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Effect of ozonation on the activated carbon surface chemical properties and on 2-mercaptobenzothiazole adsorption

机译:臭氧化对活性炭表面化学性质和2-巯基苯并噻唑吸附的影响

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摘要

Benzothiazoles are organic compounds that may produce negative environmental impact when released into watercourses. In particular, 2-mercaptobenzothiazole (MBT) are known to be toxic and hard to biodegrade. Activated carbon adsorption and ozonation have been identified as suitable treatment for those contaminants. However, there is some controversy about the effect of carbon surface chemical composition on the MBT adsorption. This paper focuses on this issue and presents experimental adsorption isotherms for MBT on Filtrasorb-400 activated carbon treated with different ozone doses. The activated carbon surface chemical properties were assessed by acid/basic neutralization, temperature spectroscopy (XPS), and the point of zero charge (pH_(PCZ)). Results show that ozone treatment modified the oxygenated groups on the activated carbon surface, increasing the concentration of acid groups, and reducing the pH_(PZC). Finally, ozone treatment led to a significant reduction of the carbon's MBT adsorption capacity, due to the increase in polar hydrophilic groups.
机译:苯并噻唑是有机化合物,释放到河道中可能会对环境产生不利影响。特别地,已知2-巯基苯并噻唑(MBT)有毒且难以生物降解。活性炭吸附和臭氧化已被确定为这些污染物的合适处理方法。但是,关于碳表面化学组成对MBT吸附的影响存在一些争议。本文着眼于这个问题,并介绍了用不同臭氧剂量处理的Filtrasorb-400活性炭对MBT的实验吸附等温线。通过酸/碱中和,温度光谱(XPS)和零电荷点(pH_(PCZ))评估了活性炭的表面化学性质。结果表明,臭氧处理可以修饰活性炭表面的氧化基团,增加酸基团的浓度,降低pH_(PZC)。最后,由于极性亲水基团的增加,臭氧处理导致碳的MBT吸附能力大大降低。

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