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A Pilot-Scale Supercritical Carbon Dioxide Extraction to Valorize Colombian Mango Seed Kernel

机译:试验规模超临界二氧化碳提取以达罗泽哥伦比亚芒果种子核

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摘要

Colombian mango production, which exceeded 261,000 t in 2020, generates about 40% of the whole fruit as solid waste, of which more than 50% are seed kernels (over 52,000 t solid by-product); though none is currently used for commercial purposes. This study reports the results of the supercritical carbon dioxide (scCO2) extraction of an oil rich in essential fatty acids (EFAs) from revalorized mango seed kernels and the optimization of the process by the Response Surface Methodology (RSM). In pilot-scale scCO2 experiments, pressure (23–37 MPa) and temperature (52–73 °C) were varied, using 4.5 kg of CO2. The highest experimental oil extraction yield was 83 g/kg (37 MPa and 63 °C); while RSM predicted that 84 g/kg would be extracted at 35 MPa and 65 °C. Moreover, by fine-tuning pressure and temperature it was possible to obtain an EFA-rich lipid fraction in linoleic (37 g/kg) and α-linolenic (4 g/kg) acids, along with a high oleic acid content (155 g/kg), by using a relatively low extraction pressure (23 MPa), which makes the process a promising approach for the extraction of oil from mango waste on an industrial scale, based on a circular economy model.
机译:2020年超过261,000吨的哥伦比亚芒果产量产生约40%的整个水果作为固体废物,其中50%以上是种子核(超过52,000吨固体副产物);虽然没有目前用于商业目的。本研究报告了来自Revalized芒果种子核的超临界二氧化碳(SCCO2)富含富含脂肪酸(EFA)的石油的结果,并通过响应表面方法(RSM)优化工艺的优化。在试验标尺SCCO2实验中,使用4.5kg CO 2改变压力(23-37MPa)和温度(52-73℃)。最高的实验油萃取产率为83克/千克(37MPa和63°C);虽然RSM预测,84克/千克将以35MPa和65°C提取。此外,通过微调压力和温度,可以在亚油(37g / kg)和α-亚麻酸(4g / kg)酸中获得富含EFA的脂质级分,以及高油酸含量(155克/ kg)通过使用相对低的提取压力(23MPa),这使得该过程基于循环经济模型,该方法是在工业规模上从芒果废物中提取油的有希望的方法。

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