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The Effects of Carbon - to - Oxygen ratio upon Supercritical Water Reformation for Hydrogen Production

机译:碳 - 氧比对氢气生产超临界水重整的影响

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With the continually growing energy demands of today's society, finding innovative ways to produce renewable energy is increasingly important. One such process is the supercritical water reformation of hydrocarbons for hydrogen production. Supercritical water reformation is a versatile non-catalytic process that can utilize a wide variety of commonly available raw materials. Such raw materials include methanol, ethanol, glycerin, sucrose, diesel, and jet fuel. With such a diverse feedstock, determining which factors have a substantial impact on the supercritical water reformation is crucial. One such factor is the carbon-to-oxygen ratio of the feed material. To determine the effect of carbon-to-oxygen ratio, an experimental study was performed using isopropanol, propylene glycol, and glycerin solutions. The experimental study was conducted using a 0. 1 L Haynes Alloy 282 reactor at a constant pressure of 24. 13 MPa and a reactor space time of 45 seconds. The feed solution for each experiment contained an 8: 3 water-to-carbon ratio, and the effect of carbon-to-oxygen ratio was observed at 550, 600, and 650°C.
机译:随着当今社会的不断增长的能源需求,寻找产生可再生能源的创新方法越来越重要。一种这样的方法是用于氢生产的烃的超临界水重整。超临界水重整是一种通用的非催化过程,可以利用各种常用的原料。这种原料包括甲醇,乙醇,甘油,蔗糖,柴油和喷射燃料。利用这种多样化的原料,确定哪些因素对超临界水重构具有显着影响至关重要。一种这种因素是进料材料的碳 - 氧比。为了确定碳对氧比的影响,使用异丙醇,丙二醇和甘油溶液进行实验研究。使用0.1L Haynes合金282反应器在24.3MPa的恒定压力下进行实验研究,并为45秒的反应器空间时间。每个实验的进料溶液含有8:3水 - 碳比,并且在550,600和650℃下观察到碳 - 氧比的效果。

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