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Mineralization of sulfamethizole in photo-Fenton and photo-Fenton-like systems

机译:光芬顿和类芬顿体系中磺胺甲唑的矿化作用

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In this investigation, UV/H2O2, UV/H2O2/Fe2+ (photo-Fenton) and UV/H2O2/Fe3+ (photo-Fenton-like) systems were used to mineralize sulfamethizole (SFZ). The optimal doses of H2O2 (1-20 mM) in UV/H2O2 and iron (0.1-1 mM) in photo-Fenton and photo-Fenton-like systems were determined. Direct photolysis by UV irradiation and direct oxidation by added H2O2, Fe2+ and Fe3+ did not mineralize SFZ. The optimal dose of H2O2 was 10 mM in UV/H2O2 and that of iron (Fe2+ or Fe3+) was 0.2 mM in both UV/H2O2/Fe2+ and UV/H2O2/Fe3+ systems. Under the best experimental conditions and after 60 min of reaction, the SFZ mineralization percentages in UV/H2O2, UV/H2O2/Fe2+ and UV/H2O2/Fe3+ systems were 16, 90 and 88%, respectively. The UV/H2O2/Fe2+ and UV/H2O2/Fe3+ systems effectively mineralized SFZ.
机译:在这项研究中,使用UV / H2O2,UV / H2O2 / Fe2 +(光芬顿)和UV / H2O2 / Fe3 +(光芬顿类)系统来矿化磺胺甲唑(SFZ)。确定了紫外线/过氧化氢中H2O2(1-20 mM)的最佳剂量以及光Fenton和光Fenton类系统中铁的最佳剂量(0.1-1 mM)。紫外线辐射直接光解和加入H2O2,Fe2 +和Fe3 +直接氧化不会使SFZ矿化。在UV / H2O2中,H2O2的最佳剂量为10 mM,在UV / H2O2 / Fe2 +和UV / H2O2 / Fe3 +系统中,铁(Fe2 +或Fe3 +)的最佳剂量均为0.2 mM。在最佳实验条件下,反应60分钟后,UV / H2O2,UV / H2O2 / Fe2 +和UV / H2O2 / Fe3 +体系中的SFZ矿化百分比分别为16%,90%和88%。 UV / H2O2 / Fe2 +和UV / H2O2 / Fe3 +系统可有效矿化SFZ。

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