用固定床管式反应器生产Adansonia Digitata(猴面包树木)生物油和生物炭的特性

IF 1 Q4 MATERIALS SCIENCE, COMPOSITES
Joseph A. Oyebanji, Anthony O. Onokwai, Imhade P. Okokpujie
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引用次数: 2

摘要

在固定床管式碳钢反应器中,在400 ~ 700℃温度下,研究了Adansonia digitata生物质的热解特性。首先,在实验运行之前,通过快速热解过程获得原料生物质的近似值、最终值和热值分析;随后,采用高热值(HHV)、低热值(LHV)、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)等分析方法,研究了生物油的质量和生物炭在生物能源和工业上的应用。在500℃和400℃的温度下,生物油(52.70 wt%)和生物炭(40 wt%)的产率最高。气相色谱-质谱分析表明,油酸、苯酚、甲醇和酮在燃料成分中所占比例较高,而生物油的化学成分包括碳(70.99%)、氢(13.40%)、氮(0.54%)、氧(15.01%)和硫(0.06%),闪点(81)和倾点(-7)在HHV (30.75 MJ/kg)和LHV(27)的生物油中。结果表明,该产物的性质可以作为一种废物管理策略、吸附剂、土壤增强剂和生物燃料工业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Adansonia Digitata (Baobab Wood) Bio‑Oil and Biochar Produced Using a Fixed-Bed Tubular Reactor
The investigation of the characterization of Adansonia digitata biomass from pyrolysis in a fixed-bed tubular carbon steel reactor at temperatures of 400℃ to 700℃. Firstly, proximate, ultimate, and heating value analyses of the raw biomass were obtained prior to experimental runs via the fast pyrolysis process; thereafter, the quality of the bio-oil and biochar yields for bioenergy and industrial applications was investigated using the following analyses: higher heating values (HHV), lower heating values (LHV), scanning electron microscopy (SEM), and Fourier transform infrared spectroscopy (FT-IR). Optimum bio-oil (52.70 wt%) and bio-char (40 wt%) yields were obtained at temperatures of 500 and 400℃, respectively. GC-MS analysis of the yielded biooil revealed a higher percentage of oleic acid, phenol, methanol, and ketone among the fuel compositions, whereas the bio-oil chemical composition includes carbon (70.99%), hydrogen (13.40%), nitrogen (0.54%), oxygen (15.01%), and sulfur (0.06%), flash (81) and pour points (-7) for bio-oil with HHV (30.75 MJ/kg) and LHV (27). The results obtained demonstrated that the properties of products can serve as a waste management strategy, sorbent, soil enhancer, and biofuel industry application.
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
32
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