Zander Nicole E, Gillan Margaret, Sweetser Daniel
United States Army Research Laboratory, Weapons and Materials Research Directorate, Aberdeen Proving Ground, Aberdeen, MD 21005, USA.
Materials (Basel). 2016 Mar 30;9(4):247. doi: 10.3390/ma9040247.
Water shortage is an immediate and serious threat to our world population. Inexpensive and scalable methods to clean freshwater and wastewater are in high demand. Nanofiber filtration membranes represent a next generation nonwoven filter media due to their unique properties. Polyethlyene terephthalate (PET) is often used in the packaging of water and other commonly used materials, leading to a large amount of plastic waste often with limited incentive for recycling (few value-added uses). Here, we present work in the generation of nanofiber liquid filtration membranes from PET plastic bottles and demonstrate their use in microfiltration. PET nanofiber membranes were formed via solution electrospinning with fiber diameters as low as 100 nm. Filtration efficiency was tested with latex beads with sizes ranging from 30 to 2000 nm. Greater than 99% of the beads as small as 500 nm were removed using gravity filtration. To reduce biofouling, the mats were functionalized with quaternary ammonium and biguanide biocides. The biguanide functionalized mats achieved 6 log reduction for both gram negative and gram positive bacteria.
水资源短缺对全球人口构成了直接且严重的威胁。人们对清洁淡水和废水的廉价且可扩展的方法有很高的需求。纳米纤维过滤膜因其独特性能而成为下一代非织造过滤介质。聚对苯二甲酸乙二酯(PET)常用于水和其他常用材料的包装,导致大量塑料废物,且回收利用的动力往往有限(增值用途少)。在此,我们展示了从PET塑料瓶制备纳米纤维液体过滤膜的工作,并证明了其在微滤中的应用。PET纳米纤维膜通过溶液静电纺丝形成,纤维直径低至100纳米。使用尺寸范围为30至2000纳米的乳胶珠测试过滤效率。通过重力过滤,大于99%的500纳米以下的珠子被去除。为减少生物污垢,这些垫子用季铵盐和双胍类杀菌剂进行了功能化处理。双胍功能化的垫子对革兰氏阴性菌和革兰氏阳性菌都实现了6个对数级的减少。