatment technologies.

Abstract Image

揭示碳化硅作为含油废水修复支撑材料和膜的潜力
全球用水量不断增加,特别是由于工业增长,导致产生的废水量成比例增加,这些废水必须经过处理后才能回用或回归自然。含油废水是一种常见的工业废水,未经处理排放会对环境和公众健康造成严重后果,因此尤其需要有效的解决方案来处理含油废水。膜分离工艺因其选择性和环境效益,已成为替代传统油水分离方法的一种有前途的技术。虽然聚合物膜目前在工业含油废水处理中占主导地位,但易结垢和对化学品稳定性差等挑战阻碍了其长期可持续性。为此,高亲水性陶瓷膜,尤其是碳化硅(SiC),因其卓越的特性,包括高耐久性、耐化学性和机械稳定性,而备受关注。碳化硅膜可以处理高浓度的油溶液,无需额外的预处理步骤。值得注意的是,SiC 膜分离被认为是一种减少富含原油-水相中的油、溶解有机物和盐分的环保方法,提高了含油废水分离在各种工艺中的工业可行性,包括废水处理厂、石油、食品和制药。这篇综述文章全面概述了用于含油废水高效处理的碳化硅膜的最新技术,包括处理方法、膜特性和性能评估。此外,文章还深入探讨了碳化硅膜面临的挑战和未来发展方向,包括污垢缓解、成本效益和可扩展性。通过揭示碳化硅膜尚未开发的潜力,本综述旨在促进可持续含油废水处理技术的发展。
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来源期刊
Separation and Purification Technology
Separation and Purification Technology 工程技术-工程:化工
CiteScore
14.00
自引率
12.80%
发文量
2347
审稿时长
43 days
期刊介绍: Separation and Purification Technology is a premier journal committed to sharing innovative methods for separation and purification in chemical and environmental engineering, encompassing both homogeneous solutions and heterogeneous mixtures. Our scope includes the separation and/or purification of liquids, vapors, and gases, as well as carbon capture and separation techniques. However, it's important to note that methods solely intended for analytical purposes are not within the scope of the journal. Additionally, disciplines such as soil science, polymer science, and metallurgy fall outside the purview of Separation and Purification Technology. Join us in advancing the field of separation and purification methods for sustainable solutions in chemical and environmental engineering.
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