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Optimized ultrasonic-assisted oil extraction and biodiesel production from the seeds of Maesopsis eminii

机译:优化的超声波辅助油提取和生物柴油从Maesopsis eminii的种子生产

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In this study, the central composite design of response surface methodology was employed as a design of an experiment to optimize the extraction of oil from Maesopsis eminii seeds using ultrasonic-assisted solvent extraction (UASE). The most appropriate values of operating variables such as extraction time and n-hexane to biomass ratio and its effects on oil yield were analyzed. The 7:1 n-hexane-to-biomass ratio (140 mL n-hexane/20 g seed powder) and the 20 min extraction time were found as optimum conditions to get an oil yield of 47.86 +/- 0.09 %. Oil's chemical characteristics and compositions include yellowish color, 0.90 g/mL density, 5.40 pH, 47.9 mm(2)/s kinematic viscosity, 39.63 MJ/kg high heating value > 200 degrees C flashpoint, and 0.36 +/- 0.05 % free fatty acid content. The analyses of Fourier Transform Infrared Radiation (FTIR) and Gas Chromatography-Mass Spectrophotometry (GC-MS) revealed that oil from the M. eminii seeds has esters and looked-for fatty acids signifying its potential for biodiesel production. Major fatty acids include oleic (36.7 %), linoleic (24.3 %) and stearic (22.6 %) with minor components shared by palmitic (10.2 %), arachidic (2.6 %), y-linolenic (1.5 %), cis-11-eicosenoic (1.5 %) and behenic (0.5 %). The exploratory oil refining via UASE and transesterification resulted in 84.6 % biodiesel yield indicating its high conversion rate and demonstrating its potential as a feedstock for green diesel production. Hence, the coming of the liquid biofuel from the unexplored non-edible M. eminii seeds would benefit humanity and the environment as this would reduce the use of petroleum-based fuels that are known for producing much air pollution in the atmosphere.
机译:在这项研究中,响应面方法的中央复合设计用作使用超声辅助溶剂萃取(Uase)来优化来自Maesopsis eminii种子的油的提取的实验。分析了诸如提取时间和正己烷的最合适的操作变量值及其对生物质比及其对油产量的影响。 7:1 N-己烷至生物质比(140mL正己烷/ 20g种子粉末)和20分钟的提取时间被发现为最佳条件,以获得47.86 +/- 0.09%的油产率。油化学特性和组合物包括黄色,0.90g / ml密度,5.40 pH,47.9mm(2)/ s运动粘度,39.63mJ / kg高加热值> 200摄氏度,0.36 +/- 0.05%游离脂肪酸含量。傅里叶变换红外辐射(FTIR)和气相色谱 - 质谱法(GC-MS)的分析显示,来自M. eMinii种子的油具有酯类和寻找脂肪酸,这些脂肪酸表示其对生物柴油产生的潜力。主要脂肪酸包括油酸(36.7%),亚油(24.3%)和硬脂酸(22.6%),棕榈酸(10.2%)共享的次要组分,花生(2.6%),Y-亚麻(1.5%),CIS-11- Eicosenoonoic(1.5%)和Behenic(0.5%)。通过Uase和酯酯化的探索性炼油产生了84.6%的生物柴油产量,表明其高转化率,并将其作为绿色柴油生产原料的潜力。因此,来自未开发的不可食用的M. eminii种子的液体生物燃料的到来将使人类和环境受益,因为这将减少众所周知的石油燃料的使用,这些燃料可以在大气中产生大量的空气污染。

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