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The development of nanoporous membranes for separation of carbon dioxide at high temperatures

机译:用于高温分离二氧化碳的纳米多孔膜的开发

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Initial observations from permeation experiments are reported for a class of novel membranes which display potential in the area of high temperature (~900 K) gas separations. The existence of these membranes was first postulated from theoretical studies on transport of gases through ultra-thin (~5-25 nm), nanoporous silica. The experimental results presented here confirm these observations, as demonstrated by membranes produced with kinetic selectivities for carbon dioxideitrogen greater than 75:1 at 873 K.
机译:据报道,从渗透实验中初步观察到的一类新型膜在高温(〜900 K)气体分离区域中显示出潜力。这些膜的存在首先是根据关于气体通过超薄(〜5-25 nm)纳米多孔二氧化硅传输的理论研究推测的。此处提供的实验结果证实了这些观察结果,正如在873 K下以大于75:1的二氧化碳/氮气动力学选择性生产的膜所证明的那样。

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