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GDX-502 气相色谱法测定大气中非甲烷总烃量

GDX-502 气相色谱法测定大气中非甲烷总烃量

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产品名称:GDX-502 气相色谱法测定大气中非甲烷总烃量

产品型号:GDX-502

产品厂商:浩瀚色谱(山东)应用技术开发有限公司

简单介绍

气相色谱法测定大气中非甲烷总烃量,液化石油气,脂肪酸,二甲醚,甲酸,甲醇,芝麻香白酒,3-甲硫基丙醇,植物油,6号溶剂,室内空气,TVOC

GDX-502 气相色谱法测定大气中非甲烷总烃量的详细介绍

气相色谱法测定大气中非甲烷总烃量
气相色谱法测定大气中非甲烷总烃量 详细信息:

固定相:高分子小球

GDX-502,2m*3mm,2m*4mm,2m*1/8,60-80目

甲烷柱


总烃柱

2m*3mm,2m*4mm,2m*1/8,硅烷化玻璃微球


滕州市浩瀚色谱仪器技术服务有限公司,用直接进样差量气相色谱法测定非甲烷总烃(NMHC)量。实验研究了分析条件、气源和定量方式等对NMHC定量准确度的影响。综合考虑较低基线响应和较高灵敏度等,选择合适的氢气和空气流速,测得NMHC方法检出限为0.03 mg/m3(以碳计),该法可低浓度样品分析的准确度。实验结果表明,标准气中CH4和C3H8遵从碳数响应规律,其配比不会影响定量的准确性,可根据样品总烃和甲烷比例适当配制;对于低浓度样品,以空气为底气的总烃响应灵敏度低于氮气为底气的总烃响应灵敏度,采用以氮气为底气的标准气来定量空气中总烃的含量时,测定结果将产生较大偏差,甚可能产生负值,应该用以除烃空气为底气的标准气来定量空气样品;某些样品测定过程中,总烃不只出一个峰,需要调节相关条件再进行测定。

气相色谱法测定大气中非甲烷总烃量 图片:


Determination of total non-methane hydrocarbons in the atmosphere by gas chromatography
Determination of total non-methane hydrocarbons in the atmosphere by gas chromatography

Stationary phase: polymer pellet
GDX-502, 2m*3mm, 2m*4mm, 2m*1/8, 60-80 mesh
Methane column

Total hydrocarbon column
2m*3mm, 2m*4mm, 2m*1/8, silanized glass microspheres

Tengzhou Haohao Chromatography Instrument Technology Service Co., Ltd. used direct injection differential gas chromatography to determine the amount of non-methane total hydrocarbons (NMHC). The effects of analytical conditions, gas source and quantitative methods on the quantitative accuracy of NMHC were studied experimentally. Considering the lower baseline response and higher sensitivity, selecting the appropriate hydrogen and air flow rate, the detection limit of NMHC method is 0.03 mg/m3 (calculated as carbon), which can ensure the accuracy of low concentration sample analysis. The experimental results show that CH4 and C3H8 in the standard gas comply with the carbon number response law, and the ratio does not affect the accuracy of the quantification. It can be properly prepared according to the total hydrocarbon and methane ratio of the sample; for the low concentration sample, the total hydrocarbon with air as the base gas The response sensitivity is lower than the total hydrocarbon response sensitivity of nitrogen as the bottom gas. When the standard gas with nitrogen as the base gas is used to quantify the total hydrocarbon content in the air, the measurement results will have a large deviation, and may even produce a negative value, which should be used to remove hydrocarbons. Air is the standard gas for the bottom gas to quantify the air sample; in some samples, the total hydrocarbons not only have one peak, but the relevant conditions need to be adjusted before measurement.

Determination of Total Hydrocarbons in the Atmosphere by Gas Chromatography

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