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Selective Permeation of Water through Angstrom-Channel Graphene Membranes for Bioethanol Concentration

机译:通过抗血管沟道石墨烯膜的选择性渗透,用于生物乙醇浓度

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摘要

Graphene-based laminate membranes have been theoretically predicted to selectively transport ethanol from ethanol-water solution while blocking water. Here, robust angstrom-channel graphene membranes (ACGMs) fabricated by intercalating carbon sheets derived from chitosan into thermally reduced graphene oxide (GO) sheets are reported. ACGMs with robust and continuous slit-shaped pores (an average pore size of 3.9 angstrom) are investigated for the dehydration of ethanol. Surprisingly, only water permeates through ACGMs in the presence of aqueous ethanol solution. For the water-ethanol mixture containing 90 wt% ethanol, water can selectively permeate through ACGMs with a water flux of 63.8 +/- 3.2 kg m(-2)h(-1)at 20 degrees C and 389.1 +/- 19.4 kg m(-2)h(-1)at 60 degrees C, which are over two orders of magnitude higher than those of conventional pervaporation membranes. This means that ACGMs can effectively operate at room temperature. Moreover, the ethanol can be fast concentrated to high purity (up to 99.9 wt%). Therefore, ACGMs are very promising for production of bioethanol with high efficiency, thus improving its process sustainability.
机译:基于石墨烯的层压膜已经理论上预测,以在阻挡水中选择性地从乙醇 - 水溶液中运输乙醇。这里,报道了通过将碳粉烷片的碳板嵌入到热还原石墨烯(GO)片材中而制造的鲁棒埃斯特罗姆沟道石墨烯膜(ACGM)。研究了具有稳健和连续狭缝形状的孔(平均孔径为3.9埃)的ACGM用于乙醇的脱水。令人惊讶的是,在乙醇水溶液存在下,只能通过ACGMS渗透。对于含有90wt%乙醇的水 - 乙醇混合物,水可以在20℃和389.1 +/- 19.4 kg下选择性地通过63.8 +/- 3.2kg m(-2)h(-1)的水通量的acgms。在60摄氏度下M(-2)H(-1),其比常规渗透膜的数量级超过两个数量级。这意味着ACGM可以在室温下有效地运行。此外,乙醇可以快速浓缩至高纯度(高达99.9wt%)。因此,ACGMS非常有前途,以高效率生产生物乙醇,从而提高其过程可持续性。

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