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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Thermogravimetric and kinetic analysis of Spirulina wastes under nitrogen and air atmospheres
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Thermogravimetric and kinetic analysis of Spirulina wastes under nitrogen and air atmospheres

机译:氮气和空气气氛下螺旋藻废物的热重和动力学分析

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The pyrolysis and combustion of Spirulina wastes were assessed by thermogravimetric analysis. The results showed that combustion has considerable difference from pyrolysis under the inert atmosphere, such as the enhancement of the decomposition at low temperature, promotion of the char residue combustion and the reduction of activation energy. Under inert atmosphere, the distributed activation energy is found to be increased from 143 to 964kJmol~(-1) with the increase of the mass conversion rate, giving a high correlation coefficient. The results also imply that the DAEM is not suitable for evaluation of the degradation kinetics under air atmosphere. Comparatively, the activation energy obtained from established global kinetic model is correspondingly lower than that from DAEM under both inert and oxidative environments. The global kinetic model is estimated to be applicable for describing the thermal decomposition of Spirulina wastes under both inert and oxidative conditions.
机译:螺旋藻废物的热解和燃烧通过热重分析进行评估。结果表明,在惰性气氛下燃烧与热解有很大的不同,例如在低温下增强分解,促进残炭燃烧和降低活化能。在惰性气氛下,随着质量转化率的增加,分布的活化能从143增加到964kJmol〜(-1),具有较高的相关系数。该结果还暗示DAEM不适合评估空气气氛下的降解动力学。相比之下,在惰性和氧化环境下,从已建立的整体动力学模型获得的活化能相应地低于从DAEM获得的活化能。据估计,该整体动力学模型可用于描述螺旋藻废物在惰性和氧化条件下的热分解。

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