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Enhanced Reduction of Few-Layer Graphene Oxide via Supercritical Water Gasification of Glycerol

机译:通过甘油超临界水气化增强几层氧化石墨烯的还原

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摘要

A sustainable and effective method for de-oxygenation of few-layer graphene oxide (FLGO) by glycerol gasification in supercritical water (SCW) is described. In this manner, reduction of FLGO and valorization of glycerol, in turn catalyzed by FLGO, are achieved simultaneously. The addition of glycerol enhanced FLGO oxygen removal by up to 59% due to the in situ hydrogen generation as compared to the use of SCW only. Physicochemical characterization of the reduced FLGO (rFLGO) showed a high restoration of the sp2-conjugated carbon network. FLGO sheets with a starting C/O ratio of 2.5 are reduced by SCW gasification of glycerol to rFLGO with a C/O ratio of 28.2, above those reported for hydrazine-based methods. Additionally, simultaneous glycerol gasification resulted in the concurrent production of H2, CO, CH4 and valuable hydrocarbons such as alkylated and non-alkylated long chain hydrocarbon (C12–C31), polycyclic aromatic hydrocarbons (PAH), and phthalate, phenol, cresol and furan based compounds.
机译:描述了一种在超临界水(SCW)中通过甘油气化对多层石墨烯(FLGO)进行脱氧的可持续有效方法。以这种方式,同时实现了FLGO的催化的FLGO的还原和甘油的增值。与仅使用SCW相比,由于原位产生氢气,甘油的添加将FLGO的除氧量提高了59%。还原FLGO(rFLGO)的理化特性表明sp 2 共轭碳网络的高度还原。通过将甘油进行SCW气化成具有28.2的C / O比的rFLGO,可以将起始C / O比为2.5的FLGO片材还原,这比基于肼的方法报道的要高。另外,同时进行的甘油气化导致同时产生H2,CO,CH4和有价值的烃,例如烷基化和非烷基化的长链烃(C12–C31),多环芳烃(PAH)以及邻苯二甲酸酯,苯酚,甲酚和呋喃基础化合物。

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