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首页> 外文期刊>Nanoscale >Feasibility of switchable dual function materials as a flexible technology for CO2 capture and utilisation and evidence of passive direct air capture
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Feasibility of switchable dual function materials as a flexible technology for CO2 capture and utilisation and evidence of passive direct air capture

机译:可切换双功能材料作为CO2捕集和利用的灵活技术的可行性和被动直接空气捕集的证据

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The feasibility of a Dual Function Material (DFM) with a versatile catalyst offering switchable chemical synthesis from carbon dioxide (CO2) was demonstrated for the first time, showing evidence of the ability of these DFMs to passively capture CO2 directly from the air as well. These DFMs open up possibilities in flexible chemical production from dilute sources of CO2, through a combination of CO2 adsorption and subsequent chemical transformation (methanation, reverse water gas shift or dry reforming of methane). Combinations of Ni Ru bimetallic catalyst with Na2O, K2O or CaO adsorbent were supported on CeO2–Al2O3 to develop flexible DFMs. The designed multicomponent materials were shown to reversibly adsorb CO2 between the 350 and 650 °C temperature range and were easily regenerated by an inert gas purge stream. The components of the flexible DFMs showed a high degree of interaction with each other, which evidently enhanced their CO2 capture performance ranging from 0.14 to 0.49 mol kg−1. It was shown that captured CO2 could be converted into useful products through either CO2 methanation, reverse water–gas shift (RWGS) or dry reforming of methane (DRM), which provides flexibility in terms of co-reactant (hydrogen vs. methane) and end product (synthetic natural gas, syngas or CO) by adjusting reaction conditions. The best DFM was the one containing CaO, producing 104 μmol of CH4 per kgDFM in CO2 methanation, 58 μmol of CO per kgDFM in RWGS and 338 μmol of CO per kgDFM in DRM.
机译:双功能材料的可行性(DFM)提供可切换的多功能催化剂化学合成的二氧化碳(CO2)首次展示,展示证据这些dfm被动地捕捉的能力直接从空气中二氧化碳。开放灵活的化学的可能性生产稀释来源的二氧化碳,通过二氧化碳吸附和后续的组合化学转换(甲烷化,相反水煤气转移或甲烷干重整)。倪俄文双金属催化剂的组合曹Na2O K2O或吸附剂被支持CeO2-Al2O3开发灵活的dfm。多组分材料显示出可逆350和650°C之间的吸附二氧化碳的温度范围和被惰性气体容易再生清除流。表现出高度的互动显然,这提高了二氧化碳捕获性能,从0.14到0.49摩尔公斤−1。结果表明:捕获二氧化碳可以转换通过二氧化碳为有用的产品甲烷化,逆向(RWGS)或水煤气转变甲烷干重整(DRM),它提供了灵活性的co-reactant(氢vs。甲烷)和最终产品(合成天然气,合成气或公司)通过调整反应条件。最好的DFM曹是包含,生产104μ的CH4 / kgDFM摩尔二氧化碳甲烷化,58μ摩尔每kgDFM RWGS和股份有限公司338μ摩尔公司kgDFM DRM。

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