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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Parameters optimization of hydrogen production from glucose gasified in supercritical water by equivalent cumulative exergy analysis
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Parameters optimization of hydrogen production from glucose gasified in supercritical water by equivalent cumulative exergy analysis

机译:用等效累积能值分析法优化超临界水中气化葡萄糖制氢的参数

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摘要

With the application of cumulative exergy theory based on life cycle analysis and the consideration of environmental impacts of emissions released from the production process, equivalent cumulative exergy analysis is performed for an experimental hydrogen production system where glucose is gasified in supercritical water. The unilateral influence on equivalent cumulative exergy from various factors such as temperature, pressure, concentration of solution, resident time and inner diameter of a reaction tube is analyzed first. In addition, multifactor optimization is conducted using an orthogonal table in which three complicated influence factors including concentration of solution, resident time and inner diameter of a reaction tube are considered. Optimal parameters are obtained to maximize the cumulative degree of perfection, and the results are in general consistent with the experimental results.
机译:运用基于生命周期分析的累积能值理论并考虑生产过程中排放物对环境的影响,对在超临界水中将葡萄糖气化的实验制氢系统进行了等效的累积能值分析。首先分析温度,压力,溶液浓度,停留时间和反应管内径等各种因素对等效累积火用的单方面影响。另外,使用正交表进行多因素优化,其中考虑了溶液浓度,停留时间和反应管内径三个复杂的影响因素。获得最佳参数以最大化累积的完美程度,并且结果通常与实验结果一致。

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