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Chemical kinetics of Japanese cedar, cypress, fir, and spruce and characterization of charcoal

机译:日本雪松、柏树、冷杉、云杉的化学动力学及木炭的表征

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Thermogravimetric and differential thermal analyses techniques have been applied to investigate the thermal degradation characteristics and chemical kinerics of Japanese cedar, cypress, fir. and spruce. The decomposition of the components could be modeled by an Arrhenius kinetic expression. The kinetic parameters were extracted from the thermogravimetric data using least-squares techniques. The heating rates used for the analyses were 10 deg, 5 deg, and 0.33 deg C min; and the activation energy andreaction order of the above woods were 7.54, 8.39, 2.87, and 7.88 kJ/mol and 0.71, 0.64, 0.44, and 0.63, respectively. Finally, carbonization was done to produce charcoal from these woods under various operating conditions, and the charcoal was characterized in respect to yield, heating value, electrical conductivity, and X-ray diffraction. The quality of the charcoal from fir was the best among the four types of wood. The charcoal produced is inferior to binchotan (while charcoal) in respect to electrical conductivity and crystalline structure.
机译:采用热重和差热分析技术研究了日本雪松、柏树、冷杉的热降解特性和化学动力学。和云杉。组分的分解可以通过阿伦尼乌斯动力学表达式进行建模。使用最小二乘技术从热重数据中提取动力学参数。用于分析的加热速率为 10 度、5 度和 0.33 摄氏度分钟;上述木材的活化能和反应顺序分别为7.54、8.39、2.87和7.88 kJ/mol,分别为0.71、0.64、0.44和0.63。最后,在各种操作条件下,从这些木材中进行碳化以生产木炭,并从产量、热值、电导率和X射线衍射等方面对木炭进行了表征。冷杉木炭的质量是四种木材中最好的。生产的木炭在导电性和晶体结构方面不如备长炭(虽然是木炭)。

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