通过热分析得到生物质热解脱水阶段的热流和比热容

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY UIS Ingenierias Pub Date : 2023-01-10 DOI:10.18273/revuin.v22n1-2023006
Fernanda Rezende-Lopes, K. Tannous, Thiago Rezende-Lopes
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引用次数: 0

摘要

本研究旨在研究能源甘蔗和椰子纤维在热解过程中水分对脱水阶段热流和比热容的影响。实验在热重和差示扫描量热分析仪中进行,在惰性气氛中加热速率为20 K/min,确定了三个分解阶段:脱水(以吸热峰为标志),热解和碳化。从水贡献的分析中可以看出,对于两种生物质,来自剩余水热容(Qwc)的热流与来自水蒸发(Qwe)的热流相比可以忽略不计。同时,我们分别从686 ~ 2371 J/kg K和1076 ~ 2113 J/kg K的生物质热容(Qb)和实验比热容(cp,b)计算了热流。然后,对于脱水阶段,提出了三阶和四阶理论多项式方程来预测生物质加热所需的热量。
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Heat flow and specific heat capacity in the dehydration stage of biomasses pyrolysis through thermal analyses
This study aims to investigate the influence of the moisture of energy cane and coconut fiber on heat flow and specific heat capacity in the dehydration stage from the pyrolysis process. The experiments were carried out in a simultaneous thermogravimetry and differential scanning calorimetry analyzer using a heating rate of 20 K/min in an inert atmosphereThree decomposition stages were identified: dehydration (marked by an expressive endothermic peak), pyrolysis, and carbonization). From the analyses of the water contributions, it was observed that the heat flow from the heat capacity of remaining water (Qwc) is negligible compared to the heat flow from the water evaporation (Qwe), for both biomasses. Also, we calculated the heat flow from the heat capacity (Qb) and the experimental specific heat capacity (cp,b) of biomasses such as 686-2371 J/kg K and 1076-2113 J/kg K, respectively. Then, for the dehydration stage, third- and fourth-order theoretical polynomial equations have been proposed to predict the heat required for the biomass heating.
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来源期刊
UIS Ingenierias
UIS Ingenierias ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
27
审稿时长
12 weeks
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