Optimization and Characterization of Bio-oil Produced from Rice Husk Using Surface Response Methodology

Ige Ayodeji Rapheal, Elinge Cosmos Moki, A. Muhammad, Gwani Mohammed, Lawal Hassan Gusauc
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引用次数: 4

Abstract

Abstract The study depicts the production, optimization and characterization of bio-oil from pyrolyzed rice husk using a fabricated fixed bed reactor. The pyrolysis process was conducted with bio-oil response, bio-char response and non-condensable gases response as products. The effect of pyrolysis variables were observed by the production of the bio-oil as the response. Sixty runs of pyrolysis experiments were suggested by Box Benkhen design indicated optimum pyrolysis conditions at particle size of 2.03mm mesh, reaction time of 81.80 mins and temperature of 650oC for rice husk. The maximum bio-oil yield was obtained with 38.39% at optimum condition of the variables. The bio-oil sample obtained had better performance compared with ASTM standard. Such a determination would contribute so immensely to a significant comprehension of the chemical efficiency of the pyrolysis reaction.
利用表面响应法对稻壳生物油进行优化及表征
摘要采用自制固定床反应器,研究了稻壳热解生物油的制备、优化及表征。热解过程以生物油反应、生物炭反应和不可凝性气体反应为产物。以生物油的生产为响应,观察热解变量的影响。通过Box Benkhen设计,对稻壳进行60次热解实验,得出稻壳的最佳热解条件为:粒径为2.03mm,反应时间为81.80 min,温度为650℃。在最佳条件下,生物油得率最高可达38.39%。所得生物油样品与ASTM标准样品相比,具有更好的性能。这样的测定将极大地有助于理解热解反应的化学效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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