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Petrochemical Wastewater Treatment by Photo-Fenton Process

机译:光-芬顿法处理石油化工废水

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In recent decades, the rise in the generation of extremely toxic and refractory wastewaters, as petroleum refinery plant effluents, is demanding increasingly efficient treatment technologies, among which photo-Fenton advanced oxidation processes are highlighted due to their rapid and effective petroleum-derived pollutant degradation. However, these systems are costly for their application at industrial scale, especially due to the associated electric energy and reagent costs. Several strategies have been adapted for overcoming these limitations, including the use of ferricarboxylate complexes or heterogeneous iron catalysts, the automated dosing of the oxidant, and even the combination of different AOPs, such as photo-electro-Fenton or sono-photoFenton hybrid methods. Nonetheless, the reduction of energy costs is not successfully accomplished. In this sense, further studies are required for minimizing operational costs by taking profit of solar light and coupling photo-Fenton-derived processes to biological treatments so industries can afford to implement these degradation systems and thus meet environmental legislation.
机译:在最近几十年中,作为炼油厂废水的剧毒和难处理废水的产生日益增长,对处理技术的要求越来越高,其中,光芬顿高级氧化工艺因其快速有效地降解石油引起的污染物而得到了强调。 。但是,这些系统在工业规模上的应用非常昂贵,特别是由于相关的电能和试剂成本。为了克服这些局限性,已经采用了几种策略,包括使用亚铁羧酸盐配合物或非均相铁催化剂,氧化剂的自动计量,甚至是不同AOP的组合,例如光电-Fenton或声光-Fenton混合方法。但是,能源成本的降低未能成功实现。从这个意义上讲,需要做进一步的研究,以通过利用太阳光的利润并将光芬顿衍生的过程与生物处理相结合,从而将运营成本降至最低,从而使工业界有能力实施这些降解系统,从而满足环境法规的要求。

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