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Screening of Metal Oxides to Promote CO_2 Adsorption Performance over Polyethyleneimine Incorporated Solid Adsorbents

机译:筛选金属氧化物以促进聚乙烯亚胺掺入的CO_2吸附性能的固体吸附剂

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Amine-modified solid sorbents have attracted extensive interests in post-combustion carbon capture for power plants. Among various amines, polyethyleneiemine (PEI) is likely to be the most effective and promising candidate. However, previous studies have mainly focused on examining various supports to increase PEI loading and then enhance CO_2 adsorption capacity. In this study, one rare earth element (Ce) and 6 first-row transition metals (from V to Cu) in the oxidation stales impregnated on PEI incorporated γ-AI_2O_3 were prepared and investigated as potential catalyst/promotor for base-catalyzed reaction. Thermodynamic analysis, including isothermal and quasi-static CO_2 adsorption tests, were implemented to evaluate the performances amongst the 7 metal oxides. The results showed that MnO_2, CeO_2 and Fe_2O_3 showed a better performance in isothermal CO_2 adsorption at 75°C. Upon quasi-static tests, the results also indicates that the peak adsorption temperatures (T_(peak. a)) of V_2O_5 and Cr_2O_3 shifted to high temperature region, whilst opposite behavior of MnO_2 was observed. In preliminary study, density functional theory (DFT) was also adopted to assist the screening of metal oxide in terms of bond length and adsorption energies.
机译:胺改性的固体吸附剂在发电厂的燃烧后碳捕获中引起了广泛的利益。在各种胺中,聚乙烯(PEI)可能是最有效和最有希望的候选者。然而,以前的研究主要集中在检查各种支持者以增加PEI负荷,然后提高CO_2吸附能力。在该研究中,制备浸渍在PEI的氧化术中的一种稀土元素(Ce)和6个一排转变金属(从V至Cu),并制备γ-AI_2O_3,并作为潜在的催化剂/促进剂进行碱催化反应。实施热力学分析,包括等温和准静态CO_2吸附试验,以评估7金属氧化物中的性能。结果表明,MNO_2,CEO_2和FE_2O_3在75℃下在等温CO_2吸附中表现出更好的性能。在准静态试验时,结果还表明V_2O_5和CR_2O_3的峰吸收温度(T_(峰值A))移位到高温区域,而观察到MNO_2的相反行为。在初步研究中,还采用密度函数理论(DFT)来协助粘合长度和吸附能量的金属氧化物。

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