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氧化石墨烯骨架膜的可调谐海水淡化

Tunable water desalination across graphene oxide framework membranes.

作者信息

Nicolaï Adrien, Sumpter Bobby G, Meunier Vincent

机构信息

Department of Physics, Applied Physics and Astronomy, Rensselaer Polytechnic Institute, Troy, 12180 New York, USA.

出版信息

Phys Chem Chem Phys. 2014 May 14;16(18):8646-54. doi: 10.1039/c4cp01051e.

Abstract

The performance of graphene oxide framework (GOF) membranes for water desalination is assessed using classical molecular dynamics (MD) simulations. The coupling between water permeability and salt rejection of GOF membranes is studied as a function of linker concentration n, thickness h and applied pressure ΔP. The simulations reveal that water permeability in GOF-(n,h) membranes can be tuned from ∼5 (n = 32 and h = 6.5 nm) to 400 L cm(-2) day(-1) MPa(-1) (n = 64 and h = 2.5 nm) and follows a Cnh(-αn) law. For a given pore size (n = 16 or 32), water permeability of GOF membranes increases when the pore spacing decreases, whereas for a given pore spacing (n = 32 or 64), water permeability increases by up to two orders of magnitude when the pore size increases. Furthermore, for linker concentrations n ≤ 32, the high water permeability corresponds to a 100% salt rejection, elevating this type of GOF membrane as an ideal candidate for water desalination. Compared to experimental performance of reverse osmosis membranes, our calculations suggest that under the same conditions of applied pressure and characteristics of membranes (ΔP ∼ 10 MPa and h ∼ 100 nm), one can expect a perfect salt rejection coupled to a water permeability two orders of magnitude higher than existing technologies, i.e., from a few cL cm(-2) day(-1) MPa(-1) to a few L cm(-2) day(-1) MPa(-1).

摘要

使用经典分子动力学(MD)模拟评估了氧化石墨烯框架(GOF)膜用于水脱盐的性能。研究了GOF膜的水渗透率与盐分截留率之间的耦合关系,该关系是连接体浓度n、厚度h和施加压力ΔP的函数。模拟结果表明,GOF-(n,h)膜中的水渗透率可从5(n = 32且h = 6.5 nm)调节至400 L cm(-2) day(-1) MPa(-1)(n = 64且h = 2.5 nm),且遵循Cnh(-αn)定律。对于给定的孔径(n = 16或32),当孔间距减小时,GOF膜的水渗透率增加;而对于给定的孔间距(n = 32或64),当孔径增大时,水渗透率增加高达两个数量级。此外,对于连接体浓度n≤32,高水渗透率对应100%的盐分截留率,使这类GOF膜成为水脱盐的理想候选材料。与反渗透膜的实验性能相比,我们的计算表明,在相同的施加压力和膜特性条件下(ΔP10 MPa且h~100 nm),可以预期实现完美的盐分截留,同时水渗透率比现有技术高两个数量级,即从几cL cm(-2) day(-1) MPa(-1)提高到几L cm(-2) day(-1) MPa(-1)。

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