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Effect of transmembrane pressure, linear velocity, and temperature on permeate water flux of high-density vertically aligned carbon nanotube membranes

机译:跨膜压力,线性速度和温度对高密度垂直对齐碳纳米管膜渗透水通量的影响

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摘要

Vertically aligned carbon nanotubes (VA CNTs) were fabricated as an ultrafiltration membrane by a simple polyurethane reinforcing procedure. Pure water permeation properties were investigated using the membrane. During the membrane operation, pure water permeate fluxes were achieved at various transmembrane pressures (TMPs), linear velocities, and feed water temperatures. In comparison to the dependence of the permeate water flux on the three membrane operating parameters, the VA CNT membrane showed less sensitivity with increasing linear velocity and feed water temperature, likely due to the superfast water transport property of carbon nanotubes. This property of the VA CNT membrane can provide an advantage in terms of energy consumption when operated under mild operating conditions such as low linear velocities and low water temperatures. The optimal operating condition of the VA CNT membrane was calculated by dividing the permeate water flux by the energy consumption. An operating condition of 1bar of TMP, 5cm/s of linear velocity, and 30 degrees C of water temperature was optimal in terms of energy consumption, if no heating control of water was used. This study quantitatively provides the detailed membrane operation results under diverse operating conditions. It also provides useful engineering data of the VA CNT membrane operation for the first time.
机译:通过简单的聚氨酯增强程序制造垂直对准的碳纳米管(VA CNT)作为超滤膜制备。使用膜研究纯净的水渗透性能。在膜操作期间,在各种跨膜压力(TMP),线性速度和饲料水温下实现纯净的水渗透助熔剂。与渗透水通量在三个膜操作参数上的依赖性相比,VA CNT膜随着碳纳米管的超快速水分性能而增加,随着碳纳米管的超快速水分性能,VA CNT膜显示出较小的敏感性。当在低于线性速度和低水温下操作时,VA CNT膜的这种特性可以在能量消耗方面提供优点。通过将渗透水通量除以能量消耗来计算VA CNT膜的最佳操作条件。如果没有使用水的加热控制,则在能量消耗方面是最佳的,1B点,5cm / s的线性速度,5cm / s的线性速度和30摄氏度的操作条件。本研究定量地提供了在不同的操作条件下提供的详细膜操作。它还首次提供VA CNT膜操作的有用工程数据。

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