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Efficient removal of sulfamerazine (SMR) by ozonation in acetic acid solution after enrichment SMR from water using granular activated carbon

机译:使用颗粒状活性炭富集水中富含水中的乙酸溶液中的臭氧溶液中的高效除去磺胺嗪(SMR)

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Sulfamerazine (SMR) as a persistent organic pollutant in waste streams is of growing environmental concern. This study explores the extraction SMR from water into an acetic acid (AA) solution using granular activated carbon (GAC), and removal of SMR by ozonation in AA solution. Systematic experiments have shown that GAC can be used as an adsorbent to transfer sulfamerazine from water to AA solution. SMR removal efficiency is 99.5% in 10% AA aqueous solution, which is better than in water. The removal rate of SMR in the AA solution decreased as the initial molar ratio of SMR and O _(3) increased. The removal rate of SMR decreased with Fe ~(3+) present in the reactive system. The removal of SMR is dominated by indirect ozonation in water, while the SMR removal is an effect of both direct and indirect ozonation in AA solution. It is a very efficient process for the degradation of SMR in micro polluted water when using combined GAC adsorption–desorption in AA solution and ozonation of the resulting solution.
机译:苏哌嗪(SMR)作为废物流中的持久性有机污染物是不断增长的环境问题。本研究探讨了使用粒状活性炭(GAC)从水中的萃取SMR进入乙酸(AA)溶液,并通过在AA溶液中除去SMR。系统实验表明,GAC可用作吸附剂,以将磺胺嘧啶从水转移到AA溶液中。 10%AA水溶液中的SMR去除效率为99.5%,比水更好。随着SMR和O _(3)的初始摩尔比增加,AA溶液中SMR的去除率降低。 SMR的去除率随反应系统中的Fe〜(3+)降低。 SMR的去除是通过在水中间接臭氧组成的,而SMR去除是在AA溶液中直接和间接臭氧化的效果。在AA溶液中使用组合的GAC吸附 - 解吸时,在微污染水中降解SMR的一种非常有效的方法,并将所得溶液的臭氧化。

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