Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education, MOE), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, China.
Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education, MOE), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, China.
Water Res. 2022 Jul 15;220:118629. doi: 10.1016/j.watres.2022.118629. Epub 2022 May 17.
More robust ceramic membranes with tailorable structures and functions are increasingly employed for water treatment, particularly in some harsh applications for their ultra-long service lifespan due to their high mechanical, structural, chemical and thermal stability and anti-fouling properties. Decreasing cost and enhancing efficiency are two key but quite challenging application-oriented issues for broader and larger-scale engineering application of current ceramic membranes, and are required to make ceramic membranes a highly efficient and economic water treatment technique. In this review, we critically discuss these two significant concerns of both cost and efficiency for water treatment ceramic membranes, focusing on an overview of various advanced strategies and mechanism insights. A brief up-to-date discussion is first introduced about recent developments of ceramic membranes covering the major advances of novel membranes and applications. Then some promising strategies for decreasing the cost of ceramic membranes are discussed, including membrane material cost and processing cost. To fully address the issue of moderate efficiency with single separation function, valuable and considerable insights are provided into recent major progress and mechanism understandings in application with other unit processes, such as advanced oxidation and electrochemistry techniques, to significantly enhance treatment efficiency. Subsequently, a review of recent ceramic membrane applications emphasizing harsh operating environments is presented, such as oil-water separation, saline water, refractory organic and emerging contaminant wastewater treatment. Finally, engineering application, conclusions, and future perspectives of ceramic membrane for water treatment applications are critically discussed offering new insight based on understanding the issues of cost and efficiency.
具有可定制结构和功能的更坚固的陶瓷膜越来越多地用于水处理,特别是在一些苛刻的应用中,由于其具有超高的机械、结构、化学和热稳定性以及抗污染特性,其超长的使用寿命。降低成本和提高效率是当前陶瓷膜更广泛和大规模工程应用的两个关键但极具挑战性的应用问题,需要使陶瓷膜成为一种高效、经济的水处理技术。在这篇综述中,我们批判性地讨论了水处理陶瓷膜的这两个重要问题,即成本和效率,重点介绍了各种先进策略和机制的概述。首先简要介绍了陶瓷膜的最新发展情况,涵盖了新型膜和应用的主要进展。然后,讨论了降低陶瓷膜成本的一些有前途的策略,包括膜材料成本和加工成本。为了充分解决单一分离功能的适度效率问题,我们深入探讨了在其他单元过程(如高级氧化和电化学技术)中的应用方面的最新重大进展和机制理解,以显著提高处理效率。随后,介绍了强调苛刻操作环境的陶瓷膜应用的最新进展,例如油水分离、盐水、难处理有机物和新兴污染物废水处理。最后,批判性地讨论了水处理应用中陶瓷膜的工程应用、结论和未来展望,基于对成本和效率问题的理解提供了新的见解。