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Coupling Pyrite-Fenton Process with Aerobic Biodegradation for the Treatment of 2-Chlorophenol

机译:用有氧生物降解加偶联黄铁矿 - 芬顿工艺,用于治疗2-氯苯酚

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This study investigates the performance of a sequential pyrite-Fenton and biological process for the treatment of 2-chlorophenol (2-CP) containing wastewater using pyrite-Fenton process as a pretreatment stage. Pyrite was tested as a catalyst material in Fenton reaction due to its low cost and high abundance in the environment. All experiments were run in batch mode. The biodegradation experiments were performed under aerobic conditions using glucose as the co-substrate with untreated or Fenton-pretreated 2-CP. Despite the 100% removal of 2-CP in batch pyrite-Fenton reactors, the total organic carbon (TOC) removal only approached 70%, implying the transformation of 2-CP into some chemically stable intermediate reaction by products during pyrite-Fenton oxidation. In systems with no pyrite-Fenton pretreatment, a combined effect of biotic and abiotic processes including biological degradation, sorption, and volatilization played a significant role on 2-CP removal. The pyrite-Fenton pretreatment of 2-CP significantly improved the performance of aerobic biological reactor relative to system with no pyrite-Fenton pretreatment by (1) reducing the toxicity of 2-CP on aerobic microbial cells and (2) enhancing cell growth. Overall, this study shows that pyrite-Fenton pretreatment coupled with aerobic biological degradation could provide a cost-effective solution for the treatment of wastewater containing low-biodegradable toxic compounds such as chlorophenols.
机译:本研究研究了使用硫铁矿 - 芬顿工艺作为预处理阶段处理序列硫铁矿 - 芬顿和生物学方法的性能,用于处理含有废水的2-氯酚(2-CP)。由于其在环境中的低成本和高丰度,将黄铁矿作为芬顿反应中的催化剂材料进行测试。所有实验均以批量模式运行。使用葡萄糖作为共衬底的有氧条件进行生物降解实验,以未处理或芬顿预处理的2cc。尽管在分批硫铁矿 - 芬顿反应器中除去2-CP,但总有机碳(TOC)去除仅接近70%,暗示在黄铁矿 - 芬顿氧化过程中通过产物转化为一些化学稳定的中间反应。在没有氟化石 - 芬顿预处理的系统中,生物和非生物过程的组合效果包括生物降解,吸附和挥发,在2-CP去除中发挥了重要作用。 2-CP的黄铁矿预处理显着提高了有氧生物反应器的性能相对于没有硫铁矿 - 芬顿预处理的系统(1)降低了2-CP对有氧微生物细胞的毒性和(2)增强细胞生长。总体而言,该研究表明,与好氧生物降解结合的黄铁矿 - 芬顿预处理可以提供一种经济效益的解决方案,用于处理含有低生物降解的毒性化合物如氯酚的废水。

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