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Advanced treatment of benzothiazole contaminated waters: comparison of O-3, AC, and O-3/AC processes

机译:苯并噻唑污染水的深度处理:O-3,AC和O-3 / AC工艺的比较

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摘要

Benzothiazole (BT) is a toxic and poorly biodegradable contaminant, usually found in wastewater from rubber related applications. This compound could be effectively eliminated using advanced treatment processes. This paper compares experimental results on detoxification systems based on ozone oxidation, activated carbon adsorption, and simultaneous adsorption-oxidation using ozone in the presence of activated carbon. The effect of pH (2-11), and the presence of radical scavengers (tert-butyl alcohol and and sodium carbonate) on process rates and removal efficiencies are assessed at laboratory scale. The experimental system consisted of a 1 L differential circular flow reactor and an ozone generator rated at 5 g O-3/h. Results show that ozone oxidation combined with activated carbon adsorption increases the overall BT oxidation rate with respect to the ozonation process and activated carbon adsorption. In the presence of free radical scavenger, only a 44% reduction in BT removal rate is observed in the simultaneous treatment, as compared with 72% when ozonation treatment is used, suggesting that BT oxidation reactions mainly take place on the activated carbon surface.
机译:苯并噻唑(BT)是一种有毒且难降解的污染物,通常在橡胶相关应用的废水中发现。使用先进的处理工艺可以有效地消除这种化合物。本文比较了基于臭氧氧化,活性炭吸附以及在活性炭存在下使用臭氧同时进行吸附氧化的排毒系统的实验结果。在实验室规模上评估了pH(2-11)以及自由基清除剂(叔丁醇和碳酸钠)对处理速率和去除效率的影响。实验系统由一个1 L的差速圆流反应器和一个臭氧发生器(额定值为5 g O-3 / h)组成。结果表明,臭氧氧化与活性炭吸附相结合可提高整体BT氧化速率(相对于臭氧氧化过程和活性炭吸附)。在存在自由基清除剂的情况下,在同时处理中仅观察到BT去除率降低了44%,而在进行臭氧处理时则降低了72%,这表明BT氧化反应主要发生在活性炭表面。

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