Transient analysis of solar pyrolysis and hydrogen yield via interband cascade laser absorption spectroscopy of methane, acetylene, ethylene, and ethane

Barathan Jeevaretanam, Mostafa Abuseada, Chuyu Wei, Nicolas Q. Minesi, Timothy S. Fisher, R. Mitchell Spearrin
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Abstract

A mid-infrared laser absorption sensing method has been developed to measure species concentrations of four hydrocarbons and gas temperature over a range of temperatures in mixture compositions relevant to the pyrolytic decomposition of natural gas. The four measured species (methane, acetylene, ethylene, and ethane) are the most abundant hydrocarbons during the pyrolysis of natural gas, and provide a means to monitor decomposition progress and hydrogen yield through molar balance. In this work, time-division multiplexed signals of three distributed-feedback interband cascade lasers are used to make simultaneous measurements of select C-H stretch rovibrational transitions of the target hydrocarbons in the 3.00–3.34 μm range. The sensor was validated over a range of temperatures and pressures (300–1000 K, 0.03–1 atm) at relevant mixture compositions, with correction methods developed to mitigate cross-species interference. The sensor was demonstrated on a solar-thermal pyrolysis reactor, where time-resolved measurements of species mole fractions were performed across a range of insolation conditions to capture the transient response of the reactor.

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利用带间级联激光吸收光谱分析甲烷、乙炔、乙烯和乙烷的太阳能热解和产氢
研究了一种中红外激光吸收传感方法,用于测量与天然气热解分解相关的混合物成分中四种碳氢化合物的种类浓度和气体温度。甲烷、乙炔、乙烯和乙烷这四种被测物质是天然气热解过程中最丰富的碳氢化合物,通过摩尔平衡提供了监测分解过程和产氢量的手段。在这项工作中,使用了三个分布反馈带间级联激光器的时分复用信号,同时测量了目标碳氢化合物在3.00-3.34 μm范围内的C-H伸缩振动跃迁。该传感器在相关混合物组成的温度和压力范围内(300-1000 K, 0.03-1 atm)进行了验证,并开发了校正方法以减轻跨物种干扰。该传感器在太阳能热裂解反应器上进行了演示,在一系列日照条件下进行了物种摩尔分数的时间分辨测量,以捕获反应器的瞬态响应。
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