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A research on determination of explosive gases utilizing cataluminescence sensor array

机译:催化发光传感器阵列测定爆炸性气体的研究

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摘要

In this paper, we propose a model of a sensor array system, which consists of three cataluminescence sensors based on nanosized SrCO3, gamma-Al2O3 and BaCO3 as catalysts, for quantitative analysis of the explosive gases of propane, n-butane and iso-butane in a mixture. Six linear regression equations of the cataluntinescence intensity vs. the gas concentrations in the range 2000-10000 ppm were established from the sensor array system at two working temperatures, as the explosive gases show different sensitivity to the three sensors. The least squares method was employed for solving the simultaneous equations and quantifying the concentrations of the three components. The detection limits (3 sigma) of propane, n-butane and iso-butane on SrCO3, gamma-Al2O3 and BaCO3 sensors are 50, 40 and 20 ppm, 80, 60 and 40 ppm, and 20, 10 and 5 ppm, respectively. The concentrations of two artificial samples containing the tertiary mixture were analysed with satisfactory results. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:在本文中,我们提出了一种传感器阵列系统的模型,该模型由三个基于纳米级SrCO3,γ-Al2O3和BaCO3作为催化剂的催化发光传感器组成,用于定量分析丙烷,正丁烷和异丁烷的爆炸性气体。混合在一起。在两个工作温度下,由于爆炸性气体对三个传感器的灵敏度不同,因此从传感器阵列系统建立了Cataluntinescence强度相对于2000-10000 ppm范围内气体浓度的六个线性回归方程。最小二乘法用于求解联立方程并定量这三种成分的浓度。丙烷,正丁烷和异丁烷在SrCO3,γ-Al2O3和BaCO3传感器上的检出限(3 sigma)分别为50、40和20 ppm,80、60和40 ppm,20、10和5 ppm 。分析了两个含有三级混合物的人工样品的浓度,结果令人满意。版权所有(c)2005 John Wiley&Sons,Ltd.

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