Quesada-Plata Fabian, Ruiz-Rosas Ramiro, Morallón Emilia, Cazorla-Amorós Diego
Departamento de Química Física e Instituto Universitario de Materiales, Universidad de Alicante, Ap. 99, 03080, Alicante, Spain.
Departamento de Química Inorgánica, e Instituto Universitario de Materiales, Universidad de Alicante, Ap. 99, 03080, Alicante, Spain.
Chempluschem. 2016 Dec;81(12):1349-1359. doi: 10.1002/cplu.201600412. Epub 2016 Nov 7.
Hydrothermal treatment of biomass in the presence of phosphoric acid is proposed for the production of activated carbons (ACs). Interestingly, H PO 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 m g and tuneable pore size distribution have been obtained. Electrochemical characterisation of ACs prepared at 750 °C in 1 m H SO demonstrates that capacitances of approximately 150 F g with acceptable rate performance can be obtained through this simple method.
提出在磷酸存在下对生物质进行水热处理以生产活性炭(ACs)。有趣的是,H₃PO₄在水热处理过程中促进了碳原子在固体中的固定,这使得制备产率高于传统浸渍法。在450℃下将所得水热炭碳化时,通过使用少量且低浓度的磷酸可实现显著的孔隙发展;这些条件对于传统活化并不充分。该工艺用于可持续生产ACs的可行性已在四种不同组成和结构的生物质中成功得到验证,并且获得了比表面积高于2000 m²/g且孔径分布可调的ACs。在1 m H₂SO₄中于750℃制备的ACs的电化学表征表明,通过这种简单方法可获得电容约为150 F/g且具有可接受倍率性能的ACs。