Flash Pyrolysis Experiment on Albizia odoratissima Biomass under Different Operating Conditions: A Comparative Study on Bio-Oil, Biochar, and Noncondensable Gas Products

化学 生物炭 热解 燃烧热 体积流量 甲烷 生物量(生态学) 分析化学(期刊) 二氧化碳 产量(工程) 制浆造纸工业 燃烧 色谱法 有机化学 材料科学 热力学 物理 海洋学 工程类 冶金 地质学
作者
C. Sowmya Dhanalakshmi,S. Kaliappan,H. Mohammed Ali,S. Sekar,Melvin Victor De Poures,Pravin P. Patil,Baskara Sethupathy Subbaiah,S. Socrates,Habtewolde Ababu Birhanu
出处
期刊:Journal of Chemistry [Hindawi Limited]
卷期号:2022: 1-9 被引量:15
标识
DOI:10.1155/2022/9084029
摘要

This study deals with the flash pyrolysis of Albizia odoratissima biomass wastes at different temperature, sweep gas flow rate, and heating rate in a fluidized bed reactor. In the first phase of the experimental work, the effect of temperature (350–550°C) on product yield was analyzed, the second and third phases of the work were to analyze the effect of sweeping gas (N2), flow rate (1.25–2.25 m3/hr), and heating rate (20–40°C/min). The experimental works were carried out to get maximum bio-oil production. The experimental results demonstrated that the maximum yield of bio-oil was obtained at a temperature of 450°C, N2 flow rate of 1.75 m3/hr, and heating rate of 30°C/min. Temperature was found to be the crucial factor rather than sweep gas flow rate in the product distribution. Fourier transform infrared spectroscopy (FT-IR), gas chromatography mass spectroscopy (GC-MS), and elemental analysis were done on the obtained bio-oil, biochar, and noncondensable gas products. The heating value of the bio-oil and biochar was identified as 18.15 and 23.47 MJ/kg, respectively. The chemical analysis of the bio-oil showed that the oil is a mixture of phenol and oxygenated elements. The gas analyses showed that hydrogen and carbon dioxide were dominant, followed by carbon monoxide and methane.

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