Tong Yujia, Miao Changing, Ding Wenlong, Hammond Quarcoo Fiona, Xiao Xiao, Ji Hongjun, Li Weixing, Ju Xiaohui
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 211816, China.
NJTU Membrane Application Institute Company Limited, Nanjing 211816, China.
Langmuir. 2023 Sep 19;39(37):13197-13211. doi: 10.1021/acs.langmuir.3c01627. Epub 2023 Sep 7.
The current methods of constructing modification strategies for hydrophilic membranes are time-consuming, complex in operation, and poor in universality, which limit their application on membranes. In this work, inspired by the adhesion properties and versatility of caffeic acid (CA) and -phenylenediamine (PPDA), a simple, rapid, and universal method was designed for the separation of oil-in-water emulsion by preparing a stable hydrophilic coating separation membrane. The preparation time of the membrane was shortened to 40 min. The developed PVDF-PCA/PPDA membrane showed superhydrophilic and underwater superoleophobic properties. When applied to petroleum ether-in-water emulsion, isooctane-in-water emulsion, and dodecane-in-water emulsion separation, the oil rejection was more than 99.0%. In the circulating separation of 10 g/L soybean oil-in-water emulsion, the oil rejection was more than 99.3%, and the highest flux was 1036 L·m·h. The prepared PVDF-PCA/PPDA membrane performed well in the separation test of oily wastewater. The proposed strategy is simple and rapid; it may become a universal method for preparing membranes with super strong antifouling properties against viscous oil and accelerate the research progress of membrane separation of oil-in-water emulsions.
目前构建亲水性膜改性策略的方法耗时、操作复杂且通用性差,这限制了它们在膜上的应用。在这项工作中,受咖啡酸(CA)和对苯二胺(PPDA)的粘附特性和多功能性启发,设计了一种简单、快速且通用的方法,通过制备稳定的亲水性涂层分离膜来分离水包油乳液。膜的制备时间缩短至40分钟。所制备的聚偏氟乙烯-PCA/PPDA膜表现出超亲水性和水下超疏油性。当应用于石油醚/水乳液、异辛烷/水乳液和十二烷/水乳液分离时,脱油率超过99.0%。在10 g/L大豆油/水乳液的循环分离中,脱油率超过99.3%,最高通量为1036 L·m⁻²·h⁻¹。所制备的聚偏氟乙烯-PCA/PPDA膜在含油废水分离测试中表现良好。所提出的策略简单快速;它可能成为制备对粘性油具有超强抗污染性能的膜的通用方法,并加速水包油乳液膜分离的研究进展。