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亚铁草酸体系声-杂化高级氧化工艺降解难降解污染物的批判性分析。

A critical analysis of sono-hybrid advanced oxidation process of ferrioxalate system for degradation of recalcitrant pollutants.

机构信息

Department of Chemical Engineering, Indian Institute of Science Education and Research Bhopal, Bhopal, 462 066, Madhya Pradesh, India.

Department of Chemical Engineering, Indian Institute of Science Education and Research Bhopal, Bhopal, 462 066, Madhya Pradesh, India; School of Chemistry, National University of Ireland Galway, University Road, Galway, H91 TK33, Ireland.

出版信息

Chemosphere. 2021 Aug;277:130324. doi: 10.1016/j.chemosphere.2021.130324. Epub 2021 Mar 19.

Abstract

The emerging contaminants in wastewater discharged from numerous chemical process industries, pharmaceutical industries, textile, and wineries have attracted the attention of the scientific community due to their toxicity and persistence in the environment. The conventional techniques are incompetent to treat many of such recalcitrant toxic pollutants. To achieve high mineralization, advanced oxidation processes (AOPs) are found to be more efficient for the degradation of these organic pollutants without producing secondary pollutants with no/less amount of sludge. The primary oxidation agents for AOPs are in-situ generated free radicals, which are highly reactive and effective oxidants for degrading any type of organic molecules present in the wastewater. In the past decades, the combination of AOPs or simultaneous application of more than one AOP has been investigated extensively for wastewater treatment and these hybrid-AOPs have been reported to be beneficial for high-level mineralization of organic pollutants. This paper presented the characteristics, properties and influence of parameters in sono-photo-ferrioxalate system. The primary operating parameters in sono-photo-ferrioxalate system that affect the kinetics are defined as the solution pH, temperature, molar ratio of Fe/CO, HO concentration, source of light, ultrasound intensity, dissolved gases, and size of cavitation bubble. In this process, several oxidizing radicals are generated such as HO, HO, CO, CO and O which are also responsible for degradation. In this review, we have mainly addressed the degradation of recalcitrant pollutants using the sono-photo-ferrioxalate system and a critical analysis of process parameters that influence mineralization efficiency.

摘要

废水中新兴的污染物来自于众多化学加工工业、制药工业、纺织和酿酒业,由于其毒性和在环境中的持久性,引起了科学界的关注。由于许多此类难处理的有毒污染物具有抗生性,传统技术无法对其进行处理。为了实现高效的矿化,高级氧化工艺(AOPs)被发现是一种更有效的降解方法,可在不产生二次污染物的情况下,减少污泥量。AOPs 的主要氧化剂是原位生成的自由基,这些自由基具有很高的反应活性,是降解废水中任何类型有机分子的有效氧化剂。在过去的几十年中,AOPs 的组合或同时应用多种 AOP 已被广泛用于废水处理,这些混合 AOP 已被证明有利于有机污染物的高效矿化。本文介绍了声-光-亚铁草酸体系的特点、性质和参数影响。影响动力学的声-光-亚铁草酸体系的主要操作参数定义为溶液 pH 值、温度、Fe/CO 摩尔比、HO 浓度、光源、超声强度、溶解气体和空化气泡大小。在这个过程中,会产生几种氧化自由基,如 HO、HO、CO、CO 和 O,它们也负责降解。在这篇综述中,我们主要讨论了使用声-光-亚铁草酸体系降解难处理污染物的情况,并对影响矿化效率的工艺参数进行了批判性分析。

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