High Michael, Patzschke Clemens F, Zheng Liya, Zeng Dewang, Xiao Rui, Fennell Paul S, Song Qilei
Department of Chemical Engineering, Imperial College London, LondonSW7 2AZ, United Kingdom.
School of Materials, Sun Yat-sen University, Guangzhou510275, China.
Energy Fuels. 2022 Sep 15;36(18):11062-11076. doi: 10.1021/acs.energyfuels.2c02409. Epub 2022 Aug 26.
Chemical-looping combustion (CLC) is a promising technology that utilizes metal oxides as oxygen carriers for the combustion of fossil fuels to CO and HO, with CO readily sequestrated after the condensation of steam. Thermally stable and reactive metal oxides are desirable as oxygen carrier materials for the CLC processes. Here, we report the performance of Cu-based mixed oxides derived from hydrotalcite (also known as layered double hydroxides) precursors as oxygen carriers for the combustion of solid fuels. Two types of CLC processes were demonstrated, including chemical looping oxygen uncoupling (CLOU) and gasification (iG-CLC) in the presence of steam. The Cu-based oxygen carriers showed high performance for the combustion of two solid fuels (a lignite and a bituminous coal), maintaining high thermal stability, fast reaction kinetics, and reversible oxygen release and storage over multiple redox cycles. Slight deactivation and sintering of the oxygen carrier occurred after redox cycles at an very high operation temperature of 985 °C. We expect that our material design strategy will inspire the development of better oxygen carrier materials for a variety of chemical looping processes for the clean conversion of fossil fuels with efficient CO capture.
化学链燃烧(CLC)是一项很有前景的技术,它利用金属氧化物作为氧载体,将化石燃料燃烧生成一氧化碳和水,水蒸气冷凝后一氧化碳易于封存。热稳定且具有反应活性的金属氧化物是化学链燃烧过程中理想的氧载体材料。在此,我们报告了源自水滑石(也称为层状双氢氧化物)前驱体的铜基混合氧化物作为固体燃料燃烧氧载体的性能。展示了两种类型的化学链燃烧过程,包括化学链氧解耦(CLOU)和在水蒸气存在下的气化(iG-CLC)。铜基氧载体对两种固体燃料(褐煤和烟煤)的燃烧表现出高性能,在多个氧化还原循环中保持高热稳定性、快速反应动力学以及可逆的氧释放和储存。在985℃的非常高的操作温度下进行氧化还原循环后,氧载体出现了轻微失活和烧结现象。我们期望我们的材料设计策略将推动开发出更好的氧载体材料,用于各种化学链过程,以实现化石燃料的清洁转化并高效捕集一氧化碳。