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Supercritical Extraction of Lycopene from Tomato Industrial Waste with Ethane

机译:乙烷超临界萃取番茄工业废番茄红素

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摘要

Supercritical fluid extraction of all-E-lycopene from tomato industrial wastes (mixture of skins and seeds) was carried out in a semi-continuous flow apparatus using ethane as supercritical solvent. The effect of pressure, temperature, feed particle size, solvent superficial velocity and matrix initial composition was evaluated. Moreover, the yield of the extraction was compared with that obtained with other supercritical solvents (supercritical CO2 and a near critical mixture of ethane and propane). The recovery of all-E-lycopene increased with pressure, decreased with the increase of the particle size in the initial stages of the extraction and was not practically affected by the solvent superficial velocity. The effect of the temperature was more complex. When the temperature increased from 40 to 60 °C the recovery of all-E-lycopene increased from 80 to 90%. However, for a further increase to 80 °C, the recovery remained almost the same, indicating that some E-Z isomerization could have occurred, as well as some degradation of lycopene. The recovery of all-E-lycopene was almost the same for feed samples with different all-E-lycopene content. Furthermore, when a batch with a higher all-E-lycopene content was used, supercritical ethane and a near critical mixture of ethane and propane showed to be better solvents than supercritical CO2 leading to a faster extraction with a higher recovery of the carotenoid.
机译:在半连续流动装置中,使用乙烷作为超临界溶剂,从番茄工业废料(表皮和种子的混合物)中超临界流体萃取全E-番茄红素。评价了压力,温度,进料粒度,溶剂表观速度和基质初始组成的影响。此外,将提取的收率与其他超临界溶剂(超临界CO2以及乙烷和丙烷的近临界混合物)的收率进行了比较。在萃取初期,全E-番茄红素的回收率随压力的增加而增加,随粒径的增加而降低,实际上不受溶剂表观速度的影响。温度的影响更为复杂。当温度从40升至60°C时,全E-番茄红素的回收率从80%增至90%。但是,如果进一步提高到80°C,回收率几乎保持不变,表明可能发生了一些E-Z异构化以及番茄红素的降解。对于具有不同全E-番茄红素含量的饲料样品,全E-番茄红素的回收率几乎相同。此外,当使用一批具有较高全E-番茄红素含量的批次时,与超临界CO2相比,超临界乙烷以及乙烷和丙烷的近临界混合物显示出更好的溶剂,从而导致提取速度更快,并且类胡萝卜素的回收率更高。

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