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首页> 外文期刊>Journal of Membrane Science & Technology >Controlled Dip-coating Times for Improving CO2 Selective of PI/NCCbased Supported Carbon Membrane
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Controlled Dip-coating Times for Improving CO2 Selective of PI/NCCbased Supported Carbon Membrane

机译:控制浸涂时间以提高PI / NCC基负载碳膜的CO2选择性

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摘要

Carbon membrane can be regarded as the future separation media in gas separation process due to its high gas separation performance, easy processability, and moderate energy requirement compared to conventional separation process. In this study, the fabrication of tubular carbon membrane prepared from PI blends with nanocrystalline cellulose (NCC) was investigated. The influence of dip-coating duration (15, 30, 45, and 60 min) towards the physicochemical properties and CO2/CH4 and O2/N2 separation was explored. The process of carbonization was conducted at 800°C with rate of heating at 3°C/min under argon gas flow (200 mL/min). Pure gas permeation tests were performed to investigate the prepared carbon membrane’s mechanism of transport at ambient temperature and a feed pressure of 8 bar. The carbon membrane with CO2/CH4 and O2/N2 selectivity of 68.23 ± 3.27 and 9.29 ± 2.54 and CO2 and O2 permeance of 213.56 ± 2.17 and 29.92 ± 1.44 GPU, respectively, were obtained when applying 45 min dip-coating.
机译:与传统的分离工艺相比,碳膜具有较高的气体分离性能,易加工性和适中的能源需求,因此可以认为是气体分离工艺中未来的分离介质。在这项研究中,研究了由PI共混物与纳米晶纤维素(NCC)制备的管状碳膜的制备。探索了浸涂时间(15、30、45和60分钟)对理化性质以及CO2 / CH4和O2 / N2分离的影响。碳化过程在氩气流(200mL / min)下以800℃以3℃/ min的加热速率进行。进行了纯气体渗透测试,以研究制备的碳膜在环境温度和8 bar进料压力下的传输机理。当进行45分钟浸涂时,获得的碳膜的CO2 / CH4和O2 / N2选择性分别为68.23±3.27和9.29±2.54,CO2和O2渗透率为213.56±2.17和29.92±1.44 GPU。

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