Depth Treatment of Engineering Applications Wastewater Using a Sequential Heterogeneous Fenton and Biodegradation Approach: Review

Sheam Bahjat Abdulkareem
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Abstract

After treating industrial wastewater efficiently and adequately to avoid harm from it being reused and disposed of in the past, the majority of countries in the world have moved to integrated planning and sound management to reuse it. The efficiency of water treatment and reuse depends on a set of environmental standards and controls that are connected to the nature of this water and the eventual purpose of treating and reusing it in order to prevent the environmental repercussions of an integrated method. A framework that assures environmental protection must be employed for this treatment and reuse. The emphasis is on developing reusable resources in order to transition from a linear to a circular economy. Finding the primary pathway for heterogeneous and homogeneous catalysis to pollutant degradation, optimizing the layout for integrating Fenton processes into large-scale treatment plants, particularly its coupling with biological treatment, and analyzing or enhancing heterogeneous catalyst lifetime are all important. are some of the main challenges mentioned in this research. This study intends to analyze the efficacy of the Fenton process in treating water in an effective and economical way compared to other conventional techniques.
非均相Fenton -生物降解法深度处理工程应用废水的研究进展
世界上大多数国家在过去对工业废水进行有效和充分的处理以避免其再次使用和处置造成的危害之后,已转向综合规划和健全管理以重新使用工业废水。水处理和再使用的效率取决于一套环境标准和控制措施,这些标准和控制措施与水的性质以及处理和再使用水的最终目的有关,以便防止综合方法对环境的影响。这种处理和再利用必须采用一个确保环境保护的框架。重点是开发可重复使用的资源,以便从线性经济过渡到循环经济。寻找多相和均相催化降解污染物的主要途径,优化Fenton工艺集成到大型处理厂的布局,特别是与生物处理的耦合,分析或提高多相催化剂的寿命都很重要。是本研究中提到的一些主要挑战。本研究旨在分析Fenton工艺与其他常规工艺相比,有效且经济地处理水的效果。
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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