Arumugham Thanigaivelan, Kaleekkal Noel Jacob, Rana Dipak, Sathiyanarayanan Kulathu Iyer
Department of Chemistry, School of Advanced Sciences, Vellore Institute of Technology (VIT) Vellore Tamil Nadu India
Membrane Separation Group, Department of Chemical Engineering, National Institute of Technology Calicut (NITC) Kerala India.
RSC Adv. 2019 Dec 16;9(71):41462-41474. doi: 10.1039/c9ra08945d. eCollection 2019 Dec 13.
In this research work, novel perfluorooctanoic acid-modified melamine (PFOM) was synthesized as a hydrophobic filler using a facile one-pot synthesis. PFOM incorporating polyvinylidene fluoride (PVDF) solution was cast on a cellulose sheet to prepare a dual-layered membrane employing the phase-inversion technique for direct contact membrane distillation (DCMD) application. The influence of PFOM to tailor the dual-layered membrane performance was then investigated. The long perfluoro chain in PFOM hydrophobic fillers increased the surface roughness of the membranes due to its random overlapping with PVDF backbone, and these membranes exhibited a higher water contact angle value. The increase in pore size and membrane porosity did not significantly influence the liquid entry pressure of water (LEPw). The microporous membranes displayed good mechanical strength for use in the test setup. Pure water permeation was the highest (6.9 kg m h) for membrane (M1) with 1 wt% of PFOM when tested with a simulated sea-water solution (3.5% w/v NaCl) in the direct contact distillation mode. These membranes also achieved the theoretical salt-rejection of 99.9%, thus confirming the potential of these membranes to be investigated for large scale membrane distillation (MD) applications like desalination of seawater.
在本研究工作中,采用简便的一锅法合成了新型全氟辛酸改性三聚氰胺(PFOM)作为疏水填料。将含有聚偏氟乙烯(PVDF)溶液的PFOM浇铸在纤维素片材上,采用相转化技术制备双层膜,用于直接接触膜蒸馏(DCMD)应用。然后研究了PFOM对调整双层膜性能的影响。PFOM疏水填料中的长全氟链由于与PVDF主链随机重叠,增加了膜的表面粗糙度,这些膜表现出更高的水接触角值。孔径和膜孔隙率的增加对水的液体进入压力(LEPw)没有显著影响。微孔膜在测试装置中显示出良好的机械强度。当在直接接触蒸馏模式下用模拟海水溶液(3.5% w/v NaCl)测试时,含1 wt% PFOM的膜(M1)的纯水通量最高(6.9 kg m⁻² h⁻¹)。这些膜还实现了99.9%的理论脱盐率,从而证实了这些膜在大规模膜蒸馏(MD)应用(如海水淡化)中进行研究的潜力。