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首页> 外文期刊>Energy sources >Biofuel production of neem wood bark (Azadirachta indica) through flash pyrolysis in a fluidized bed reactor and its chromatographic characterization
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Biofuel production of neem wood bark (Azadirachta indica) through flash pyrolysis in a fluidized bed reactor and its chromatographic characterization

机译:通过流化床反应器中的闪光分解,生物燃料生产Neem木树皮(Azadirachta indica)及其色谱表征

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摘要

In this study, wood bark of neem tree (Azadirachta indica) is transformed into liquid (bio-oil), solid (char) and gaseous products via pyrolysis method. The main aim of this study is to analyze the effect of process parameters on pyrolysis yield, physical and chemical characterization of bio-oil, char, and gaseous products to find its feasibility as a commercial fuel as well as chemical feedstocks. The flash pyrolysis experiments were carried out in a laboratory scale fluidized bed reactor at a temperature ranging from 350 to 550 degrees C, different particle sizes from 0.71 to 1.25 mm with a sweep gas flow rate of 1.25 to 2.25 m(3)/hr. The highest liquid product yield was obtained as 49.5 wt% at the pyrolysis temperature of 450 degrees C, 1.0 mm particle size and at the sweep gas flow rate 2.0 m(3)/hr. The obtained bio-oil, char, and gaseous products were examined with FT-IR, GC-MS and Elemental analysis methods. Based on the elemental analysis of the bio-oil, the calorific value was found as 22.7 MJ/kg. GC-MS analysis of the bio-oil indicates that it mostly consists of phenolic and oxygenated compounds with alkanes, alkenes, ketones, and carboxylic acids. The pyrolysis gas fraction contains hydrogen, methane, oxygen, carbon dioxide, and carbon monoxide. The obtained bio-oil and gas can be used as a bio-fuel and bio-oil can be used as a valuable chemical feedstock. The char obtained are carbon-rich and are nearly equal to the standard fuel properties.
机译:在这项研究中,通过热解方法将Neem树(Azadirachta indica)的木材树皮(Azadirachta indica)转化为液体(生物油),固体(ChOR)和气态产物。本研究的主要目的是分析工艺参数对生物油,炭和气态产品的热解产率,物理和化学表征的影响,以找到其作为商业燃料的可行性以及化学原料。在实验室规模流化床反应器中在350至550℃的温度下在0.71至1.25mm的温度下进行闪热分解实验,扫描气体流速为1.25至2.25m(3)/ hr。在450℃,1.0mm粒径为450℃,1.0mm粒径的热解温度下,获得最高液体产率为49.5wt%。用FT-IR,GC-MS和元素分析方法检查所获得的生物油,炭和气态产物。基于生物油的元素分析,发热值被发现为22.7 mJ / kg。生物油的GC-MS分析表明它主要由酚类和氧化化合物与烷烃,烯烃,酮和羧酸组成。热解气馏分含有氢,甲烷,氧,二氧化碳和一氧化碳。获得的生物油和气体可用作生物燃料,生物油可用作有价值的化学原料。获得的炭富含碳,几乎等于标准燃料特性。

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