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Nickel-catalyzed carbonization of wood for coproduction of functional carbon and fluid fuels I : production of crystallized mesoporous carbon

机译:镍催化的木材碳化,用于共同生产功能性碳和流体燃料I:结晶中孔碳的生产

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摘要

Japanese larch wood loaded with nickel (1%–4%) alone or with nickel and calcium (0.25%–1.5%) was carbonized at 800°–900°C for 0–120min with a heating rate of 5°–20°C min−1 in a helium flow of 5.8−46.4 ml STP cm−2 min−1 to examine the influence of these variables on the crystallization of carbon (the formation of T component) and the development of mesoporosity. From the obtained results, reaction conditions suitable for effective production of carbon with the dual functions of adequate electroconductivity and adsorption capacity in liquid phase were established, thereby explaining the factors that govern the process. It was also confirmed that mesopore having a diameter of about 4 nm was selectively produced at the cost of specific (BET) surface area in parallel with the formation of T component. This result provided good insight into how the simultaneous dual function could be realized.
机译:在日本落叶松木材中,单独添加镍(1%–4%)或镍和钙(0.25%–1.5%)的木材在800°–900°C的温度下碳化5–20°C的时间为0–120min。在5.8-46.4 ml STP cm-2 min-1的氦气流量中的min-1,以检查这些变量对碳结晶(T成分的形成)和介孔形成的影响。根据获得的结果,建立了适合于有效生产具有适当的电导率和液相吸附能力的双重功能的碳的反应条件,从而解释了控制该过程的因素。还证实了以约(BET)表面积为代价,与T组分的形成平行地选择性地生产了具有约4nm直径的中孔。该结果为如何实现双重功能提供了很好的见解。

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