'/> <![CDATA[CO<ce:inf loc='post'>2</ce:inf>-stable Ce<ce:inf loc='post'>0.9</ce:inf>Gd<ce:inf loc='post'>0.1</ce:inf>O<ce:inf loc='post'>2?δ</ce:inf>-perovskite dual phase oxygen separation membranes and the application in partial oxidation of methane to syngas]]>
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2-stable Ce0.9Gd0.1O2?δ-perovskite dual phase oxygen separation membranes and the application in partial oxidation of methane to syngas]]>

机译:“”帖子“> 0.1 O 2?Δ -pharovskite双相氧分离膜和甲烷部分氧化的应用] ]

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Graphical abstract Three type CGO-perovskite dual phase membranes were prepared to demonstrated their universal stability in CO2. Then one model material (Ce0.9Gd0.1O2?δ-Ba0.5Sr0.5Co0.8Fe0.2O3?δ) was chosen as a dual phase membrane reactor to be applied in partial oxidation of methane (POM) to syngas. At 900°C, the oxygen permeation flux of 14mL/mincm2, CH4 conversion of 96% and CO selectivity of 97% were achieved. And no performance degradation of the membrane reactor was observed during continuously 230h operation by using pure CH4 for POM at 900°C, which indicates that the CGO-perovskite dual phase membranes can be steadily operated in POM process with good performance. Display Omitted Highlights ? Universal stability in CO2 of CGO-perovskite dual phase membranes was demonstrated. ? Good performance of partial oxidation of methane was achieved in a membrane reactor. ? No performance degradation was observed with pure CH4 as reactant in long-term test. Abstract To improve the chemical stability of perovskite materials (alkaline earth metal containing) in CO2-containing atmosphere, based on the dual phase structure membranes, we prepared three CO2-stable CGO (Ce0.9Gd0.1O2?δ)-perovskite dual phase membranes, which takes the perovskite oxides as the electrons conducting phase and the fluorite CGO oxide (possesses inherently high chemical stability against CO2) as the oxygen ionic conductor. During the oxygen separation tests, all the membranes exhibit good reversibility when periodically changing the sweep gases from CO展开▼
机译:<![cdata [ 图形摘要 三种类型的CgO-Perovskite双相膜准备证明它们在CO 2 。然后一个模型材料(CE 0.9 GD 0.1 O 2?δ -ba 0.5 sr 0.5 CO < CE:INF LOC =“POST”> 0.8 FE 0.2 O 3?Δ)作为双相膜反应器,以将甲烷(POM)部分氧化成合成气。在900 °C,氧渗透通量为14 ml / min cm 2 ,ch 4 达到96%和97%的CO选择性的转换。通过使用纯CH 4 用于POM,在连续230 H操作期间观察到膜反应器的性能降解900 °C,这表明CGO-PEROVSKITE双相膜可以在POM过程中稳定地运行,具有良好的性能。 显示省略 突出显示 CO 2 证明了CGO-PEROVSKITE双相膜的通用稳定性。 良好的性能在膜反应器中达到甲烷的部分氧化。 < CE:PARA ID =“P0015”View =“全部”>没有用纯CH 4 作为长期试验中的反应物,观察到性能下降。 抽象 提高CO 2 - 致命的气氛,基于双相结构膜,我们制备了三个CO 2 -Stable CGO(CE 0.9 GD 0.1 < / ce:inf> o 2?δ) - 钙钛矿双相膜,其作为电子传导相和萤石cgo氧化物(固有高化学稳定性与CO 2 )作为氧离子导体。在氧气分离试验期间,当周期性地改变来自CO

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