首页> 外文期刊>The Journal of Supercritical Fluids >Optimization of the supercritical fluid coextraction of oil and diterpenes from spent coffee grounds using experimental design and response surface methodology
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Optimization of the supercritical fluid coextraction of oil and diterpenes from spent coffee grounds using experimental design and response surface methodology

机译:使用实验设计和响应面方法优化从废咖啡渣中油和二萜类化合物的超临界流体共萃取

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摘要

The reported work aimed at the optimization of operating conditions of the supercritical fluid extraction (SFE) of spent coffee grounds (SCG) using pure or modified CO2, with particular emphasis on oil enrichment with diterpenes like kahweol, cafestol and 16-O-methylcafestol. The analysis comprised the application of Box-Behnken design of experiments and response surface methodology, and involved three operating variables: pressure (140-190 bar), temperature (40-70 °C) and cosolvent (ethanol) addition (0-5wt.%). The best conditions to maximize total extraction yield are 190 bar/55°C/5wt.% EtOH, leading to 11.97% (g_(oil)/100g_(SCG)). In terms of the concentration of diterpenic compounds in the supercritical extracts, the best operating conditions are 140 bar/40°C/0 wt.% EtOH, providing 102.90 mg g_(oil)~(-1)-The measurement of extraction curves near optimized conditions (140bar/55°C/0wt.% EtOH and 190 bar/55 ° C/0 wt.% EtOH) confirmed the trends of the statistical analysis and revealed that SFE enhances diterpenes concentration by 212-410% at the expenses of reducing the extraction yield between 39% and 79% in comparison to n-hexane extraction.
机译:报道的工作旨在优化使用纯净或改性CO2的废咖啡渣(SCG)的超临界流体萃取(SFE)的操作条件,特别是强调使用二萜烯(如甘蔗酚,咖啡酚和16-O-甲基卡夫甾醇)进行富油。分析包括应用Box-Behnken设计的实验和响应面方法,涉及三个操作变量:压力(140-190 bar),温度(40-70°C)和助溶剂(乙醇)添加量(0-5wt。 %)。使总提取率最大化的最佳条件是190 bar / 55°C / 5wt。%EtOH,达到11.97%(g_(油)/ 100g_(SCG))。就超临界萃取物中二萜类化合物的浓度而言,最佳操作条件是140 bar / 40°C / 0 wt。%EtOH,可提供102.90 mg g_(oil)〜(-1)-接近萃取曲线的测量值优化的条件(140bar / 55°C / 0wt。%的EtOH和190 bar / 55°C / 0 wt。%的EtOH)证实了统计分析的趋势,并显示SFE可以将二萜的浓度提高212-410%,而代价是与正己烷萃取相比,萃取产率降低了39%至79%。

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