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Convenient New Chemical Actinometer Based on Aqueous Acetone,2-Propanol,and Carbon Tetrachloride

机译:基于丙酮,2-丙醇和四氯化碳的新型化学光度计

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摘要

A convenient new chemical actinometer was developed to measure the spectral output of laboratory ultraviolet(UV)light sources over the wavelength range of 260-330 nm.It can also be used to measure solar UV irradiance(<=325 nm).The actinometer is based on the photoreduction of aqueous carbon tetrachloride(CT)to chloroform(CF)in the presence of acetone(the chromophore)and 2-propanol(the reductant).In all cases,CT disappearance(and CF formation)followed zero-order kinetics over 95% of the reaction.The slope of the linear decay curve forms the basis of the new actinometer,which was calibrated using ferrioxalate actinometry.Quantum yields were measured at 10 nm intervals and were found to be uniform throughout the range of 260-300 nm.As expected,quantum yields gradually decreased to zero as the wavelength was increased from 300 to 340 nm.The high quantum yields(approx=150),low sensitivity to room light,and the straightforward determination of [CT] and [CF] by gas chromatography offer significant advantages over some other chemical actinometers,which might require the preparation and purification of light-sensitive compounds in a darkened environment and long exposure times.
机译:开发了一种方便的新型化学光化学计量仪,用于测量260-330 nm波长范围内的实验室紫外(UV)光源的光谱输出,还可以用于测量太阳紫外线(<= 325 nm)的辐照度。在丙酮(发色团)和2-丙醇(还原剂)存在下,将四氯化碳水溶液(CT)光还原为氯仿(CF)的过程中。在所有情况下,CT消失(和CF的形成)都遵循零级动力学。超过95%的反应。线性衰减曲线的斜率构成了新的光度计的基础,该光度计已使用草酸亚铁光度法进行了校准。以10 nm的间隔对量子产率进行了测量,发现在260-300的整个范围内是均匀的如预期的那样,随着波长从300 nm增加到340 nm,量子产率逐渐降低到零。量子产率高(大约= 150),对室内光的灵敏度低,并且[CT]和[CF]的直接测定气相色谱法报价与其他一些化学光度计相比,它具有更大的优势,这可能需要在黑暗环境中和长时间曝光下制备和纯化光敏化合物。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第7期|p.2262-2266|共5页
  • 作者单位

    Department of Civil and Environmental Engineering,University of Michigan,2200 Bonisteel Boulevard,Ann Arbor,Michigan 48109,Department of Atmospheric Sciences,The University of Arizona,P.O.Box 210081,Tucson,Arizona 85721-0081,and Department of Chemica;

    Department of Civil and Environmental Engineering,University of Michigan,2200 Bonisteel Boulevard,Ann Arbor,Michigan 48109,Department of Atmospheric Sciences,The University of Arizona,P.O.Box 210081,Tucson,Arizona 85721-0081,and Department of Chemica;

    Department of Civil and Environmental Engineering,University of Michigan,2200 Bonisteel Boulevard,Ann Arbor,Michigan 48109,Department of Atmospheric Sciences,The University of Arizona,P.O.Box 210081,Tucson,Arizona 85721-0081,and Department of Chemica;

    Department of Civil and Environmental Engineering,University of Michigan,2200 Bonisteel Boulevard,Ann Arbor,Michigan 48109,Department of Atmospheric Sciences,The University of Arizona,P.O.Box 210081,Tucson,Arizona 85721-0081,and Department of Chemica;

    Department of Civil and Environmental Engineering,University of Michigan,2200 Bonisteel Boulevard,Ann Arbor,Michigan 48109,Department of Atmospheric Sciences,The University of Arizona,P.O.Box 210081,Tucson,Arizona 85721-0081,and Department of Chemica;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:56

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