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Enhanced CO2 sorption performance of CaO/Ca3Al2O6 sorbents and its sintering-resistance mechanism

机译:CaO / Ca3Al2O6吸附剂对CO2的吸附性能增强及其抗烧结性机理

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CaO-based CO2 sorbents play a significant role in sorption enhanced methane steam reforming process for hydrogen production and CO2 emission reduction. However, the sorbents suffer from decreasing CO2 sorption capacity and stability due to the sintering of CaO grains. In this study, we modified CaO sorbents by incorporating Al to obtain CaO/Ca3Al2O6 sorbents via a modified sol-gel method. CO2 sorption evaluation shows that the relative quantity of CaO to Al2O3 plays an overwhelming role in the CO2 sorption capacity and stability of the CaO/Ca3Al2O6 sorbents. Superior CO2 sorption ratio (51.92% for sorbent C8A2 at 500 degrees C) is achieved, which is 5 times higher than that of the as-synthesized pure CaO sorbent. The high CO2 sorption ratio is due to the existence of inert Ca3Al2O6, which decreases the diffusion resistance of CO2 through product layer during the carbonation reaction. Meanwhile, the superior CO2 cyclic sorption stability is ascribed to the small original surface free energy of the as-synthesized sorbents. (C) 2017 Elsevier Ltd. All rights reserved.
机译:CaO基的CO2吸附剂在吸附增强的甲烷蒸汽重整过程中(用于制氢和减少CO2排放)起着重要作用。然而,由于CaO晶粒的烧结,吸附剂的CO 2吸附能力和稳定性下降。在这项研究中,我们通过掺入Al来改性CaO吸附剂,从而通过改进的溶胶-凝胶法获得CaO / Ca3Al2O6吸附剂。 CO2吸附评估表明,CaO与Al2O3的相对量在CaO / Ca3Al2O6吸附剂的CO2吸附能力和稳定性中起着压倒性的作用。实现了卓越的CO2吸附率(在500摄氏度下,吸附剂C8A2的吸附率为51.92%),是合成的纯CaO吸附剂的5倍。高的CO2吸附率是由于存在惰性的Ca3Al2O6,从而降低了碳酸化反应过程中CO2通过产品层的扩散阻力。同时,优异的CO 2循环吸附稳定性归因于所合成吸附剂的较小的原始表面自由能。 (C)2017 Elsevier Ltd.保留所有权利。

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