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Development of robust CaO-based sorbents from blast furnace slag for calcium looping CO2 capture

机译:从高炉渣中开发强大的CaO基吸附剂,钙循环CO2捕获

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CaO-based calcium looping materials have received great interest for their use in thermochemical CO2 capture and energy storage, as well as CO2-related energy conversion processes. In this paper, the development of robust CaO-based CO2 sorbents using waste blast furnace slag (BFS) as a sustainable and environmentally benign feedstock is reported. Calcium and magnesium in the BFS can be facilely acquired through an acid extraction process, and appear in the form of CaO and MgO, which serve as a CO2 carrier and structural stabiliser, respectively, in the prepared CO2 sorbents. The BFS-derived sorbent prepared in this study exhibited a superior CO2 capture capacity of 0.37 g(co2)/g(sorbent) with an average cyclic deactivation rate as low as 2.3%, representing a balanced performance between CO2 uptake and cyclic stability as compared to most other waste-derived, CaO-based CO2 sorbents. This study demonstrated that CaO-stabiliser interaction largely determines the CO2 capture performance of CaO-based sorbents, and the Ca/Si ratio in the BFS-derived sorbent should be effectively controlled to allow the material to capture CO2 at a high performance.
机译:CaO为基础的钙循环材料对其在热化学CO2捕获和能量存储以及CO2相关的能量转换过程中获得了极大的兴趣。本文报道了使用废水炉渣(BFS)作为可持续和环境良性原料的鲁棒CaO基二氧化合物的发展。通过酸提取过程可以易于获得BFS中的钙和镁,并且以CaO和MgO的形式出现,其作为CO 2载体和结构稳定剂,在制备的CO 2吸附剂中。本研究制备的BFS衍生的吸附剂表现出0.37g(CO2)/ g(吸附剂)的优异的CO 2捕获容量,平均循环去激活速率低至2.3%,而是相比,CO2摄取和循环稳定性之间的平衡性能到大多数其他废物衍生的CaO基二氧化碳吸附剂。该研究表明,CaO-稳定剂相互作用在很大程度上决定了CaO基吸附剂的CO 2捕获性能,并且应该有效地控制BFS衍生的吸附剂中的CA / Si比以使材料以高性能捕获CO 2。

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