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Post-column reaction gas chromatography with a two-stage microreactor for the determination of volatile oxygenated compounds in high-pressure liquefied hydrocarbons

机译:带有两级微反应器的柱后反应气相色谱法测定高压液化烃中的挥发性氧化化合物

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A reliable and practical approach for the direct measurement of volatile oxygenated compounds in high pressure liquefied light hydrocarbons has been successfully developed. The approach incorporates the use of a pressurized liquid injection device for sample introduction, a highly selective and polar ionic sorbent column technology to achieve separation of the target oxygenated compounds, and the augmentation of a recently commercialized two-stage post-column microreactor to convert carbon compounds, first to carbon dioxide by combustion and subsequently to methane by methanation. This two-stage conversion strategy is highly advantageous as it enables carbon compound independent responses as well as sensitivity improvements, particularly for short-chain oxygenated compounds. Oxygenated compounds such as acetaldehyde, propanal, methanol, ethanol, iso-propanol, n-propanol, and acetone in light hydrocarbons were found to have a detection limit of at least 0.1?ppm (v/v), respectable linear range from 0.2 ppm (v/v) to 3000 ppm (v/v) with R2 greater than 0.997 and relative precision of less than 10% RSD (n = 7). Considering the carbon compound independent response capability, one single carbon-containing compound can be used for calibration to measure any of the target analytes with a respectable accuracy of less than ±10% error. The unique feature of equimolar carbon responses also enables the possibility of determining the “total” concentration for the known volatile oxygenated compounds. Also, the need for multi-level calibration was eliminated over the range of interest. This novel concept enables new measurement capability and flexibility, enhances the analytical throughput, and substantially decreases the overall cost of ownership. The utility of the methodology was demonstrated with practical industrial applications.
机译:已经成功开发了一种直接测量高压液化轻烃中挥发性氧化化合物的可靠实用方法。该方法包括使用加压液体注射装置进行样品引入,高选择性和极性离子吸附剂柱技术以实现目标含氧化合物的分离,以及最近商业化的两阶段柱后微反应器的增强以转化碳化合物,首先通过燃烧生成二氧化碳,然后通过甲烷化生成甲烷。这种两阶段转化策略具有极大的优势,因为它可以实现不依赖碳化合物的响应并提高灵敏度,特别是对于短链含氧化合物。轻烃中的乙醛,丙醛,甲醇,乙醇,异丙醇,正丙醇和丙酮等含氧化合物的检出限至少为0.1?ppm(v / v),线性范围为0.2 ppm。 (v / v)至3000 ppm(v / v),R2大于0.997,相对精度小于10%RSD(n = 7)。考虑到碳化合物的独立响应能力,可以使用一种单一的含碳化合物进行校准以测量任何目标分析物,其准确度小于±10%的误差。等摩尔碳响应的独特特征还使得能够确定已知的挥发性氧化化合物的“总”浓度。同样,在感兴趣的范围内,也无需进行多级校准。这一新颖的概念可实现新的测量功能和灵活性,提高分析通量,并显着降低总体拥有成本。该方法的实用性已在实际工业应用中得到了证明。

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