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Optimization of Solar Thermo-chemical Hydrogen Production Process

机译:太阳能热化学氢气生产工艺优化

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Based on the integration of different systems and the comprehensive step utilization of energy, the system of hydrogen production by biomass gasification in supercritical water using concentrated solar energy has been coupled by using the combination of solar and biomass as an energy source. As a model compound of biomass, glucose was gasified in supercritical water at 25MPa and 873K, whether there is pre-heater water in the hydrogen production system was compared by the way of thermodynamic analysis. The results show that energy and exergy efficiency is high in the hydrogen production system with pre-heat water.
机译:基于不同系统的整合和能量的综合步骤利用,通过使用浓缩太阳能的超临界水中的生物质气化系统通过使用太阳能和生物质的组合作为能量来耦合。作为生物质的模型化合物,葡萄糖在25MPa和873k处在超临界水中气化,通过热力学分析的方式比较了氢气生产系统中的预热水。结果表明,具有预热水的氢气生产系统中的能量和高效效率高。

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