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Reduction mechanism study on sorption enhanced chemical looping gasification of biomass waste rice husk for H-2 production over multi-functional NixCa1-xO particles

机译:减少机制研究生物质废稻壳的增强化学循环气化H-2在多功能NixCa1-XO颗粒中的生产

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The sorption enhanced chemical looping gasification (SECLG) of rice husk (RH) with NixCa1-xO particles was studied in this work. NixCa1-xO particles were prepared by the sol-gel method. The experimental results showed that the ratio of Ni/Ca in NixCa1-xO had a great effect on the SECLG of RH. NixCa1-xO in a Ni/Ca ratio of 1 exhibited the best catalytic activity for the production of H-2 and CO. The SECLG process could be interpreted by a sorption enhanced in situ reduction reaction mechanism, showing that Ni was the real active center for SECLG of RH to hydrogen. NiO was firstly reduced by CO released from SECLG of RH to Ni metal with a side product of CO2, and CO2 reacted with CaO to form CaCO3. These coupled reactions significantly enhanced the generation rate of metallic Ni, the real catalytic active center, which accelerated the reaction rate.
机译:在这项工作中,研究了用NixCa1-XO颗粒的稻壳(RH)的吸附增强化学环状气化(SECLG)。 通过溶胶 - 凝胶法制备NixCa1-XO颗粒。 实验结果表明,NIXCA1-XO中Ni / Ca的比例对RH的SECLG具有很大的效果。 Ni / Ca比为1的NixCa1-XO表现出最佳的H-2和CO的催化活性。SECLG方法可以通过原位还原反应机制的吸附来解释,表明NI是真正的活跃中心 对于rh的seclg至氢。 首先通过从Rh的Seclg释放到Ni金属的Co释放到Ni金属的Co 2,CO 2与CaO反应形成CaCO 3。 这些偶联反应显着提高了金属Ni,真正催化活性中心的产生率,其加速了反应速率。

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