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首页> 外文期刊>Central European Journal of Chemistry >Significance of water quality and radiation wavelength for UV photolysis of PhCs in simulated mixed solutions
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Significance of water quality and radiation wavelength for UV photolysis of PhCs in simulated mixed solutions

机译:水质和辐射波长对模拟混合溶液中PhC的UV光解的意义

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Ultraviolet (UV) photolysis of sixteen pharmaceutical compounds (PhCs) in mixed solutions with four types of water and two sets of UV radiation was investigated. UVC (254 nm) photolysis was ineffective at eliminating a large number of PhCs while a big number of them were refractory. However, vacuum UV (VUV: 185 nm + 254 nm) photolysis in the same experimental conditions eliminated the PhCs almost completely. The eliminations in ultrapure water (UPW), tap water (TW) and Neya River water (NRW) and their organic/inorganic contents were inversely correlated, which was more evident in VUV photolysis. Natural organic matter (NOM) in NRW did not have an impact in indirect photolysis, but effluent organic matter (EfOM) in secondary-treated effluent (NWTPE) enhanced indirect photolysis, which was more evident in VUV photolysis underlining the point that radiation wavelength/intensity can be a limiting factor in organic-rich waters. Moreover, VUV photolysis was far superior (90% mineralization) to UVC photolysis (10% mineralization) for PhCs mineralization. The greatly enhanced elimination and mineralization efficiencies observed for VUV photolysis were attributed to accelerated direct photolysis with 185 nm wavelength and indirect photolysis involving OH. The results demonstrated efficacy of VUV photolysis in wastewater treatment and its potential use as a tertiary treatment.
机译:研究了16种药物化合物(PhC)在四种类型的水和两组UV辐射的混合溶液中的紫外线(UV)光解。 UVC(254 nm)的光解作用无法消除大量的PhC,而其中的许多是难降解的。但是,在相同的实验条件下,真空紫外光(VUV:185 nm + 254 nm)光解几乎完全消除了PhC。超纯水(UPW),自来水(TW)和内亚河水(NRW)中的消除作用及其有机/无机含量呈负相关,这在VUV光解中更为明显。 NRW中的天然有机物(NOM)对间接光解没有影响,但是二级处理废水(NWTPE)中的废水有机物(EfOM)增强了间接光解,这在VUV光解中更为明显,强调了辐射波长/强度可能是富含有机物的水中的限制因素。此外,对于PhC的矿化作用,VUV光解作用(90%的矿化度)远优于UVC光解作用(10%的矿化度)。 VUV光解的消除和矿化效率大大提高,这归因于185 nm波长的加速直接光解和涉及OH的间接光解。结果证明了VUV光解在废水处理中的功效及其作为第三级处理的潜在用途。

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