利用快速热解过程对甘蔗生物油生产的热力学和分解分析

Eksergi Pub Date : 2023-07-03 DOI:10.31315/e.v20i2.9849
Ilham Mufandi, Ratchaphon Suntivarakorn, Wasakorn Treedet, Piyapong Singbua
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引用次数: 0

摘要

甘蔗叶片是由甘蔗产生的农工废弃物之一。本研究以甘蔗叶片为原料进行热解,热解产生液体、固体和气体三种主要产物。本研究的重点是确定温度对热解的影响,确定质量变化,确定分解,确定生物油的化学成分。采用循环流化床(CFBr)反应器进行热解,热解温度为440 ~ 520℃。对甘蔗叶片的热解特性进行了热重分析(TGA)、差热分析(DTA)和气相色谱-质谱分析(GC-MS)。结果表明,操作温度对热解过程有显著影响。在480℃时生物油含量最高,占34.33%。TGA结果表明,甘蔗叶片的分解过程分为3个阶段:1)含水量在<200℃发生脱水,2)在200℃~ 380℃发生主动热解,3)在380℃~ 500℃发生被动热解。差热分析结果表明,热变化受热解升温速率的影响。最高的生物油化合物是β- d -葡萄糖醛酸1,6-无水,乙酸和2-丙烷- 1-羟基。本研究证明温度在热解过程中起着重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analisis Termogravimetri dan Dekomposisi Termal pada Produksi Bio-Oil dari Daun Tebu Menggunakan Proses Pirolisis Cepat
Sugarcane leaves are one of the agro-industrial wastes derived from sugarcane plants. In this research, sugarcane leaves are used as raw material for pyrolysis which produces three main products: liquid, solid, and gas. The focus of this research is to identify the effect of temperature on pyrolysis, identify mass changes, identify decomposition, and identify the chemical composition of bio-oil. The pyrolysis was carried out using a Circulating Fluidized Bed (CFBr) reactor with pyrolysis temperature variations from 440oC to 520oC. Analysis of pyrolysis characteristics of sugarcane leaves are used thermogravimetric analysis (TGA), DTA, and GC-MS analysis. The results showed that the operating temperature had a significant effect on the pyrolysis process. The highest bio-oil found at 480oC, namely 34.33%. TGA results show that the decomposition process of sugarcane leaves is divided into 3 stages: 1) dehydration of water content occurs at <200oC, 2) active pyrolysis occurs from 200oC to 380oC, and 3) passive pyrolysis occurs at temperature from 380oC to 500oC. DTA results show that the thermal changes are affected by the pyrolysis heating rate. The highest bio-oil compounds are β-D-Glucopyranose 1,6-anhydro, acetic acid, and 2-Propanone 1-hydroxy-. This research proves that temperature has an important role in the pyrolysis process.
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