微尺度化学
材料科学
碳纳米管
体积流量
膜
海水淡化
流量(数学)
纳米技术
水流
分子动力学
弯曲
水运
机械
生物系统
复合材料
环境科学
环境工程
化学
数学教育
数学
物理
计算化学
生物
遗传学
作者
Mohammad Rezaee,Hojat Ghassemi,Sajad Jabari Neek
标识
DOI:10.1016/j.mtcomm.2023.107188
摘要
The comprehension of water flow rate within carbon nanostructures holds great importance in both theoretical understanding and engineering design of microscale and nanoscale devices. This study presents a comprehensive numerical model for analyzing the water flow rate in Carbon Nanotube (CNT) membranes. The outcomes of this model have particular relevance in predicting the performance and designing CNT membranes for water desalination, which offer the potential for remarkably rapid transport. By investigating the characteristics of the CNT membrane, various geometric properties that influence the overall flow rate are quantified. Apart from the diameter and length, attention is also given to non-ideal factors associated with the deformation of CNTs from their original structures. Specifically, the impact of eccentricity and bending on the flow rate through CNTs is examined, revealing limited but noteworthy effects. Additionally, a simplified model is developed to characterize the membrane using statistical data pertaining to CNT synthesis. The results of the total water flow rate demonstrate that the existing numerical model closely aligns with the reported experimental values.
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