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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Supercritical fluid reactive extraction of Jatropha curcas L. seeds with methanol: A novel biodiesel production method
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Supercritical fluid reactive extraction of Jatropha curcas L. seeds with methanol: A novel biodiesel production method

机译:甲醇超临界流体反应萃取麻风树种子的新生物柴油生产方法

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The novel biodiesel production technology using supercritical reactive extraction from Jatropha curcas L. oil seeds in this study has a promising role to fill as a more cost-effective processing technology. Compared to traditional biodiesel production method, supercritical reactive extraction can successfully carry out the extraction of oil and subsequent esterification/transesterification process to fatty acid methyl esters (FAME) simultaneously in a relatively short total operating time (45-80 min). Particle size of the seeds (0.5-2.0 mm) and reaction temperature/pressure (200-300 °C) are two primary factors being investigated. With 300 C reaction temperature, 240 MPa operating pressure, 10.0 ml/g methanol to solid ratio and 2.5 ml/g of n-hexane to seed ratio, optimum oil extraction efficiency and FAME yield can reach up to 105.3% v/v and 103.5% w/w, respectively which exceeded theoretical yield calculated based on n-hexane Soxhlet extraction of Jatropha oil seeds.
机译:在这项研究中,使用从麻风树油菜种子中进行超临界反应萃取的新型生物柴油生产技术,可作为一种更具成本效益的加工技术而具有广阔的前景。与传统的生物柴油生产方法相比,超临界反应萃取可以在相对较短的总操作时间(45-80分钟)内成功地进行油的萃取以及随后的酯化/酯交换过程,从而形成脂肪酸甲酯(FAME)。种子的粒径(0.5-2.0毫米)和反应温度/压力(200-300°C)是研究的两个主要因素。在300°C的反应温度,240 MPa的工作压力,10.0 ml / g的甲醇与固体之比和2.5 ml / g的正己烷与种子之比的条件下,最佳的油萃取效率和FAME收率可达105.3%v / v和103.5 %w / w,分别超过了基于正己烷索氏提取麻风树油种子的理论产率。

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