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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Multidimensional gas chromatography for the characterization of permanent gases and light hydrocarbons in catalytic cracking process
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Multidimensional gas chromatography for the characterization of permanent gases and light hydrocarbons in catalytic cracking process

机译:多维气相色谱法用于催化裂化过程中永久性气体和轻烃的表征

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An integrated gas chromatographic system has been successfully developed and implemented for the measurement of oxygen, nitrogen, carbon monoxide, carbon dioxide and light hydrocarbons in one single analysis. These analytes are frequently encountered in critical industrial petrochemical and chemical processes like catalytic cracking of naphtha or diesel fuel to lighter components used in gasoline. The system employs a practical, effective configuration consisting of two three-port planar microfluidic devices in series with each other, having built-in fluidic gates, and a mid-point pressure source. The use of planar microfluidic devices offers intangible advantages like in-oven switching with no mechanical moving parts, an inert sample flow path, and a leak-free operation even with multiple thermal cycles. In this way, necessary features such as selectivity enhancement, column isolation, column back-flushing, and improved system cleanliness were realized. Porous layer open tubular capillary columns were employed for the separation of hydrocarbons followed by flame ionization detection. After separation has occurred, carbon monoxide and carbon dioxide were converted to methane with the use of a nickel-based methanizer for detection with flame ionization. Flow modulated thermal conductivity detection was employed to measure oxygen and nitrogen. Separation of all the target analytes was achieved in one single analysis of less than 12min. Reproducibility of retention times for all compounds were found to be less than 0.1% (n=20). Reproducibility of area counts at two levels, namely 100ppm_v and 1000ppm_v over a period of two days were found to be less than 5.5% (n=20). Oxygen and nitrogen were found to be linear over a range from 20ppm_v to 10,000ppm_v with correlation coefficients of at least 0.998 and detection limits of less than 10ppm_v. Hydrocarbons of interest were found to be linear over a range from 200ppb_v to 1000ppm_v with correlation coefficients of greater than 0.999 and detection limits of less than 100ppb_v.
机译:一个集成的气相色谱系统已经成功开发并实施,可以在一次分析中测量氧气,氮气,一氧化碳,二氧化碳和轻烃。这些分析物经常在关键的工业石化和化学过程中遇到,例如石脑油或柴油催化裂化为汽油中使用的较轻组分。该系统采用实用,有效的配置,该配置由两个彼此串联的三端口平面微流体设备组成,具有内置的流体闸门和中点压力源。平面微流体装置的使用提供了无形的优势,例如无需机械运动部件的烤箱内切换,惰性的样品流路以及即使有多个热循环也无泄漏的操作。这样,实现了必要的功能,如选择性增强,色谱柱隔离,色谱柱反吹和改进的系统清洁度。多孔层开放式管状毛细管柱用于烃的分离,然后进行火焰离子化检测。发生分离后,使用镍基甲烷化器将一氧化碳和二氧化碳转化为甲烷,用于火焰电离检测。流量调制的热导率检测用于测量氧气和氮气。一次分析少于12分钟即可完成所有目标分析物的分离。发现所有化合物的保留时间重现性均小于0.1%(n = 20)。发现两天内面积计数的两个级别(即100ppm_v和1000ppm_v)的可重复性小于5.5%(n = 20)。发现氧气和氮气在20ppm_v至10,000ppm_v的范围内呈线性,相关系数至少为0.998,检测极限为小于10ppm_v。发现感兴趣的烃在200ppb_v至1000ppm_v的范围内呈线性,相关系数大于0.999,检出限小于100ppb_v。

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