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用于先进复合聚偏氟乙烯膜的几层石墨烯在水淡化中的应用:一项对比研究。

A few-layer graphene for advanced composite PVDF membranes dedicated to water desalination: a comparative study.

作者信息

Frappa M, Del Rio Castillo A E, Macedonio F, Politano A, Drioli E, Bonaccorso F, Pellegrini V, Gugliuzza A

机构信息

Institute on Membrane Technology-National Research Council (CNR-ITM) Via Pietro Bucci 17C Rende (CS) 87036 Italy

Graphene Labs, Fondazione Istituto Italiano di Tecnologia Via Morego 3016163 Genova Italy

出版信息

Nanoscale Adv. 2020 Aug 17;2(10):4728-4739. doi: 10.1039/d0na00403k. eCollection 2020 Oct 13.

Abstract

Membrane distillation is envisaged to be a promising best practice to recover freshwater from seawater with the prospect of building low energy-consuming devices powered by natural and renewable energy sources in remote and less accessible areas. Moreover, there is an additional benefit of integrating this green technology with other well-established operations dedicated to desalination. Today, the development of membrane distillation depends on the productivity-efficiency ratio on a large scale. Despite hydrophobic commercial membranes being widely used, no membrane with suitable morphological and chemical feature is readily available in the market. Thus, there is a real need to identify best practices for developing new efficient membranes for more productive and eco-sustainable membrane distillation devices. Here, we propose engineered few-layer graphene membranes, showing enhanced -membrane fluxes and total barrier action against NaCl ions. The obtained performances are linked with filling polymeric membranes with few-layer graphene of 490 nm in lateral size, produced by the wet-jet milling technology. The experimental evidence, together with comparative analyses, confirmed that the use of more largely sized few-layer graphene leads to superior productivity related efficiency trade-off for the membrane distillation process. Herein, it was demonstrated that the quality of exfoliation is a crucial factor for addressing the few-layer graphene supporting the separation capability of the host membranes designed for water desalination.

摘要

膜蒸馏被认为是一种很有前景的从海水中回收淡水的最佳方法,有望在偏远和交通不便地区建造由天然和可再生能源驱动的低能耗装置。此外,将这种绿色技术与其他成熟的海水淡化操作相结合还有额外的好处。如今,膜蒸馏的发展在很大程度上取决于生产率与效率的比率。尽管疏水性商业膜被广泛使用,但市场上却没有具备合适形态和化学特性的膜。因此,确实需要确定开发新型高效膜的最佳方法,以用于生产效率更高且生态可持续的膜蒸馏装置。在此,我们提出了工程化的少层石墨烯膜,其显示出增强的膜通量以及对氯化钠离子的完全阻隔作用。所获得的性能与用湿喷磨技术生产的横向尺寸为490纳米的少层石墨烯填充聚合物膜有关。实验证据以及对比分析证实,使用尺寸更大的少层石墨烯会使膜蒸馏过程在生产率相关效率的权衡上表现更优。在此证明,剥离质量是解决少层石墨烯问题的关键因素,少层石墨烯支撑着为海水淡化设计的主体膜的分离能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/709e/9417500/62f57c15bb69/d0na00403k-f1.jpg

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