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首页> 外文期刊>Journal of Food Technology >Astaxanthin from the Yeast Phaffia rhodozyma. Supercritical Carbon Dioxide and Organic Solvents Extraction
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Astaxanthin from the Yeast Phaffia rhodozyma. Supercritical Carbon Dioxide and Organic Solvents Extraction

机译:来自酵母红发酵母的虾青素。超临界二氧化碳和有机溶剂的萃取

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摘要

Supercritical carbon dioxide extraction of astaxanthin from Phaffia rodozyma was carried out, for several experimental conditions, using a semi-continuous apparatus. The yeast was previously freeze-dried and ground with a ball mill. The effects of the pressure (200 and 300 bar), temperature (40, 50 and 60?C) and supercritical solvent superficial velocities of 1.2 and 2.4 cm min, as well as the use of ethanol, as co-solvent (10 mol %), on the extraction efficiency were assessed. Organic solvent extractions, using acetone, dimethyl sulfoxide (DMSO) and a mixture of methanol and dichloromethane, were also carried out on whole and ground cells. The extraction with acetone of astaxanthin from ground Phaffia led to the highest yield. Supercritical extraction was compared with the organic extraction, and the highest recovery (75%) was achieved at the pressure of 300 bar, the temperature of 40?C and using ethanol as co-solvent. The lowest recovery of supercritical extraction was obtained at the pressure of 200 bar and the temperature of 50?C, without co-solvent. Moreover, the extraction yield increased with the pressure at constant temperature. On the contrary, the increase f temperature at constant pressure led to a decrease of the yield at 200 bar and to a slight decrease at 300 bar. Furthermore, the yield decreased with the flow rate.
机译:在几个实验条件下,使用半连续装置从罗非鱼(Paffia rodozyma)中超临界二氧化碳萃取虾青素。预先将酵母冷冻干燥并用球磨机研磨。压力(200和300 bar),温度(40、50和60?C)和1.2和2.4 cm min的超临界溶剂表面速度以及使用乙醇作为助溶剂(10 mol%)的影响),对提取效率进行了评估。还使用了丙酮,二甲基亚砜(DMSO)以及甲醇和二氯甲烷的混合物对有机电池和磨碎的细胞进行了有机溶剂萃取。用丙酮从丙酮酸镁粉中提取虾青素可以得到最高的收率。将超临界萃取与有机萃取进行了比较,在300 bar的压力,40°C的温度以及使用乙醇作为助溶剂的情况下,回收率最高(75%)。在没有助溶剂的情况下,在200 bar的压力和50°C的温度下,超临界萃取的回收率最低。此外,在恒定温度下,萃取产率随压力的增加而增加。相反,在恒定压力下温度的升高导致200 bar时屈服值降低,而300 bar时屈服率略有降低。此外,产率随流速降低。

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