利用人工智能技术实现海水淡化污染膜的智能可持续再生

IF 6.4 4区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Muhammad Mubashir, Mustakeem Mustakeem, Ammar Alnumani, Abdulrahman Abutaleb, Ali Hamoud Naji Sumayli, Tausif Ahmad, Muhammad Rizwan Azhar
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引用次数: 0

摘要

在脱盐过程中,结垢、结垢和降解是导致膜分离性能下降的相关问题。膜再生是一项关键技术,其中升级回收和降级回收可以为促进可持续的膜生命周期管理提供有前途的途径。许多研究论文和评论批判性地分析了膜的再生,这解释了膜回收的周期结束评估和成本分析。然而,与传统和创新再生工艺相关的挑战尚未得到分析。人工智能(AI)对膜再生的潜在影响在文献中没有解释。本文旨在探讨人工智能与膜再生之间的协同关系,阐明这一快速发展领域的原理、挑战、机遇和新趋势。通过研究人工智能技术在加强对再生膜过程的理解、监测和控制方面的作用,以及它们在优化再生策略和解决寿命终止问题方面的应用,本文试图提供人工智能在重塑膜再生景观方面的变革潜力的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Smart and Sustainable Regeneration of Fouled Desalination Membranes Using Artificial Intelligence

Smart and Sustainable Regeneration of Fouled Desalination Membranes Using Artificial Intelligence

During the desalination process, scaling, fouling, and degradation are associated issues that lead to a drop in the separation performance of membranes. Membrane regeneration emerges as a critical technology in which upcycling and downcycling can offer a promising avenue for promoting sustainable membrane lifecycle management. Multiple research papers and reviews have critically analyzed the regeneration of membranes, which explains the end-of-cycle assessment and cost analysis of membrane recycling. However, challenges associated with the conventional and innovative regeneration processes are not yet analyzed. The potential impact of artificial intelligence (AI) on membrane regeneration is not explained in the literature. This review paper aims to explore the synergistic relationship between AI and membrane regeneration, elucidating the principles, challenges, opportunities, and emerging trends in this rapidly evolving field. By examining the role of AI techniques in enhancing the understanding, monitoring, and control of regeneration membrane processes, as well as their applications in optimizing regeneration strategies and addressing end-of-life considerations, this paper seeks to provide insights into the transformative potential of AI in reshaping the landscape of membrane regeneration.

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来源期刊
Global Challenges
Global Challenges MULTIDISCIPLINARY SCIENCES-
CiteScore
8.70
自引率
0.00%
发文量
79
审稿时长
16 weeks
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