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Influence of operating parameters on supercritical fluid extraction of essential oil from turmeric root

机译:操作参数对姜黄根精油超临界萃取的影响

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摘要

Turmeric oil was extracted from Curcuma Longa herb (turmeric root) using supercritical fluid extraction (SFE) process. Full-face central composite design was employed to optimize operating parameters of the process. These parameters were pressure, temperature, solvent flow rate, particle size and addition of co-solvent (ethanol) that varied as 20-40 MPa, 40-60 degrees C, 5-15 g/min, 0-0.8 mm and 0-15% of solvent rate, respectively. Turmeric oil yield found through Soxhlet extraction was 5.954 wt% of turmeric powder whereas through SFE, it varied from 2 to 5.3 wt%. Turmerone and curcumin were identified as principle compounds of turmeric essential oil, which were analyzed using Gas chromatography-mass spectrometry and Ultraviolet-visible Spectrophotometer, respectively. Experimental data of oil yield, Curcumin content and Turmerone content were fitted well in the Quadratic model. Optimized values of operating parameters for maximizing these responses were also predicted. Further, economic assessment of SFE of turmeric oil at industrial scale for 60 t/y production capacity was performed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:姜黄油是使用超临界流体萃取(SFE)工艺从姜黄草药(姜黄根)中提取的。采用全面中央复合设计来优化工艺的操作参数。这些参数是压力,温度,溶剂流速,粒度和助溶剂(乙醇)的添加量,变化范围为20-40 MPa,40-60摄氏度,5-15 g / min,0-0.8毫米和0-溶剂率分别为15%。通过索格利特萃取发现的姜黄油产率为姜黄粉的5.954 wt%,而通过SFE,其产率为2至5.3 wt%。姜黄素和姜黄素是姜黄精油的主要化合物,分别用气相色谱-质谱和紫外可见分光光度计进行了分析。在二次模型中,油产量,姜黄素含量和Turmerone含量的实验数据拟合得很好。还预测了用于最大化这些响应的最佳运行参数值。此外,进行了工业规模姜黄油SFE在60吨/年产能下的经济评估。 (C)2018 Elsevier Ltd.保留所有权利。

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