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基于纳米纤维的金属有机骨架用于直接接触式膜蒸馏脱盐。

Metal-Organic Frameworks Supported on Nanofiber for Desalination by Direct Contact Membrane Distillation.

机构信息

Industrial Membrane Research Institute, Department of Chemical and Biochemical Engineering , University of Ottawa , 161 Louis Pasteur , Ottawa , Ontario K1N 6N5 , Canada.

出版信息

ACS Appl Mater Interfaces. 2018 Apr 4;10(13):11251-11260. doi: 10.1021/acsami.8b01371. Epub 2018 Mar 22.

Abstract

Among other applications, metal-organic frameworks (MOFs) are slowly gaining grounds as fillers for desalination composite membranes. In this study, superhydrophobic poly(vinylidene fluoride) nanofibrous membranes were fabricated with MOF (iron 1,3,5-benzenetricarboxylate) loading of up to 5 wt % via electrospinning on a nonwoven substrate. To improve the attachment of nanofibers onto the substrate, a substrate pretreatment method called "solvent basing" was employed. The iron content in the nanofiber, measured by energy-dispersive X-ray spectroscopy, increased proportionally with the increase of the MOF concentration in the spinning dope, indicating a uniform distribution of MOF in the nanofiber. The water contact angle increased up to 138.06 ± 2.18° upon the incorporation of 5 wt % MOF, and a liquid entry pressure of 82.73 kPa could be maintained, making the membrane useful for direct contact membrane distillation experiments. The membrane was stable for the entire operating period of 5 h, exhibiting 2.87 kg/m·h of water vapor flux and 99.99% NaCl (35 g/L) rejection when the feed and permeate temperature were 48 and 16 °C, respectively. Immobilization of MOF on nanofibers with the enhanced attachment was proven by inductively coupled mass spectrometry analysis, by which no Fe could be found in the permeate to the detection limit of ppt.

摘要

在其他应用中,金属有机骨架(MOF)作为脱盐复合膜的填充剂正在慢慢得到应用。在这项研究中,通过在无纺基底上进行静电纺丝,制备了负载高达 5wt%MOF(铁 1,3,5-均苯三甲酸酯)的超疏水聚偏氟乙烯纳米纤维膜。为了提高纳米纤维对基底的附着性,采用了一种称为“溶剂基底”的基底预处理方法。通过能谱分析测量纳米纤维中的铁含量,发现其随纺丝液中 MOF 浓度的增加而呈比例增加,表明 MOF 在纳米纤维中分布均匀。当加入 5wt%的 MOF 时,水接触角增加到 138.06±2.18°,且可维持 82.73kPa 的液体入口压力,使膜适用于直接接触式膜蒸馏实验。该膜在整个 5 小时的运行期间保持稳定,当进料和渗透温度分别为 48°C 和 16°C 时,水蒸汽通量为 2.87kg/m·h,NaCl(35g/L)截留率为 99.99%。通过电感耦合质谱分析证明了 MOF 对纳米纤维的固定作用得到了增强,在渗透物中检测不到 Fe 到 ppt 的检测限。

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