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Sonochemistry in environmental remediation. 1. Combinative and hybrid sonophotochemical oxidation processes for the treatment of pollutants in water

机译:声化学在环境修复中的作用。 1.组合和混合声光化学氧化工艺处理水中的污染物

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Sonoprocessing is the utilization of sonic and ultrasonic waves in chemical synthesis and processes. It is a new and rapidly growing research field with broad applications in environmental engineering, green chemical synthesis, and processing. The application of this environmentally benign technique in environmental remediation is currently under active research and development. Sonochemical oxidation is effective in treating toxic effluents and reducing toxicity. However, the ultrasonic treatment is highly energy intensive since sonication is relatively inefficient with respect to total input energy and is therefore not economically attractive or feasible alone. Hence, sonochemistry has not yet received much attention as an alternative for industrial and large-scale chemical and environmental processes. One of the most interesting topics in the recent advances in sonochemistry is the possibility of double or more excitations with ultrasound and other types of energy. The coupling of ultrasound with other free energy sources (i.e., UV) or chemical oxidation utilizing H2O2, O-3, or ferrous ion presents interesting and attractive approaches. Therefore, many recent efforts have been devoted to improving the efficiency of sonochemical reactions by exploiting the advantages of combinative or hybrid processes involving the simultaneous or sequential use of ultrasonic irradiation and other advanced oxidation processes, electrochemical processes, and biological treatment. This paper provides a critical review of the applications of ultrasound in environmental remediation, focusing on recent developments and unifying analysis of combinative or hybrid systems, namely, sonophotochemical oxidation processes.
机译:声处理是在化学合成和过程中利用声波和超声波。这是一个快速发展的新研究领域,在环境工程,绿色化学合成和加工中具有广泛的应用。目前正在积极研究和开发这种环境友好技术在环境修复中的应用。声化学氧化可有效处理有毒废水并降低毒性。然而,超声处理是高能量消耗的,因为超声处理相对于总输入能量而言是相对低效的,因此单独地在经济上不具有吸引力或可行性。因此,声化学作为工业和大规模化学与环境过程的替代方法尚未引起广泛关注。声化学最新进展中最有趣的话题之一是超声和其他类型能量两次或多次激发的可能性。超声与其他自由能源(即UV)的耦合或利用H2O2,O-3或亚铁离子的化学氧化提供了有趣且有吸引力的方法。因此,最近的许多努力致力于通过利用组合或混合方法的优点来提高声化学反应的效率,这些方法包括同时或依次使用超声辐射和其他先进的氧化方法,电化学方法和生物处理。本文对超声在环境修复中的应用进行了批判性的综述,着重介绍了组合或混合系统(即声光化学氧化过程)的最新发展和统一分析。

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