首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >The effect of pressure on the characteristics of supercritical carbon dioxide extracts from Calamintha nepeta subsp. nepeta
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The effect of pressure on the characteristics of supercritical carbon dioxide extracts from Calamintha nepeta subsp. nepeta

机译:压力对Calamintha Nepeta Subsp的超临界二氧化碳提取物特性的影响。 弥补网站

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摘要

Chemists and industrialists are continuously attempting to develop greener and more environmentally benign chemical processes to extract essential oils and bioactive metabolites of high purity, finding various applications in cosmetics, detergents, nutraceuticals and Pharmaceuticals. An increase preferenced for natural products over synthetic ones has made supercritical fluid technology a primary alternative for the generation of high-value bioactive ingredients. This effective technique requires only moderate temperatures, eliminates clean-up steps and avoids the use of harmful organic solvents. In this context, our study was focused on the chemical analysis of Calamintha nepeta subsp. nepeta aromatic extracts obtained with supercritical carbon dioxide. The effect of different operating conditions on the capacity of the lipophilic solvent to extract the targeted volatile components was also studied. The process was carried out at a fairly low constant temperature of 40°C, and with varying the pressure from 90 to 300 bar. The chemical composition of the extracts was analyzed by gas chromatography-mass spectroscopy. The results showed that the composition pattern, the concentrations of individual components and the quality of the extractable analytes were affected by pressure increase. The extraction yields varied from 0.73 to 1.21 wt% at 90 and 300 bar, respectively.
机译:化学家和工业家不断尝试开发更环保的更环保的良性化学过程,以提取高纯度的精油和生物活性代谢物,在化妆品,洗涤剂,营养保健品和药物中寻找各种应用。对合成型天然产物优选的增加已经使超临界流体技术成为生成高价值生物活性成分的初级替代品。这种有效技术只需要中等温度,消除清理步骤,避免使用有害的有机溶剂。在这种情况下,我们的研究专注于Calamintha Nepeta Subsp的化学分析。用超临界二氧化碳获得的弥补芳族提取物。还研究了不同操作条件对提取靶向挥发性组分的亲脂溶剂的能力的影响。该方法在40℃的相当低的恒定温度下进行,并改变90至300巴的压力。通过气相色谱 - 质谱分析提取物的化学成分。结果表明,组合物图案,各个组分的浓度和可提取的分析物的质量受到压力增加的影响。萃取产率分别在90和300巴的0.73至1.21wt%中变化。

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