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含萜类气体混合物在处理过的铝制气瓶中以标称 5 nmol/mol 含量的稳定性评估。

Stability assessment of gas mixtures containing terpenes at nominal 5 nmol/mol contained in treated aluminum gas cylinders.

机构信息

Analytical Chemistry Division, National Institute of Standards and Technology, 100 Bureau Drive, MS-8393, Gaithersburg, MD 20899-8393, USA.

出版信息

Anal Bioanal Chem. 2010 Oct;398(3):1417-25. doi: 10.1007/s00216-010-4058-0. Epub 2010 Aug 9.

Abstract

Studies of climate change increasingly recognize the diverse influences exerted by terpenes in the atmosphere, including roles in particulates, ozone formation, and their oxidizing potential. Measurements of key terpenes suggest atmospheric concentrations ranging from low pmol/mol (parts per trillion) to nmol/mol (parts per billion), depending on location and compound. To accurately establish concentration trends, assess the role of terpenes in atmospheric chemistry, and relate measurement records from many laboratories and researchers, it is essential to have good calibration standards. The feasibility of preparing well-characterized, stable gas cylinder standards for terpenes at the nmol/mol level is not yet well established. Several of the world's National Metrology Institutes (NMIs) are researching the feasibility of developing primary and secondary reference gas standards at the nmol/mol level for terpenes. The US NMI, the National Institute of Standards and Technology, has prepared several nmol/mol mixtures, in treated aluminum gas cylinders, containing terpenes in dry nitrogen at nominal 5 nmol/mol for stability studies. Overall, 11 terpenes were studied for stability. An initial gas mixture containing nine terpenes, one oxygenate, and six aromatic compounds, including benzene as an internal standard, was prepared. Results for four of the nine terpenes in this initial mixture indicate stability in these treated aluminum gas cylinders for over 6 months and project long term (years) stability. Interesting results were seen for beta-pinene, which when using a linear equation rate decline predicts that it will reach a zero concentration level at day 416. At the same time, increases in alpha-pinene, D: -limonene (R-(+)-limonene), and p-cymene were observed, including camphene, a terpene not prepared in the gas mixture, indicating a chemical transformation of beta-pinene to these species. Additional mixtures containing combination of either alpha-pinene, camphor, alpha-terpinene, and benzene indicate a second-order quadratic rate decline for the alpha-pinene and alpha-terpinene, a linear rate decline for camphor, and a second-order quadratic rate increase of camphene.

摘要

气候变化研究越来越多地认识到萜烯在大气中产生的多种影响,包括在颗粒物、臭氧形成及其氧化潜力方面的作用。关键萜烯的测量结果表明,大气浓度范围从低 pmol/mol(万亿分之一)到 nmol/mol(十亿分之一)不等,具体取决于位置和化合物。为了准确确定浓度趋势、评估萜烯在大气化学中的作用以及将来自许多实验室和研究人员的测量记录联系起来,拥有良好的校准标准至关重要。在 nmol/mol 水平上为萜烯制备具有良好特征、稳定的气瓶标准的可行性尚未得到充分证实。世界上的几个国家计量研究院 (NMI) 正在研究在 nmol/mol 水平上为萜烯开发一级和二级参考气体标准的可行性。美国 NMI 国家标准与技术研究院已在经过处理的铝气瓶中制备了几种 nmol/mol 混合物,其中含有在干燥氮气中以标称 5 nmol/mol 的萜烯,用于稳定性研究。总体而言,研究了 11 种萜烯的稳定性。最初的混合气中含有 9 种萜烯、1 种含氧物和 6 种芳香族化合物,包括苯作为内标,研究了其中四种萜烯的稳定性。该初始混合物中的四种萜烯之一在这些经过处理的铝气瓶中可稳定 6 个月以上,并预计具有长期(数年)稳定性。β-蒎烯的结果很有趣,当使用线性方程速率下降预测时,它将在第 416 天达到零浓度水平。与此同时,α-蒎烯、D: -柠檬烯(R-(+)-柠檬烯)和对伞花烃的浓度增加,包括在混合气中未制备的莰烯,表明β-蒎烯向这些物质发生了化学转化。含有α-蒎烯、樟脑、α-松油烯和苯的组合的其他混合物表明,α-蒎烯和α-松油烯的二次方速率下降,樟脑的线性速率下降,以及莰烯的二次方速率增加。

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