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Hydrogen Production by Supercritical Water Gasification of Biomass with Homogeneous and Heterogeneous Catalyst

机译:均相和均相催化剂超临界水气化生物质制氢

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Biomass gasification in supercritical water is a clean and efficient way to convert biomass to hydrogen-rich gaseous products. Appropriate catalyst can lower the reaction temperature to guarantee the technological and economic feasibility. This paper selects Ca(OH)2, Na2CO3, K2CO3, NaOH, KOH, LiOH, and ZnCl2as typical homogeneous catalysts and three kinds of Raney-Ni, dolomite, and olivine as typical heterogeneous catalysts. The catalyst effects are investigated in the process of biomass gasification in supercritical water with the temperature of 400°C, pressure of22∼24 MPa, and residence time of 20 min. The experimental results show that Raney-Ni has the best hydrogen selectivity and hydrogen yield. The mixture of NaOH with Raney-Ni was investigated in order to research the synergistic effect of different catalysts. The experimental results show that Raney-Ni and NaOH have a synergistic effect in the biomass gasification in supercritical water.
机译:在超临界水中进行生物质气化是一种清洁有效的方法,可将生物质转化为富氢气态产物。适当的催化剂可以降低反应温度,以保证技术和经济可行性。本文选择Ca(OH)2,Na2CO3,K2CO3,NaOH,KOH,LiOH和ZnCl2作为典型的均相催化剂,并选择Raney-Ni,白云石和橄榄石三种催化剂作为典型的非均相催化剂。在温度为400℃,压力为22〜24 MPa,停留时间为20 min的超临界水中生物质气化过程中,研究了催化剂的作用。实验结果表明,阮内镍具有最佳的氢气选择性和氢气产率。为了研究不同催化剂的协同作用,研究了NaOH与阮内镍的混合物。实验结果表明,阮内镍和氢氧化钠在超临界水中生物质气化中具有协同作用。

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