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Minimum ignition energy for the CH_4/CO_2/O_2 system at low initial temperature

机译:初始温度低时,CH_4 / CO_2 / O_2系统的最小点火能量

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In this paper, the minimum ignition energy (MIE) for methane in an atmosphere of CO2/O-2 is measured at 0.1-0.7 MPa and 183-273 K using a gas explosion experimental device that is able to withstand a temperature as low as 113 K. Effects of initial temperature (T-0) and initial pressure (P-0) on MIE are studied via experiment and a simple theoretical analysis. Results indicate that in our experimental setup, the sensitive conditions of MIE are an equivalence ratio of 1 and an electrode gap of 1 mm. Under low initial temperature, the trends in MIE with respect to initial pressure and temperature in an atmosphere of CO2/O-2 are similar to those in an atmosphere of N-2/O-2. With an increase in initial pressure and temperature, MIE gradually decreases. MIE has a linear correlation with the reciprocal of the square of the initial pressure and the reciprocal of the initial temperature. At low initial temperature, P-0 has a large impact on MIE, whereas at low initial pressure, MIE is more sensitive to initial temperature. At the same initial temperature and pressure, MIE in an atmosphere of CO2/O-2 is about 1.2 times larger than that in an atmosphere of N-2/O-2 atmosphere. CO2 is more dilute than N-2 in accordance with large heat capacities and small thermal conductivities.
机译:在本文中,使用能够承受温度低至10,000瓦斯的气体爆炸实验装置,在0.1 / 0.7 MPa和183-273 K的条件下,测量了CO2 / O-2气氛中甲烷的最小点火能量(MIE)。 113 K.通过实验和简单的理论分析研究了初始温度(T-0)和初始压力(P-0)对MIE的影响。结果表明,在我们的实验装置中,MIE的敏感条件是当量比为1,电极间隙为1 mm。在低初始温度下,CO2 / O-2气氛中MIE相对于初始压力和温度的趋势与N-2 / O-2气氛中的相似。随着初始压力和温度的升高,MIE逐渐降低。 MIE与初始压力的平方的倒数和初始温度的倒数具有线性关系。在低初始温度下,P-0对MIE影响很大,而在低初始压力下,MIE对初始温度更敏感。在相同的初始温度和压力下,CO2 / O-2气氛下的MIE约为N-2 / O-2气氛下的MIE的1.2倍。根据大的热容和小的热导率,CO2比N-2更稀。

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