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Syngas production by chemical looping gasification of biomass with steam and GaO additive

机译:通过蒸汽和GaO添加剂对生物质进行化学循环气化来生产合成气

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In the present work chemical looping gasification (CLG) of biomass, with introduction of steam and CaO, was conducted in a fixed bed to produce syngas. The addition of steam facilitated both the reforming reaction and water gas shift reaction to produce more gaseous products, especially H-2. Depending on gas yield and gasification efficiency, the requirement of steam was sufficient for CLG at steam flow n = 0.6 r/min. It was also confirmed that CaO had a positive effect in gasification and the addition in the ratio of CaO/C = 1 was adequate for syngas production. Moreover, CaO mainly played a role as CO2 absorbent at low temperature but as catalyst above 700 degrees C. However, the catalysis of CaO received the major attention because of its availability for high syngas yield (1.367 m(3)/kg) and efficiency (carbon conversion efficiency was 89.28% and gasification efficiency was 88.81%) at 800 degrees C. CaO was found to retard the sintering and porosity reduction of Fe2O3, the oxygen carrier, by covering Fe2O3 and forming calcium ferrites during multiple redox cycles. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在目前的工作中,在固定床中进行生物质的化学循环气化(CLG),并引入蒸汽和CaO,以生产合成气。蒸汽的加入促进了重整反应和水煤气变换反应,以产生更多的气态产物,特别是H-2。根据气体产量和气化效率,在蒸汽流量n = 0.6 r / min时,CLG所需的蒸汽量足够。还证实CaO在气化中具有积极作用,并且以CaO / C = 1的比例添加对于合成气的生产是足够的。此外,CaO在低温下主要起着CO2吸收剂的作用,但在700摄氏度以上时起着催化剂的作用。然而,CaO的催化作用受到了广泛的关注,因为它具有高合成气收率(1.367 m(3)/ kg)和效率。在800℃下(碳转化效率为89.28%,气化效率为88.81%)。发现CaO通过在多个氧化还原循环中覆盖Fe 2 O 3并形成铁酸钙而阻碍了氧载体Fe 2 O 3的烧结和孔隙率降低。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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