Francis Lijo, Hilal Nidal
NYUAD Water Research Center, New York University, Abu Dhabi Campus, Abu Dhabi P.O. Box 129188, United Arab Emirates.
Nanomaterials (Basel). 2022 Dec 6;12(23):4331. doi: 10.3390/nano12234331.
In this investigation, the electrospraying of CNTs on an electrospun PVDF-Co-HFP membrane was carried out to fabricate robust membranes for the membrane distillation (MD) process. A CNT-modified PVDF-Co-HFP membrane was heat pressed and characterized for water contact angle, liquid entry pressure (LEP), pore size distribution, tensile strength, and surface morphology. A higher water contact angle, higher liquid entry pressure (LEP), and higher tensile strength were observed in the electrosprayed CNT-coated PVDF-Co-HFP membrane than in the pristine membrane. The MD process test was conducted at varying feed temperatures using a 3.5 wt. % simulated seawater feed solution. The CNT-modified membrane showed an enhancement in the temperature polarization coefficient (TPC) and water permeation flux up to 16% and 24.6%, respectively. Field-effect scanning electron microscopy (FESEM) images of the PVDF-Co-HFP and CNT-modified membranes were observed before and after the MD process. Energy dispersive spectroscopy (EDS) confirmed the presence of inorganic salt ions deposited on the membrane surface after the DCMD process. Permeate water quality and rejection of inorganic salt ions were quantitatively analyzed using ion chromatography (IC) and inductively coupled plasma-mass spectrometry (ICP-MS). The water permeation flux during the 24-h continuous DCMD operation remained constant with a >99.8% inorganic salt rejection.
在本研究中,通过在静电纺丝的聚偏氟乙烯-共-六氟丙烯(PVDF-Co-HFP)膜上进行碳纳米管(CNT)的电喷雾,制备用于膜蒸馏(MD)过程的坚固膜。对碳纳米管改性的PVDF-Co-HFP膜进行热压,并对其水接触角、液体进入压力(LEP)、孔径分布、拉伸强度和表面形态进行表征。与原始膜相比,在电喷雾碳纳米管涂层的PVDF-Co-HFP膜中观察到更高的水接触角、更高的液体进入压力(LEP)和更高的拉伸强度。使用3.5 wt.%的模拟海水进料溶液在不同的进料温度下进行MD过程测试。碳纳米管改性膜的温度极化系数(TPC)和水渗透通量分别提高了16%和24.6%。在MD过程前后观察了PVDF-Co-HFP膜和碳纳米管改性膜的场发射扫描电子显微镜(FESEM)图像。能量色散光谱(EDS)证实了在直接接触式膜蒸馏(DCMD)过程后膜表面存在无机盐离子沉积。使用离子色谱(IC)和电感耦合等离子体质谱(ICP-MS)对渗透水质量和无机盐离子截留率进行了定量分析。在24小时连续DCMD操作期间,水渗透通量保持恒定,无机盐截留率>99.8%。