Liu Hai-Long, Zhang Zhong-Min, Zhao Xia, Jiao Ru-Yuan
Huan Jing Ke Xue. 2014 Jun;35(6):2201-8.
Degradation of fluorescent whitening agent VBL in the processes of activated carbon (AC) and activated carbon modified (ACM) adsorptions, hydrogen peroxide (H2O2) oxidation, and hydrogen peroxide oxidation catalyzed by activated carbon were studied. Mechanism of the above catalytic oxidation was also investigated by adding tert-Butyl alcohol (TBA), the free radical scavenger, and detecting the released gases. The results showed that: the activated carbon modified by Fe (NO3)3 (ACM)exhibited better adsorption removal than AC. Catalytic oxidation showed efficient removal of VBL, and the catalytic removal of AC (up to 95%) was significantly higher than that of ACM (58% only). Catalytic oxidation was inhibited by TBA, which indicates that the above reaction involved *OH radicals and atom oxygen generated by hydrogen peroxide with the presence of AC. The results of H2O2 decomposition and released gases detection involved in the process showed that activated carbon enhanced the decomposition of H2O2 which released oxygen and heat. More O2 was produced and higher temperature of the reactor was achieved, which indicated that H2O2 decomposition catalyzed by ACM was significantly faster than that of AC. Combining the results of VBL removal, it could be concluded that the rate of active intermediates (*OH radicals and atom oxygen) production by ACM catalytic reaction was faster than that of AC. These intermediates consumed themselves and produced O2 instead of degrading VBL. It seemed that the improper mutual matching of the forming rate of activating intermediates and the supply rate of reactants was an important reason for the lower efficiency of ACM catalytic reaction comparing with AC.
研究了荧光增白剂VBL在活性炭(AC)和改性活性炭(ACM)吸附、过氧化氢(H2O2)氧化以及活性炭催化过氧化氢氧化过程中的降解情况。通过添加自由基清除剂叔丁醇(TBA)并检测释放的气体,对上述催化氧化的机理进行了研究。结果表明:经Fe(NO3)3改性的活性炭(ACM)表现出比AC更好的吸附去除效果。催化氧化显示出对VBL的高效去除,AC的催化去除率(高达95%)显著高于ACM(仅58%)。TBA抑制了催化氧化,这表明上述反应涉及过氧化氢在AC存在下产生的*OH自由基和原子氧。该过程中H2O2分解和释放气体检测的结果表明,活性炭促进了H2O2的分解,释放出氧气和热量。产生了更多的O2,反应器温度更高,这表明ACM催化的H2O2分解明显快于AC。结合VBL去除结果可以得出结论,ACM催化反应产生活性中间体(*OH自由基和原子氧)的速率比AC快。这些中间体自身消耗并产生O2,而不是降解VBL。与AC相比,活化中间体形成速率与反应物供应速率的相互匹配不当似乎是ACM催化反应效率较低的一个重要原因。