首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A kinetic study of pyrolysis and combustion of microalgae Chlorella vulgaris using thermo-gravimetric analysis
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A kinetic study of pyrolysis and combustion of microalgae Chlorella vulgaris using thermo-gravimetric analysis

机译:热重分析法研究微藻小球藻热解和燃烧的动力学

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摘要

This work uses thermo-gravimetric, differential thermo-gravimetric and differential thermal analyses to evaluate the kinetics of pyrolysis (in inert/N2 atmosphere) and (oxidative) combustion of microalgae Chlorella vulgaris by heating from 50 to 800°C at heating rates of 5-40°C/min. This study shows that combustion produces higher biomass conversion than pyrolysis, and that three stages of decomposition occur in both cases, of which, the second one - consisting of two temperature zones - is the main stage of devolatization. Proteins and carbohydrates are decomposed in the first of the two zones at activation energies of 51 and 45kJ/mol for pyrolysis and combustion, respectively, while lipids are decomposed in its second zone at higher activation energies of 64 and 63kJ/mol, respectively. The kinetic expressions of the reaction rates in the two zones for pyrolysis and combustion have been obtained and it has been shown that increased heating rates result in faster and higher conversion.
机译:这项工作使用热重分析,差示热重分析和差示热分析来评估微藻小球藻的热解动力学(在惰性/ N 2气氛中)和(氧化)燃烧,其加热速率为5至50°C至50°C -40°C /分钟这项研究表明,燃烧比热解产生更高的生物质转化率,并且在两种情况下均发生三个分解阶段,其中第二个阶段(由两个温度区组成)是挥发的主要阶段。蛋白质和碳水化合物分别在两个区域的第一个区域以51kJ / mol和45kJ / mol的活化能分解,以进行热解和燃烧,而脂质在其第二个区域分别以64和63kJ / mol较高的活化能进行分解。已经获得了在两个区域中用于热解和燃烧的反应速率的动力学表达式,并且已经表明,提高的加热速率导致更快和更高的转化率。

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