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Quantification of OH and HO2 radicals during the low-temperature oxidation of hydrocarbons by Fluorescence Assay by Gas Expansion technique

机译:气体膨胀技术荧光法定量测定烃类低温氧化过程中的OH和HO2自由基

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摘要

•OH and •HO2 radicals are known to be the key species in the development of ignition. A direct measurement of these radicals under low-temperature oxidation conditions (T = 550–1,000 K) has been achieved by coupling a technique named fluorescence assay by gas expansion, an experimental technique designed for the quantification of these radicals in the free atmosphere, to a jet-stirred reactor, an experimental device designed for the study of low-temperature combustion chemistry. Calibration allows conversion of relative fluorescence signals to absolute mole fractions. Such radical mole fraction profiles will serve as a benchmark for testing chemical models developed to improve the understanding of combustion processes.
机译:已知•OH和•HO2自由基是点火过程中的关键物质。通过将一种称为“通过气体膨胀进行荧光分析”的技术与一种用于在自由气氛中定量这些自由基的实验技术相结合,可以在低温氧化条件(T = 550–1,000 K)下直接测量这些自由基。射流搅拌反应器,一种用于研究低温燃烧化学的实验装置。校准允许将相对荧光信号转换为绝对摩尔分数。这样的自由基摩尔分数分布将作为测试开发的化学模型的基准,以增进对燃烧过程的理解。

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