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Isotopic analysis of atmospheric formaldehyde by gas chromatography isotope ratio mass spectrometry

机译:气相色谱同位素比质谱法分析大气甲醛的同位素

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摘要

Little is known about the isotopic composition of formaldehyde in the atmosphere, a chemical intermediate in hydrocarbon oxidation. Here, we present a promising new method to analyze the carbon (delta C-13) and hydrogen (delta D) isotopic composition of atmospheric formaldehyde. The direct isotopic analytical technique described uses continuous-flow gas chromatography-isotope ratio mass spectrometry, which provides flexibility for either isotopic analysis without correction for derivative functional groups. Current levels of precision of measurement are +/-1.1 and +/-50 parts per thousand (1 sigma) for % delta C-13 and delta D analyses, respectively. Concentration of formaldehyde in ambient air is also determined, coincident with isotopic measurement, to a precision of +/-15%. The method has the required sensitivity for analyses of formaldehyde in urban air on relatively small volume grab samples of whole air (10-70L STP), potentially providing high temporal resolution. This is particularly advantageous for studying formaldehyde given its short lifetime and large variability in the atmosphere.
机译:人们对大气中甲醛的同位素组成知之甚少,这是烃氧化的化学中间体。在这里,我们提出了一种有前途的新方法来分析大气甲醛的碳(δC-13)和氢(δD)同位素组成。所描述的直接同位素分析技术使用连续流气相色谱-同位素比率质谱法,该方法可为两种同位素分析提供灵活性,而无需校正衍生官能团。目前,%C-13和Delta D分析的测量精度分别为+/- 1.1和+/- 50千分之几(1 sigma)。还确定了环境空气中的甲醛浓度,与同位素测量相符,精确度为+/- 15%。该方法具有分析相对较小体积的全空气样品(10-70 L STP)中城市空气中甲醛的灵敏度,可以提供较高的时间分辨率。考虑到甲醛的寿命短和大气中的可变性,这对于研究甲醛特别有利。

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