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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >A measuring system for the fast simultaneous isotope ratio and elemental analysis of carbon, hydrogen, nitrogen and sulfur in food commodities and other biological material
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A measuring system for the fast simultaneous isotope ratio and elemental analysis of carbon, hydrogen, nitrogen and sulfur in food commodities and other biological material

机译:用于食品和其他生物材料中碳,氢,氮和硫的快速同时同位素比和元素分析的测量系统

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The isotope ratio of each of the light elements preserves individual information on the origin and history of organic natural compounds. Therefore, a multi-element isotope ratio analysis is the most efficient means for the origin and authenticity assignment of food, and also for the solution of various problems in ecology, archaeology and criminology. Due to the extraordinary relative abundances of the elements hydrogen, carbon, nitrogen and sulfur in some biological material and to the need for individual sample preparations for H and S, their isotope ratio determination currently requires at least three independent procedures and approximately 1 h of work. We present here a system for the integrated elemental and isotope ratio analysis of all four elements in one sample within 20 min. The system consists of an elemental analyser coupled to an isotope ratio mass spectrometer with an inlet system for four reference gases (N-2, CO2, H-2 and SO2). The combustion gases are separated by reversible adsorption and determined by a thermoconductivity detector; H2O is reduced to H-2. The analyser is able to combust samples with up to 100 mg of organic material, sufficient to analyse samples with even unusual elemental ratios, in one run. A comparison of the isotope ratios of samples of water, fruit juices, cheese and ethanol from wine, analysed by the four-element analyser and by classical methods and systems, respectively, yielded excellent agreements. The sensitivity of the device for the isotope ratio measurement of C and N corresponds to that of other systems. It is less by a factor of four for H and by a factor of two for S, and the error ranges are identical to those of other systems. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:每种轻元素的同位素比率保留了有关有机天然化合物的起源和历史的单独信息。因此,多元素同位素比分析是最有效的食品来源和真实性分配手段,也是解决生态学,考古学和犯罪学等各种问题的最有效手段。由于某些生物材料中氢,碳,氮和硫元素的相对相对丰度以及H和S的单独样品前处理的需要,它们的同位素比测定目前至少需要三个独立的程序,并且需要大约1小时的工作时间。我们在这里提出了一种用于在20分钟内对一个样品中所有四种元素进行元素和同位素比率综合分析的系统。该系统由一个元素分析仪与一个同位素比质谱仪相连,该质谱仪带有一个用于四种参考气体(N-2,CO2,H-2和SO2)的进气系统。燃烧气体通过可逆吸附分离,并由热导检测器确定; H2O还原为H-2。该分析仪能够燃烧多达100 mg的有机物质,足以一次分析甚至具有异常元素比率的样品。用四元素分析仪以及经典方法和系统分别对葡萄酒中水,果汁,奶酪和乙醇样品的同位素比进行比较,得出了很好的一致性。该设备对C和N同位素比测量的灵敏度与其他系统的灵敏度相对应。对于H,误差小于四倍,对于S,误差小于二倍,并且误差范围与其他系统相同。版权所有(c)2006 John Wiley&Sons,Ltd.

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