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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Chemical Characterization of Dissolvable Tobacco Products Promoted To Reduce Harm
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Chemical Characterization of Dissolvable Tobacco Products Promoted To Reduce Harm

机译:促进减少危害的可溶性烟草制品的化学表征

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摘要

In 2009, the R. J. Reynolds Tobacco Co. released a line of dissolvable tobacco products that are marketed as an alternative to smoking in places where smoking is prohibited. These products are currently available in Indianapolis, IN, Columbus, OH, and Portland, OR. This paper describes the chemical characterization of four such products by gas chromatography—mass spectrometry (GC-MS). The dissolvable tobacco products were extracted and prepared by ultrasonic extraction using acetone, trimethylsilyl derivatization, and headspace solid phase microextraction (SPME). The following compounds were identified in the dissolvables using either ultrasonic extractions or trimethylsilyl derivatization; nicotine, ethyl citrate, palmitic acid, stearic acid, sorbitol, glycerol, and xylitol. The following compounds were identified in the dissolvables using headspace SPME: nicotine, ethyl citrate, cinnamaldehyde, coumarin, vanillin, and carvone. With the exception of nicotine, the compounds identified thus far in the dissolvables are either flavoring compounds or binders. The concentration of free nicotine in the dissolvables was determined from the Henderson—Hasselbalch equation and by measuring the pH and nicotine concentration by GC-MS. The results presented here are the first to reveal the complexity of dissolvable tobacco products and may be used to assess potential oral health effects.
机译:2009年,雷诺兹烟草公司(R. J. Reynolds Tobacco Co.)发布了一系列可溶解的烟草产品,这些产品在禁止吸烟的地方可以替代吸烟。这些产品目前在印第安纳州印第安纳波利斯,俄亥俄州哥伦布和俄勒冈州波特兰市有售。本文通过气相色谱-质谱(GC-MS)描述了四种此类产物的化学表征。提取可溶解的烟草产品,并使用丙酮,三甲基甲硅烷基衍生化和顶空固相微萃取(SPME)通过超声提取进行制备。使用超声波萃取或三甲基甲硅烷基衍生化法在可溶物中鉴定出以下化合物;尼古丁,柠檬酸乙酯,棕榈酸,硬脂酸,山梨糖醇,甘油和木糖醇。使用顶空SPME在可溶物中鉴定出以下化合物:尼古丁,柠檬酸乙酯,肉桂醛,香豆素,香兰素和香芹酮。除尼古丁外,到目前为止在可溶物中鉴定出的化合物是调味剂或粘合剂。根据Henderson-Hasselbalch方程并通过GC-MS测量pH和尼古丁浓度来确定可溶物中游离尼古丁的浓度。这里介绍的结果是第一个揭示可溶性烟草产品复杂性的结果,可用于评估潜在的口腔健康影响。

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