Zhou Guangzhen, Xu Yanhua, Zhang Xiao, Sun Yongjun, Wang Cheng, Yu Peng
School of Environmental Science and Engineering, Nanjing Tech University, Nanjing 211816, China.
College of Urban Construction, Nanjing Tech University, Nanjing 211816, China.
Materials (Basel). 2022 Jul 18;15(14):5003. doi: 10.3390/ma15145003.
The extensive use of ibuprofen (IBU) and other pharmaceuticals and personal care products (PPCPs) causes them widely to exist in nature and be frequently detected in water bodies. Advanced catalytic oxidation processes (AOPs) are often used as an efficient way to degrade them, and the research on heterogeneous catalysts has become a hot spot in the field of AOPs. Among transitional metal-based catalysts, metal cobalt has been proved to be an effective element in activating peroxymonosulfate (PMS) to produce strong oxidizing components. In this study, the used D001 resin served as the matrix material and through simple impregnation and calcination, cobalt was successfully fixed on the carbon ball in the form of cobalt sulfide. When the catalyst was used to activate persulfate to degrade IBU, it was found that under certain reaction conditions, the degradation rate in one hour could exceed 70%, which was far higher than that of PMS and resin carbon balls alone. Here, we discussed the effects of catalyst loading, PMS concentration, pH value and temperature on IBU degradation. Through quenching experiments, it was found that SO4- and ·OH played a major role in the degradation process. The material has the advantages of simple preparation, low cost and convenient recovery, as well as realizing the purpose of reuse and degrading organic pollutants efficiently.
布洛芬(IBU)以及其他药品和个人护理产品(PPCPs)的广泛使用导致它们广泛存在于自然界中,并经常在水体中被检测到。高级催化氧化工艺(AOPs)常被用作降解它们的有效方法,而异相催化剂的研究已成为AOPs领域的一个热点。在过渡金属基催化剂中,金属钴已被证明是活化过一硫酸盐(PMS)以产生强氧化成分的有效元素。在本研究中,使用的D001树脂作为基体材料,通过简单的浸渍和煅烧,钴以硫化钴的形式成功固定在碳球上。当该催化剂用于活化过硫酸盐以降解IBU时,发现在一定反应条件下,一小时内的降解率可超过70%,远高于单独使用PMS和树脂碳球时的降解率。在此,我们讨论了催化剂负载量、PMS浓度、pH值和温度对IBU降解的影响。通过猝灭实验发现,SO4-和·OH在降解过程中起主要作用。该材料具有制备简单、成本低、回收方便等优点,同时实现了重复使用和高效降解有机污染物的目的。