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Design of Novel Ceramic Preconcentrator and Integration in Gas Chromatographic System for Detection of Ethylene Gas from Ripening Bananas

机译:新型陶瓷预融合器的设计与气相色谱系统中的乙烯天然气乙烯天然气

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In this paper, a novel ceramic preconcentrator is manufactured using aluminum nitride (ALN) ceramics. The preconcentrator consists of a heater, a preconcentrator body, a gas inlet and a gas outlet. The adsorption material, Carbosieve SII, is loaded into the preconcentrator. The preconcentrator is integrated with a previously developed micro gas chromatographic system filled with ethylene. When operated, adequate ethylene gas is adsorbed into the preconcentrator. The application of heat pulse also successfully desorbs the ethylene gas. Tests are conducted with ethylene gas at concentrations of 10 ppm, 5 ppm and 2.5 ppm and 400 ppb, respectively. The system is also tested with ethylene gas from ripening bananas over a period of three days. No interference signal is observed in the chromatogram because of other ripening gases (e.g., carbon dioxide, oxygen, alcohol) and humidity. A detection limit of 25 ppb is realized with this system. The developed preconcentrator has several applications, e.g., in food industry and environmental monitoring.
机译:在本文中,使用氮化铝(ALN)陶瓷制造一种新型陶瓷预凝固物。预融合器由加热器,预浓缩器主体,气体入口和气体出口组成。吸附材料,Carbosieve SiI,装入前肠化器中。预融合器与先前显影的微气相色谱系统集成,填充有乙烯。当操作时,将足够的乙烯气体吸附到预encyrator中。热脉冲的应用也成功地解吸了乙烯气体。试验分别以10ppm,5ppm和2.5ppm和400ppb的浓度为乙烯气体进行。该系统也用乙烯气体在三天内通过成熟的香蕉测试。由于其他成熟气体(例如,二氧化碳,氧,醇)和湿度,在色谱图中没有观察到干扰信号。使用该系统实现了25 ppb的检测限。开发的预融合器有几种应用,例如食品工业和环境监测。

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