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Toward Green Synthesis of Graphene Oxide Using RecycledSulfuric Acid via Couette–Taylor Flow

机译:回收利用绿色合成氧化石墨烯通过库埃特-泰勒流动的硫酸

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摘要

Developing eco-friendly and cost-effective processes for the synthesis of graphene oxide (GO) is essential for its widespread industrial applications. In this work, we propose a green synthesis technique for GO production using recycled sulfuric acid and filter-processed oxidized natural graphite obtained from a Couette–Taylor flow reactor. The viscosity of reactant mixtures processed from Couette–Taylor flow was considerably lower (∼200 cP at 25 °C) than that of those from Hummers’ method, which enabled the simple filtration process. The filtered sulfuric acid can be recycled and reused for the repetitive GO synthesis with negligible differences in the as-synthesized GO qualities. This removal of sulfuric acid has great potential in lowering the overall GO production cost as the amount of water required during the fabrication process, which takes a great portion of the total production cost, can be dramatically reduced after such acid filtration. The proposed eco-friendly GO fabrication process is expected to promote the commercial application of graphene materials into industryshortly.
机译:开发环保且经济高效的氧化石墨烯(GO)合成方法对其广泛的工业应用至关重要。在这项工作中,我们提出了一种绿色合成技术,该技术使用回收的硫酸和从Couette-Taylor流动反应器获得的经过滤处​​理的氧化天然石墨进行GO生产。通过Couette-Taylor流处理的反应混合物的粘度(在25°C时约为200 cP)比采用Hummers方法的混合物要低得多,这使得过滤过程变得简单。过滤后的硫酸可以循环再利用,用于重复的GO合成,而合成GO的质量差异可忽略不计。这种硫酸的去除具有降低总的GO生产成本的巨大潜力,因为在制造过程中所需的水量(占总生产成本的很大一部分)可以在这种酸过滤后大大减少。拟议的环保GO制造工艺有望促进石墨烯材料在工业上的商业应用不久。

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