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一种交联型聚离子液体的合成及其对CO2的变压吸收分离 被引量:1
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作者 操洁瑛 李军 王宏涛 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2019年第3期338-343,共6页
针对目前聚离子液体存在的对CO2的吸收量低且吸收和解吸速率慢等问题,采用交联剂并分别结合不同干燥方法(冷冻干燥、超临界CO2干燥、普通干燥)合成了一种交联型季铵盐类聚离子液体,进而采用高压石英弹簧法测定其对CO2的吸收能力.研究结... 针对目前聚离子液体存在的对CO2的吸收量低且吸收和解吸速率慢等问题,采用交联剂并分别结合不同干燥方法(冷冻干燥、超临界CO2干燥、普通干燥)合成了一种交联型季铵盐类聚离子液体,进而采用高压石英弹簧法测定其对CO2的吸收能力.研究结果表明,采用冷冻干燥法制得的聚离子液体相对结晶度低,具有较高的CO2吸收量,在298.2K、0.21MPa下对CO2的吸收量最高达0.024g/g,而在5.0MPa下高达0.127g/g.在298.2K下5.0MPa的高压合成气(H2/CO/CO2)中对CO2的变压吸收分离结果显示,该聚离子液体具有性能稳定、吸收和解吸速率快及对CO2选择性高等优点. 展开更多
关键词 交联型聚离子液体 CO2吸收 吸收-解吸 变压吸收
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利用现场氮源的热处理
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作者 徐道新 《热处理工艺装备》 1991年第1期11-14,共4页
关键词 热处理 制氮 变压吸收 薄膜法
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Water Vapor Detection System Based on Scanning Spectra
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作者 Shicong ZHANG Qiang WANG +10 位作者 Yan ZHANG Fujun SONG Kun CHEN Guoqing CHOU Jun CHANG Pengpeng WANG Delong KONG Zongliang WANG Weijie WANG Yongning LIU Haiyong SONG 《Photonic Sensors》 SCIE EI CAS 2012年第1期71-76,共6页
Scanning the absorption spectral line of water vapor through wavelength around 1368.597nm is successfully used to measure the value of micro-moisture content. The synchronous superposition average of original signal a... Scanning the absorption spectral line of water vapor through wavelength around 1368.597nm is successfully used to measure the value of micro-moisture content. The synchronous superposition average of original signal algorithm based on labview is innovated and applied to detecting weak spectrum absorption signal instead of low pass filter. Two data processing methods are used to get the concentration of water vapor in ppm: one is a general formula method which has newly deduced a general formula to calculate the concentration of gas with temperature and beam intensity ratio when the pressure is equal to or greater than 1 atm; the other is engineering calibration method which is proved to have high resolution and accuracy with the fitted curve of beam intensity ratio and concentration in ppm when the temperature changes form 258K to 305K and the pressure ranges from 1 atm to 5 atm. 展开更多
关键词 Water-vapor detection scanning spectra detecting under high gas pressure near-infrared absorption
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