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Technical development of UV-C- and VUV-photochemically induced oxidative degradation processes

机译:UV-C和VUV光化学诱导的氧化降解工艺的技术发展

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Technical development work is presented, where the VUV photochemically induced oxidative degradation is used: (i) for analytic purposes, and (ii) for small to medium scale (< 10 m2/d) waste water treatment processes or ultrapure water production. In the first case, small Xe-excimer radiation sources with an integrated reaction space designed for optimal conditions, as far as incident photon flux density, turbulence and concentration of dissolved molecular oxygen are concerned, have been built and tested. Under conditions of exhaustive oxidation and/or mineralization of pollutants in a continuous regime, they may be used for sample pre-treatment modules prior TOC, TOX and electrochemical trace metal analysis. Under conditions of partial oxidation or mineralization, the same lamp/reactor combination may be used for functionalization purposes prior to e.g. GC or HPLC analyses. In the second case, mass transfer limitations between the non-irradiated bulk volume and the irradiated volume are overcome by the electrochemical generation of molecular oxygen within or close to the irradiated volume and by the design of the photochemical part of the reactor.
机译:介绍了技术开发工作,其中使用了VUV光化学诱导的氧化降解:(i)用于分析目的,(ii)用于中小型规模(<10 m2 / d)废水处理工艺或超纯水生产。在第一种情况下,已经建造并测试了具有为最佳条件设计的集成反应空间的小型Xe受激准分子辐射源,涉及入射光子通量密度,湍流和溶解的分子氧浓度。在连续进行彻底氧化和/或污染物矿化的条件下,它们可用于TOC,TOX和电化学痕量金属分析之前的样品预处理模块。在部分氧化或矿化的条件下,相同的灯/反应器组合可以用于例如功能化之前的功能化。 GC或HPLC分析。在第二种情况下,通过在辐照体积之内或接近辐照体积的分子氧的电化学产生以及通过反应器的光化学部分的设计,克服了未辐照体积与辐照体积之间的传质限制。

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