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Effect of vertically aligned carbon nanotube density on the water flux and salt rejection in desalination membranes

机译:垂直排列的碳纳米管密度对海水淡化膜中水通量和脱盐的影响

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摘要

In this paper, vertically aligned carbon nanotube (VACNT) membranes of different densities are developed and their performances are investigated. VACNT arrays of densities 5 × 109, 1010, 5 × 1010 and 1011 tubes cm−2, are initially grown on 1 cm × 1 cm silicon substrates using chemical vapour deposition. A VACNT membrane is realised by attaching a 300 μm-thick 1 cm × 1 cm VACNT array on silicon to a 4″ glass substrate, applying polydimethylsiloxane (PDMS) through spin coating to fill the gaps between the VACNTs, and using a microtome to slice the VACNT–PDMS composite into 25-μm-thick membranes. Experimental results show that the permeability of the developed VACNT membranes increases with the density of the VACNTs, while the salt rejection is almost independent of the VACNT density. The best measured permeance is attained with a VACNT membrane having a CNT density of 1011 tubes cm−2 is 1203 LMH at 1 bar.
机译:本文开发了不同密度的垂直排列的碳纳米管(VACNT)膜,并对其性能进行了研究。密度为5×10 9 ,10 10 ,5×10 10 和10 11 的VACNT阵列管cm < sup> −2 最初是使用化学气相沉积法在1 cm x 1 cm的硅基板上生长的。通过将300μm厚的1cm×1cm VACNT阵列附着在硅上的4英寸玻璃基板上,通过旋涂施加聚二甲基硅氧烷(PDMS)填充VACNT之间的间隙,并使用切片机切片来实现VACNT膜将VACNT-PDMS复合材料制成25μm厚的膜。实验结果表明,所开发的VACNT膜的渗透性随VACNTs的密度而增加,而脱盐率几乎与VACNT密度无关。使用CNT密度为10 11 管cm -2 为1bar的1203 LMH的VACNT膜可获得最佳的渗透率。

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