首页> 外文期刊>Photochemical & Photobiological Sciences >Microwave discharge electrodeless lamps (MDEL)Part VII. Photo-isomerization of trans-urocanic acid in aqueous media driven by UV light from a novel Hg-free Dewar-like microwave discharge thermally-insulated electrodeless lamp (MDTIEL). Performance evaluation
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Microwave discharge electrodeless lamps (MDEL)Part VII. Photo-isomerization of trans-urocanic acid in aqueous media driven by UV light from a novel Hg-free Dewar-like microwave discharge thermally-insulated electrodeless lamp (MDTIEL). Performance evaluation

机译:微波无极灯(MDEL)第VII部分。反式尿烷酸在水性介质中的光异构化,该水性介质由来自新型无汞的杜瓦式微波放电热绝缘无极灯(MDTIEL)的紫外线驱动。绩效评估

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摘要

A novel mercury-free Dewar-like (double-walled structure) microwave discharge thermally-insulated electrodeless lamp (MDTIEL) was fabricated and its performance evaluated using the photo-isomerization of trans-urocanic acid (trans-UA) in aqueous media as a test process driven by the emitted UV light when ignited with microwave radiation. The photo-isomerization processes trans-UA → cis-UA and cis-UA → trans-UA were re-visited using light emitted from a conventional high-pressure Hg light source and examined for the influence of UV light irradiance and solution temperature; the temperature dependence of the trans → cis process displayed a negative activation energy, Ea = −1.3 cal mol−1. To control the photo-isomerization of urocanic acid from the heat usually dissipated by a microwave discharge electrodeless lamp (single-walled MDEL), it was necessary to suppress the microwave-initiated heat. For comparison, the gas-fill in the MDEL lamp, which typically consists of a mixture of Hg and Ar, was changed to the more eco-friendly N2 gas in the novel MDTIEL device. The dynamics of the photo-isomerization of urocanic acid driven by the UV wavelengths of the N2-MDTIEL light source were compared to those from the more conventional single-walled N2-MDEL and Hg/Ar-MDEL light sources, and with those from the Hg lamp used to irradiate, via a fiber optic, the photoreactor located in the wave-guide of the microwave apparatus. The heating efficiency of a solution with the double-walled N2-MDTIEL was compared to the efficiency from the single-walled N2-MDEL device. Advantages of N2-MDTIEL are described from a comparison of the dynamics of the trans-UA → cis-UA process on the basis of unit surface area of the lamp and unit power consumption. The considerably lower temperature on the external surface of the N2-MDTIEL light source should make it attractive in carrying out photochemical reactions that may be heat-sensitive such as the photothermochromic urocanic acid system.
机译:制造了一种新型的无汞杜瓦式(双壁结构)微波放电隔热无极灯(MDTIEL),并使用反式尿烷酸(trans-UA)在水介质中的光异构化对其性能进行了评估。测试过程由微波辐射激发时发出的紫外线驱动。使用常规高压汞光源发出的光重新考察了反式UA-顺式UA和顺式UA-反式UA的光异构化过程,并研究了紫外线辐射和溶液温度的影响。反式→顺式过程的温度依赖性显示出负的活化能,E a = -1.3 cal mol -1 。为了控制通常由微波放电无电极灯(单壁MDEL)散发的热量引起的尿酸的光异构化,必须抑制微波引发的热量。为了进行比较,在新型MDTIEL装置中,MDEL灯中的气体填充物(通常由Hg和Ar的混合物组成)被改为更环保的N 2 气体。比较了N 2 -MDTIEL光源的紫外线波长驱动的尿烷酸的光异构化动力学与传统的单壁N 2 光源的动力学-MDEL和Hg / Ar-MDEL光源,以及来自Hg灯的光源,用于通过光纤照射位于微波设备波导中的光反应器。将N 2 -MDTIEL双壁溶液的加热效率与N 2 -MDEL单壁装置的加热效率进行了比较。通过比较基于灯的单位表面积和单位功耗的反式UA→顺式UA工艺的动力学过程,可以描述N 2 -MDTIEL的优点。 N 2 -MDTIEL光源的外表面上明显较低的温度应使其在进行可能是热敏感的光化学反应(例如光热变色尿烷酸体系)中具有吸引力。

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  • 来源
    《Photochemical & Photobiological Sciences》 |2011年第7期|p.1-10|共10页
  • 作者单位

    Department of Material & Life Science,Faculty of Science and Technology,Sophia University, 7-1 Kioicho, Chiyodaku, Japan@@2. Research Institute for Science and Technology,Tokyo University of Science, 2641 Yamazaki, Noda, Japan;

    1. Department of Pure and;

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  • 入库时间 2022-08-17 14:01:18

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