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Activated Carbons Prepared through H3PO4-Assisted Hydrothermal Carbonisation from Biomass Wastes: Porous Texture and Electrochemical Performance

机译:H3PO4辅助生物质废物的水热碳化制备的活性炭:多孔质构和电化学性能

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摘要

Hydrothermal treatment of biomass in the presence of phosphoric acid is proposed for the production of activated carbons (ACs). Interestingly, H3PO4 promotes the fixation of carbon atoms in the solid during hydrothermal treatment, which renders higher preparation yields than those of the conventional impregnation method. Upon carbonisation of the resulting hydrochars at 450 °C, a notable development of porosity is achieved by using a low amount and concentration of phosphoric acid; these conditions are not adequate for conventional activation. The viability of this process for the sustainable production of ACs has been successfully checked in four biomasses of different composition and structures, and ACs of surface areas above 2000 m2 g−1 and tuneable pore size distribution have been obtained. Electrochemical characterisation of ACs prepared at 750 °C in 1 m H2SO4 demonstrates that capacitances of approximately 150 F g−1 with acceptable rate performance can be obtained through this simple method.
机译:提出了在磷酸存在下对生物质进行水热处理以生产活性炭(AC)的方法。有趣的是,H 3 PO 4在水热处理期间促进了固体中碳原子的固定,与常规浸渍方法相比,其制备产率更高。在450 C下将生成的碳氢化合物碳化后,通过使用少量和低浓度的磷酸可实现显着的孔隙率发展。这些条件不足以进行常规激活。已经成功地在四种具有不同组成和结构的生物质中检验了该方法可持续生产AC的可行性,并获得了表面积大于2000 m2 g-1且孔径分布可调的AC。在1 m H2SO4中在750 C下制备的AC的电化学表征表明,通过这种简单方法可获得约150 canF g-1的电容,具有可接受的速率性能。

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