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首页> 外文期刊>Journal of CO2 Utilization >A study of metals promoted CaO-based CO2 sorbents for high temperature application by combining experimental and DFT calculations
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A study of metals promoted CaO-based CO2 sorbents for high temperature application by combining experimental and DFT calculations

机译:通过组合实验和DFT计算,对金属的研究促进了高温施用的CaO基二氧化碳吸附剂

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The CaO-based sorbents are promising candidates for CO2 capture through calcium looping for high temperature applications, but have a problem of rapid deactivation over multiple carbonation/calcination cycles. Synthesizing metals promoted CaO-based sorbents is regarded as one of the most efficient method to overcome loss-incapacity problem. A clear understanding of underlying mechanisms, through which the metal-promoters influence initial sorbent properties and/or rejuvenate deactivated sorbents, can help rationalize the design. In this study, a comprehensive study on metals promoted sorbents was performed by combining experimental and DFT calculations. First, the sorption capacity and stability of various promoted sorbents prepared by a sol-gel auto-combustion route was investigated in fixed bed reactor. Except Na, sorbents promoted with Al, Mg, and Zr exhibit outstanding performance during long-term cycles. Next, by DFT calculations we explore the effect of metal-promoters on the chemical reactivity and resisting sintering of sorbents. Results showed that Al and Mg could slightly weaken the adsorption energy, but Zr and Na could enhance obviously the adsorption energy, especially for Zr, the adsorption energy as strong as 2.38 eV. The more adsorption energy is more favorable for the enhancement of carbonate extent. In addition, the strong bonding interaction between O atom from Ca4O4 and Al, Zr and Mg sites of promoted surface was observed, which inhibited the migration and growth of CaO nanoclusters.
机译:CAO基吸附剂是通过钙循环进行高温应用的CO2捕获的候选者,但在多种碳酸化/煅烧周期上具有快速停用的问题。合成金属促进CaO基吸附剂被认为是克服丧失丧失能力问题的最有效方法之一。清楚地了解潜在机制,金属促进剂影响初始吸附剂性能和/或恢复活化的吸附剂,可以帮助合理化设计。在这项研究中,通过组合实验和DFT计算来进行对金属的综合研究促进的吸附剂。首先,在固定床反应器中研究了通过溶胶 - 凝胶自燃路径制备的各种促进吸附剂的吸附能力和稳定性。除Na外,用Al,Mg和Zr促进的吸附剂在长期循环期间表现出出色的性能。接下来,通过DFT计算,我们探讨金属启动子对吸附剂的化学反应性和抗烧结烧结的影响。结果表明,Al和Mg可以略微削弱吸附能量,但Zr和Na可以显着增强吸附能量,特别是对于Zr,吸附能量为2.38eV。吸附能量越多,对碳酸盐的增强更有利。此外,观察到来自Ca4O4和Al,Zr和促进表面的Zr和Mg位点的O原子之间的强键合相互作用,其抑制了CaO纳米能器的迁移和生长。

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