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首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Experimental flash pyrolysis of high density polyethylene under hybrid propulsion conditions
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Experimental flash pyrolysis of high density polyethylene under hybrid propulsion conditions

机译:混合推进条件下高密度聚乙烯的实验闪速热解

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摘要

The inert and oxidative flash pyrolysis of high density poly-ethylene (HDPE) is studied up to 20,000 K/s, under pressure up to 3.0 MPa and at temperature ranging from 1000 K to 1500K. These conditions are considered to represent those waited onboard a hybrid rocket engine using HDPE as solid fuel. Recycling applications may also find some interest. The pyrolysis products are quantified by Gas Chromatograph, Flame lonisation Detector and Mass Spectrometer to determine the effects of each physical parameter on the HDPE decomposition. The classical products distribution diene-alkene-alkane for each carbon atoms number is shown to be modified at such high temperature because of the pyrolysis of primary products. The pressure effect, which is generally neglected in HDPE pyrolysis studies found in open literature, is proved to be a major factor (up to one order of magnitude on the ethylene mass fraction). The heating rate presents noticeable consequences on the pyrolysis products distribution with a larger formation of light species while heavier ones are favoured under oxidative pyrolysis conditions. The experimental data should serve in the future to improve the accuracy of kinetic mechanisms for later use in numerical computing and to serve in related combustion studies for propulsive applications.
机译:研究了高密度聚乙烯(HDPE)的惰性和氧化闪速热解,在压力高达3.0 MPa和温度范围为1000 K至1500K的情况下,速度高达20,000 K / s。这些条件被认为代表了在使用HDPE作为固体燃料的混合动力火箭发动机上等待的条件。回收应用程序也可能会引起人们的兴趣。通过气相色谱仪,火焰电离检测器和质谱仪对热解产物进行定量,以确定每种物理参数对HDPE分解的影响。由于初级产物的热解,每个碳原子数的经典产物分布二烯-烯烃-烷烃在如此高的温度下显示出被改性。在公开文献中发现的HDPE热解研究中通常忽略的压力效应被证明是一个主要因素(乙烯质量分数高达一个数量级)。加热速率对热解产物的分布具有明显的影响,形成较大的轻质物质,而在氧化热解条件下较重的轻质物质受到青睐。实验数据将在将来用于提高动力学机理的准确性,以供以后在数值计算中使用,并用于推进应用的相关燃烧研究中。

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