维普中文期刊产品整合服务
34篇 您的检索式:作者名="Liangyin Chu"
    题名 作者 年代 出处 被引量
1Graphene-based membranes for molecular and ionic separations in aqueous environments显示文摘Graphene-based laminar materials open up to new applications for molecular and ionic separations in aqueous environments due to the atomic thickness, mechanical strength, chemical stability and other fantastic properties.Recent advances on controlling the structure and chemical functionality of graphene-based membranes can potentially lead to new classes of tools for desalination, dehydration, toxicant rejection, specific ionic separation and so on. The recent developments of graphene-based membranes prepared by using a concept to form interlayer space between graphene sheets and creating nanoscale or sub-nanoscale pores in a graphene lattice, together with their mass-transfer mechanisms and potential applications in aqueous environments are reviewed. A summary and outlook is further provided on the opportunities and challenges in this arising field.This article is expected to address the intricate details of mass transport through two distinct graphene-based membranes in aqueous environment and to optimize the fabrication of graphene-based membranes as a fascinating separation system for a wide range of applications.Zhuang Liu Wei Wang Xiaojie Ju Rui Xie Liangyin Chu 2017Chinese Journal of Chemical Engineering2017,25,11:8
2An easily recoverable thermo-sensitive polyelectrolyte as draw agent for forward osmosis process显示文摘As a potential solution to the crises of energy and resources, forward osmosis(FO) has been limited by the development of draw agents. An ideal draw agent should be able to generate high osmotic pressure and can be easily recovered. In this study, a thermo-sensitive polyelectrolyte of poly(N-isopropylacrylamide-co-acrylic acid)(PNA)is developed as an efficient draw agent, and two easy and simple methods are proposed to effectively recover the polyelectrolytes. After adjusting the pH value of polyelectrolyte solutions to around 6.0, the polyelectrolyte can generate relatively high osmotic pressure, and induce average water fluxes of 2.09 and 2.95 L·m^(-2)·h^(-1) during12 h FO processes when the polyelectrolyte concentrations are 0.20 and 0.38 g·ml^(-1) respectively. After acidifying and heating to 70 °C, the PNA-10 polyelectrolyte can aggregate together because of hydrophobic association and separate from water, so it can be easily recovered by either simple centrifugation or gravitational sedimentation. The recovery ratios of PNA-10 polyelectrolyte in both methods are as high as 89%, and the recovered polyelectrolytes can be reused with almost the same FO performance as fresh ones. The results in this study provide valuable guidance for designing efficient and easily recoverable draw agents for FO processes.Yanni Wang Hairong Yu Rui Xie Kuangmin Zhao Xiaojie Ju Wei Wang Zhuang Liu Liangyin Chu 2016Chinese Journal of Chemical Engineering2016,24,1:4
3Controllable microfluidic strategies for fabricating microparticles using emulsions as templates显示文摘Maojie Zhang Wei Wang Rui Xie Xiaojie Ju Zhuang Liu Lu Jiang Qianming Chen Liangyin Chu 2016Particuology2016,14,1:4
4Red-blood-cell-shaped chitosan microparticles prepared by electrospraying显示文摘Xiaojie Ju Xiaoxue Wang Zhuang Liu Rui Xie Wei Wang Liangyin Chu 2017Particuology2017,15,1:2
5Research on the motion of solid particles in hydroclone显示文摘Chu Liangyin 1993Separation Science and Technology1993,28,4:1
6Preparation of submicrometer - sized monodispersed thermoresponsive core shell hydrogel microspheres 显示文摘Xiao Xincai Chu Liangyin Chert Wenmei 2004Langmuir2004,20,:1
7Preparation of micron - sized monodispersed thermoresponsive core - shell microcapsules显示文摘CHU LIANGYIN SANGHOON PARK TAKEO YAMAGUCHI 2002Langmuir2002,18,:1
8Preparation of submicrometer-sized monodispersed thermoresponsive core-shell hydrogel microspheres 显示文摘Xiao Xincai Chu Liangyin Chen Wenmei Shu Wang Xie Rui 2004Langmuir2004,20,:1
9Effect of geometric and operating parameters and feed characters on the motion of solid particles in hydrocyclones显示文摘Chu Liangyin Chen Wenmei Lee Xiaozhong 2002Separation and Purification Technology2002,26,3:1
10Enhanccment of hydrocyclone separation performance by eliminating the air core 显示文摘Chu Liangyin Yu Wei Wang Guangjin 2004Chemical Engineering and Processing2004,43,:1
11Enhancement of hydrocyclone separation performance by eliminating the air core显示文摘Chu Liangyin Yu Wei Wang Guangjin Zhou Xiantao Chen Wenmei Dai Guangqing 0,,:1
12Dual thermoand PH- sensitive poly(N-isopropylaerylamide-eo-acrylie acid) hydrogels with rapid response behaviors显示文摘Zhang Jie Chu Liangyin Li Yuanke 2007Polymer2007,48,6:1
13显示文摘Chu Liangyin Chen Wenmei Lee Xiaozhong 2000Separation and Purification Technology2000,21,:1
14Study of SPG membrane emulsification processes for the preparation of monodisperse core-shell microcapsules显示文摘CHU Liangyin XIE Rui ZHU Jiahua 2003J Colloid Interf Sci2003,265,1:1
15Preparation of micron-sized monodispersed thermoresponsive core-shell microcapsules显示文摘CHU Liangyin Park S H Yamaguchi T 2002Langmuir2002,18,:1
16Surfacemodification of ceramic-supported polyethersulfone membranesby interfacial polymerization for reduced membranefouling显示文摘CHU Liangyin WANG Shu CHEN Wenmei 0,,19:1
17Study on the flow field inside the microfiltration separator with rotary tubular membrane显示文摘Yang Liu Chu Liangyin Chen Wenmei 2006Separation Science and Technology2006,41,:1
18Enhance- ment of hydrocyclone separation performance by elim- inating the air core显示文摘CHU Liangyin YU Wei WANG Guangjin 2004Chemical Engineering and Processing: Process Intensification2004,43,12:1
19Expe- rimental investigation of the motion trajectory of solid particles inside the hydrocyclone by a Lagrange method 显示文摘Wang Zhibin Chu Liangyin Chen Wenmei 2008Chemical Engineering Journal2008,138,123:1
20Research on the motion of solid particles in a hydrocyclone显示文摘Chu Liangyin Chen Wenmei 1993Separation Science and Technology1993,28,10:1
返回顶部 每页显示:
共2页 首页 上一页 第1页 下一页 末页 /2 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费