响应面法优化瓜皮半纤维素制糠醛工艺

Umar Abba Aji, C. Muhammad, Abdullahi Muhammad Sokoto, S. Umar, Mustapha Lawan Kar, Muhammad Nurudee Almustapha
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摘要

全球人口爆炸导致对化学品和燃料的需求增加。因此,这伴随着能源安全和温室气体排放等环境挑战。因此,从更环保的来源寻找替代化学品的必要性怎么强调都不为过。以瓜皮半纤维素为原料,通过酸催化水解/脱水的过程制备糠醛。利用MINITAB 17统计软件,采用响应面法(RSM)对糠醛生产工艺进行优化。采用方差分析(ANOVA)对糠醛生产的RSM结果进行分析。在温度(220°C)、酸浓度(10% H2SO4)和反应时间(55分钟)的优化条件下,对MSH的半纤维素部分进行降解,得到了产率为75.03%的糠醛。所得糠醛的FT-IR光谱显示在1670cm-1和2800cm-1处有吸收,表明有共轭羰基官能团和醛氢。结果表明,利用MSH生产糠醛可作为一种可行的农业废弃物处理方案,并可解决与化石燃料相关的环境问题,所生产的糠醛可作为生物燃料和精细化学品生产工业的原料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of furfural production from hemicellulose of citrullus colocynthis (melon) seed husk using response surface methodology (RSM)
Global population explosion has led to an increase in demand for chemicals and fuels. Consequently this is accompanied by energy security and environmental challenges such as GHGs emissions. Hence, the need for alternative sources of chemicals from greener sources cannot be overemphasized. Furfural was produced from hemicellulose of citrullus colocynthis (Melon) seed husk (MSH) which involves the simultaneous steps of acid catalyzed hydrolysis/dehydration of the (MSH). A response surface methodology (RSM) was used for furfural production and optimization using MINITAB 17statistical software. Results obtained from RSM for furfural production were analyzed using analysis of variance (ANOVA). A furfural with optimum yield of 75.03% was achieved via degradation of hemicellulose fraction of the MSH at optimized variable conditions of Temperature (220 °C), Acid Concentration (10% H2SO4), and Reaction Time (55 minutes). FT-IR spectrum of the produced furfural showed absorption at 1670cm-1 and 2800cm-1 indicating a conjugated carbonyl functional group and aldehydic hydrogen. The result revealed that the utilization of MSH in furfural production may serve as a viable solution of disposing this agricultural wastes and may address environmental problems associated with fossil fuels when the produced furfural used as a feedstock in industries for biofuels and fine chemicals production.
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