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Increased bio-oil yield from Swietenia macrophylla seeds through microwave pretreatment and ultrasonic-assisted solvent extraction

机译:通过微波预处理和超声辅助溶剂提取,可提高大叶Swietenia macrophylla种子的生物油产量

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Low recovery coupled with intensive energy requirement due to long processing time makes the potential of bio-oil production not seamlessly appreciated. In this study, the optimization of bio-oil yield from non-edibleSwietenia macrophyllaseeds through microwave pretreatment before ultrasonic-assisted solvent extraction was investigated. Central composite design of response surface methodology was employed to analyze the effects to the bio-oil yield of the irradiation time (4–8?min) and irradiation power (90–450?W) as pretreatment variables using a microwave oven at 2.45?GHz frequency. Results showed that microwave pretreatment significantly increased the bio-oil yield by 5% with optimum recovery of 43% at shortened pretreatment time of 7?min instead of 6?h in the conventional oven heating method. The bio-oil yield increased when the irradiation time was increased, while irradiation power showed no significant effect. Analysis of the produced bio-oil through Fourier Transform Infrared Radiation spectroscopy identified similar functional groups present both in the extracted bio-oils from the microwave and the conventional pretreated seeds indicating that the former pretreatment, like the latter, did not destruct the compounds present in the seeds. The study demonstrated that the seeds ofS.?macrophyllahave strong potential for bio-oil production and poise huge implications to the future of liquid biofuel and chemical industries.
机译:低回收率以及较长的加工时间导致对能源的大量需求,使得生物油生产的潜力无法得到无缝评估。在这项研究中,研究了在超声波辅助溶剂萃取之前,通过微波预处理从食用不可食的大叶黄连木中获得的生物油产量的优化方法。使用响应表面方法的中央复合设计,以2.45?m的微波炉作为预处理变量,分析了辐照时间(4–8?min)和辐照功率(90–450?W)对生物油产率的影响。 GHz频率。结果表明,微波预处理显着提高了生物油收率5%,最佳预处理回收率达43%,而预处理时间缩短了7?min,而传统的烤箱加热方法缩短了6?h。随着辐照时间的增加,生物油的产量增加,而辐照功率没有显着影响。通过傅立叶变换红外辐射光谱仪对所产生的生物油进行分析,发现从微波提取的生物油和常规预处理的种子中都存在相似的官能团,这表明前一种预处理(与后者一样)不会破坏存在于生物体内的化合物。种子。该研究表明,大叶沙棘的种子具有强大的生物油生产潜力,并且对液体生物燃料和化学工业的未来具有巨大的影响。

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