会员注册 会员登录 主办单位:国家建筑材料工业局技术图书馆 加为收藏 设为主页
1151web_logo
专注建材行业知识大数据
首页 外文期刊 中文期刊 图书馆 建材智网
您所在的位置:首页>>论文报告
Exploring the potential of perovskite structured SrTiO3 ceramics nanoparticles for developing SrTiO3 ceramics-decorated advanced Super-Wettable and photocatalytic self-cleaning membrane and its applications
【文件类型】 【消费金额】3.9 【文章页数】13 【会员操作】  
【文章作者】Umair Baig,Abdul Waheed;Isam H. Aljundi
【文章摘要】      There is a huge potential in developing robust, highly stable, and covalently crosslinked ceramics-decorated membranes that can be efffciently used for the treatment of oil-contaminated water. Hence, the current work was focused on developing a photo-active strontium titanate (SrTiO3) perovskite ceramics decorated highly stable membrane with photocatalytic self-cleaning, superoleophobic underwater and superhydrophilic in air features. The SrTiO3 perovskite structured ceramics were decorated in the active layer of the membranes through interfacial polymerization on a polyvinylidene diffuoride (PVDF) ultraffltrationsupport. For the sake of photoactive SrTiO3 ceramics nanoparticles to take part in the interfacial polymerization, the SrTiO3 ceramics nanoparticles were functionalized with amino silane using 3-aminopropyltriethoxysilane yielding aminofunctionalize-SrTiO3(F-SrTiO3). Ethylenediamine (EDA) was used as an additional amine for ensuring the suitable cross-linking of the polyamide (PA) network where isophthaloyl chloride (IPC) was used as a crosslinker. The resultant F-SrTiO3/PA@PVDF membrane was thoroughly investigated through several membrane characterization techniques conffrming the existence of all the components in the membrane structure. When applied for separating the emulsiffed and surfactant stabilized oil from water, the F-SrTiO3/PA@PVDF membrane showed excellent separation efffciency reaching >99 % for an emulsion of 200 ppm with a permeance of 56 L m? 2 h? 1 bar? 1. Moreover, the membrane showed an underwater superoleophobic (θO, W = 159.9?) nature owing to the presence of amide linkages and superhydrophilic F-SrTiO3 nanoparticles. These features lowered the evidence of membrane fouling and the photocatalytic self-cleaning potential of F-SrTiO3 resulted in removing the foulants from the membrane surface with a ffux recovery of 95 % while keeping the separation efffciency intact. Hence, the current approach of covalently incorporating the photocatalytic, superhydrophilic F-SrTiO3 in the membrane active layer proved to be robust and can be readily scaled up and applied in real-life ffltration conditions.
【关 键 字】
【卷】【ISSUE】【ISSUEID】    【文章期份】2024    【发布日期】2025/5/13 10:02:17    点击率:0    打印    关闭
关于我们 公告信息 业务资费 广告合同 友情链接 购买阅读卡 在线订《水泥》
网络市场部:010-65761182 网络技术部:010-51164639  传真:010-65761182 Email:service@chinabmi.com
在线咨询:  
国家建筑材料工业局技术图书馆 京ICP备06011358号   京公网安备11010502024146