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Hydrogen production from chemical looping steam reforming of glycerol by Ni-based oxygen carrier in a fixed-bed reactor

机译:固定床反应器中镍基氧气载体对甘油进行化学循环蒸汽重整制氢

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Hydrogen production from chemical looping steam reforming (CLSR) of glycerol was studied by Ni-based oxygen carrier in a fixed-bed reactor. For the fixed-bed reactor configuration, solid Ni-based oxygen carrier is stationary and alternatively exposed to reducing and oxidizing conditions by periodically switching the feed gases. The Ni-based oxygen carrier was prepared by a liquid-state co-precipitation method with rising pH technique and the characterization was performed by X-ray powder diffraction (XRD), scanning electron microscope (SEM), transmission electron microscope (TEM) and N-2 adsorption-desorption. Gaseous products and temperature variety during CLSR process by Ni-based oxygen carrier in a fixed-bed reactor were measured, and the thermodynamic equilibrium calculation was also carried out. The results showed that the Ni-based oxygen carrier synthesized has a dual function and can efficiently convert glycerol and steam to H-2 by redox reactions. The coexisting reactions of glycerol oxidization (or NiO reduction) and steam reforming occurred before the steady stage of hydrogen production in the fuel feed step, and the conversion of NiO to Ni was obtained. Alternating reduction and oxidation reactions enabled Ni-based oxygen carrier to produce H-2 with a concentration of 85% of the equilibrium value at 600 degrees C, and glycerol conversion was up to 99%. The increase of temperature related to the exothermic reactions by Ni-based oxygen carrier in CLSR process was observed in redox cycles. (C) 2015 Elsevier B.V. All rights reserved.
机译:在固定床反应器中,通过镍基氧气载体研究了甘油的化学循环蒸汽重整(CLSR)制氢。对于固定床反应器配置,固态的镍基氧气载体是固定的,或者通过定期切换进料气来替代地暴露于还原和氧化条件。通过液相共沉淀法和升高pH的技术制备Ni基氧载体,并通过X射线粉末衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM)和N-2吸附-解吸。测量了固定床反应器中镍基氧载体在CLSR过程中的气态产物和温度变化,并进行了热力学平衡计算。结果表明,合成的Ni基氧载体具有双重功能,可以通过氧化还原反应有效地将甘油和蒸汽转化为H-2。在燃料进料步骤中,在产氢的稳定阶段之前,发生了甘油氧化(或NiO还原)和蒸汽重整的共存反应,并获得了NiO向Ni的转化。交替的还原反应和氧化反应使Ni基氧载体能够生产H-2,其浓度为600摄氏度时平衡值的85%,甘油转化率高达99%。在氧化还原循环中,观察到了CLSR过程中与镍基氧载体的放热反应有关的温度升高。 (C)2015 Elsevier B.V.保留所有权利。

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