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Concentration of mixed acid by electrodialysis for the intensification of absorption process in acrylic acid production
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作者 hanxiao du Lixin Xie +1 位作者 Jie Liu Shichang Xu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第8期10-18,共9页
The absorption process in acrylic acid production was water-intensive.The concentration of acrylic acid before distillation process was low,which induced to large amount of wastewater and enormous energy consumption.I... The absorption process in acrylic acid production was water-intensive.The concentration of acrylic acid before distillation process was low,which induced to large amount of wastewater and enormous energy consumption.In this work,a new method was proposed to concentrate the side stream of absorption column and thus increase the concentration in bottom product by electrodialysis.The influence of operating conditions on concentration rate and specific energy consumption were investigated by a laboratory-scale device.When the voltage drop was 1 V·cP^(-1)(1 cP=10^(-3) Pa·s),flow velocity was 3 cm·s^(-1) and the temperature was 35℃,the concentration rates of acrylic acid and acetic acid could be 203.3%and 156.6%in the continual-ED process.Based on the experimental data,the absorption process combined with ED was simulated,in which the diluted solution from ED process was used as spray water and the concentrated solution was feed back to the absorption column.The results shown that the flow rate of spray water was decreased by 37.1%,and the acrylic acid concentration at the bottom of the tower was increased by 4.56%.The ions exchange membranes before and after use 1200 h were tested by membrane surface morphology(scanning electron microscope),membrane chemical groups(infrared spectra),ion exchange capacity,and membrane area resistance,which indicated the membrane were stable in the acid system.This method provides new method for energy conservation and emission reduction in the traditional chemical industry. 展开更多
关键词 Acrylic acid production ELECTRODIALYSIS CONCENTRATION Membranes ABSORPTION Mixtures
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g-C_(3)N_(4)制备方法及其光催化性能提升途径的研究进展 被引量:2
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作者 杜含笑 季娟 +3 位作者 秦辰伟 张泽 李锋锋 沈毅 《过程工程学报》 CAS CSCD 北大核心 2022年第2期162-175,共14页
聚合物半导体g-C_(3)N_(4)因较窄带隙、稳定性高、成本低等特点而在污染物降解和清洁能源生产方面引起了广泛关注。但纯g-C_(3)N_(4)光催化剂电荷分离率低、电荷重组率高等缺点导致其光催化能力不理想,因此改善g-C_(3)N_(4)的光催化性... 聚合物半导体g-C_(3)N_(4)因较窄带隙、稳定性高、成本低等特点而在污染物降解和清洁能源生产方面引起了广泛关注。但纯g-C_(3)N_(4)光催化剂电荷分离率低、电荷重组率高等缺点导致其光催化能力不理想,因此改善g-C_(3)N_(4)的光催化性能是目前光催化领域的研究热点。通过构造异质结、元素掺杂等改性手段制备的g-C_(3)N_(4)基光催化剂增强了对可见光的吸收,光催化能力强,拥有较好的工业应用前景。本工作首先简单介绍了g-C_(3)N_(4)基光催化剂的研究现状,其次概述了其制备方法的研究现状并介绍了几种制备g-C_(3)N_(4)工艺及特点,说明了应用不同制备工艺时应注意的问题。此外对其光催化性能提升途径的机理进行阐述,并且指明了发展方向,最后进行总结和展望。在后续研究中,若能有效结合材料科学与环境科学的优势,开发结构稳定和光催化性能优异的g-C_(3)N_(4)基光催化复合材料对提高其实际价值具有重要意义。要点:(1)总结了g-C_(3)N_(4)基光催化剂制备方法的研究现状。(2)介绍了g-C_(3)N_(4)基光催化剂的光催化性能提升途径的现状和提升光催化性能的四种途径的机理,并指出了发展方向。(3)对g-C_(3)N_(4)基光催化剂所面临的挑战进行简要描述。 展开更多
关键词 g-C_(3)N_(4) 光催化 性能提升 制备方法
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