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Application of several advanced oxidation processes for the destruction of terephthalic acid (TPA)

机译:几种先进的氧化工艺在破坏对苯二甲酸(TPA)中的应用

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摘要

Terephthalic acid (TPA) is widely applied as a raw material in making polyester fiber, polyethylene terephthalate (PET) bottles, polyester films, etc. TPA is toxic and is known to act as endocrine disruptor. TPA wastewater is traditionally treated by biological process and this study aims to evaluate the effectiveness of several advanced oxidation processes on TPA removal. The oxidation processes studied were: UV-TiO_2, UV-H_2O_2, UV-H_2O_2-Fe, O_3, O_3/Fe, O_3/TiO_2, UV-O_3-H_2O_2-Fe and UV-O_3-H_2O_2-Fe-TiO_2. The results indicate that the time required for the complete destruction of 50 ppm of TPA can be minimized from 10 h using UV-TiO_2 system, to less than 10 min by UV-H_2O_2-Fe-O_3 system. Some of the likely organic intermediates identified during TPA destruction include, benzoquinone, benzene, maleic acid and oxalic acid. Possible destruction pathway of TPA has been proposed. TPA degradation by various systems was also analyzed based on the reaction kinetics and operating costs.
机译:对苯二甲酸(TPA)被广泛用作制造聚酯纤维,聚对苯二甲酸乙二醇酯(PET)瓶,聚酯薄膜等的原料。TPA具有毒性,并已知可作为内分泌干扰物。 TPA废水传统上是通过生物过程处理的,本研究旨在评估几种先进的氧化过程对TPA去除的有效性。研究的氧化过程为:UV-TiO_2,UV-H_2O_2,UV-H_2O_2-Fe,O_3,O_3 / Fe,O_3 / TiO_2,UV-O_3-H_2O_2-Fe和UV-O_3-H_2O_2-Fe-TiO_2。结果表明,使用UV-TiO_2系统可将10 ppm TPA完全破坏所需的时间降至最短,而使用UV-H_2O_2-Fe-O_3系统则可将其降至不到10分钟。在TPA破坏过程中发现的一些可能的有机中间体包括苯醌,苯,马来酸和草酸。已经提出了TPA可能的破坏途径。还基于反应动力学和操作成本分析了各种系统对TPA的降解。

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