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VUV/UV/Chlorine as an Enhanced Advanced Oxidation Process for Organic Pollutant Removal from Water: Assessment with a Novel Mini-Fluidic VUV/UV Photoreaction System (MVPS)

机译:VUV / UV /氯作为增强的高级氧化工艺,用于去除水中的有机污染物:新型微型流体VUV / UV光反应系统(MVPS)的评估

摘要

Vacuum ultraviolet (VUV) and ultraviolet (UV)/chlorine processes are regarded as two of many advanced oxidation processes (AOPs). Because of the similar cost of VUV/UV and UV lamps, a combination of VUV and UV/chlorine (i.e., VUV/UV/chlorine) may enhance the removal of organic pollutants in water but without any additional power input. In this paper, a mini-fluidic VUV/UV photoreaction system (MVPS) was developed for bench-scale experiments, which could emit both VUV (185 nm) and DV (254 nm) or solely DV beams with a nearly identical UV photon fluence. The photon fluence rates of UV and VUV output by the MVPS were determined to be 8.88 X 10(-4) and 4.93 x 10(-5) einstein m(-2) s(-1), respectively. The VUV/UV/chlorine process exhibited a strong enhancement concerning the degradation of methylene blue (MB, a model organic pollutant) as compared to the total performance of the VUV/UV and UV/chlorine processes, although the photon fluence of the VUV only accounted for 5.6% of that of the UV. An acidic pH favored MB degradation by the VUV/UV/chlorine process. The synergistic mechanism of the VUV/UV/chlorine process was mainly ascribed to the effective use of (OH)-O-center dot for pollutant removal through formation of longer-lived secondary radicals (e.g., (OCl)-O-center dot). This study demonstrates that the new VUV/UV/chlorine process, as an enhanced AOP, can be applied as a highly effective and energy-saving technology for small-scale water and wastewater treatment.
机译:真空紫外线(VUV)和紫外线(UV)/氯工艺被视为许多高级氧化工艺(AOP)中的两种。由于VUV / UV和UV灯的成本相近,因此将VUV和UV /氯(即VUV / UV /氯)组合使用可以提高水中有机污染物的去除率,但无需额外输入功率。本文针对台式规模的实验开发了一种微流体VUV / UV光反应系统(MVPS),该系统可以发射VUV(185 nm)和DV(254 nm)或仅发射具有几乎相同的UV光子通量的DV光束。 MVPS输出的UV和VUV的光子注量速率分别确定为8.88 X 10(-4)和4.93 x 10(-5)爱因斯坦m(-2)s(-1)。与VUV / UV和UV /氯工艺的总性能相比,VUV / UV /氯工艺相对于亚甲基蓝(MB,一种典型的有机污染物)的降解表现出了极大的增强,尽管仅VUV的光子通量占紫外线的5.6%。酸性pH值有助于通过VUV / UV /氯气工艺降解MB。 VUV / UV /氯过程的协同机制主要归因于有效利用(OH)-O-中心点通过形成寿命更长的次级自由基(例如(OCl)-O-中心点)去除污染物。这项研究表明,作为增强型AOP的新型VUV / UV /氯工艺可作为一种高效节能技术用于小规模水和废水处理。

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