首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Energy along Interstate I-95: Pyrolysis kinetics of Floridian cabbage palm (Sabal palmetto)
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Energy along Interstate I-95: Pyrolysis kinetics of Floridian cabbage palm (Sabal palmetto)

机译:I-95号州际公路沿线的能量:佛罗里达白菜棕榈(Sabal palmetto)的热解动力学

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摘要

The efficient utilization of biomass as a renewable fuel relies on the identification of readily available fuel sources and an adequate description of their decomposition reactions. Cabbage palm (Sabal palmetto) is one potential local energy source for the Southeastern United States. The kinetics of pyrolysis of three particle size fractions (125-250,250-300,300-500 μm) of cabbage palm leaf, stalk and trunk were examined using nonisothermal thermogravimetric analysis with heating rates of 25,50 and 100℃ min~(-1) under constant nitrogen flow. Using the Arrhenius equation to calculate the activation energy and pre-exponential factor, three distinct fractions, corresponding primarily to hemicellulose, cellulose and lignin, were found to decompose over three temperature ranges, each with distinct activation energies. The largest mass loss occurred in the mid-temperature fraction (40-45%); the low temperature region had approximately 30% mass loss and the high temperature region had 15-25% mass loss. Pyrolysis at higher heating rates decreased the activation energy of each palm material, whereas particle size was not correlated with activation energy. For leaf, stalk and trunk, activation energies ranged from 64 to 115,67 to 152 and 19 to 25 kJ mol~(-1) for the low, medium, and high temperature range fractions, corresponding to hemicellulose, cellulose and lignin, respectively.
机译:生物质作为可再生燃料的有效利用取决于对容易获得的燃料源的识别以及对它们的分解反应的充分描述。白菜棕榈(Sabal palmetto)是美国东南部一种潜在的本地能源。采用非等温热重分析法,在25,50和100℃min〜(-1)加热速率下,对甘蓝棕榈叶,茎和树干的三种粒径级分(125-250,250-300,300-500-μm)的热解动力学进行了研究。恒定的氮气流量。使用Arrhenius方程计算活化能和指数前因子,发现主要对应于半纤维素,纤维素和木质素的三个不同部分在三个温度范围内分解,每个温度下具有不同的活化能。最大的质量损失发生在中温部分(40-45%)。低温区域的质量损失约为30%,而高温区域的质量损失约为15-25%。在较高的加热速率下进行热解会降低每种棕榈材料的活化能,而粒度与活化能无关。对于叶,茎和树干,低,中和高温范围部分的活化能范围分别为64至115,67至152和19至25 kJ mol〜(-1),分别对应于半纤维素,纤维素和木质素。 。

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