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瞬时控制降压技术和超声辅助提取法用于精油和抗氧化剂的顺序提取。

Instant controlled pressure drop technology and ultrasound assisted extraction for sequential extraction of essential oil and antioxidants.

机构信息

Université d'Avignon et des Pays de Vaucluse, INRA, UMR408, F-84000 Avignon, France.

出版信息

Ultrason Sonochem. 2013 Jan;20(1):239-46. doi: 10.1016/j.ultsonch.2012.05.013. Epub 2012 Jun 1.

Abstract

The instant controlled pressure drop (DIC) technology enabled both the extraction of essential oil and the expansion of the matrix itself which improved solvent extraction. The sequential use of DIC and Ultrasound Assisted Extraction (UAE) triggered complementary actions materialized by supplementary effects. We visualized these combination impacts by comparing them to standard techniques: Hydrodistillation (HD) and Solvent Extraction (SE). First, the extraction of orange peel Essential Oils (EO) was achieved by HD during 4h and DIC process (after optimization) during 2 min; EO yields was 1.97 mg/g dry material (dm) with HD compared to 16.57 mg/g d m with DIC. Second, the solid residue was recovered to extract antioxidant compounds (naringin and hesperidin) by SE and UAE. Scanning electron microscope showed that after HD the recovered solid shriveled as opposite to DIC treatment which expanded the product structure. HPLC analyses showed that the best kinetics and yields of naringin and hesperidin extraction was when DIC and UAE are combined. Indeed, after 1h of extraction, DIC treated orange peels with UAE were 0.825 ± 1.6 × 10(-2)g/g of dry material (dm) for hesperidin and 6.45 × 10(-2) ± 2.3 × 10(-4)g/g d m for naringin compared to 0.64 ± 2.7 × 10(-2)g/g of dry material (dm) and 5.7 × 10(-2) ± 1.6 × 10(-3)g/g d m, respectively with SE. By combining DIC to UAE, it was possible to enhance kinetics and yields of antioxidant extraction.

摘要

瞬时压力下降(DIC)技术不仅实现了精油的提取,而且还扩展了基质本身,从而提高了溶剂提取的效果。连续使用 DIC 和超声波辅助提取(UAE)引发了互补作用,这些互补作用通过补充效果来实现。我们通过将这些组合影响与标准技术(水蒸馏(HD)和溶剂提取(SE))进行比较,来观察这些组合影响。首先,通过 HD 在 4 小时内和优化后的 DIC 过程(2 分钟)提取橙皮精油(EO);与 HD 相比,EO 得率为 1.97mg/g 干物质(dm),而 DIC 为 16.57mg/g dm。其次,回收固体残渣以通过 SE 和 UAE 提取抗氧化化合物(柚皮苷和橙皮苷)。扫描电子显微镜显示,与 DIC 处理相反,HD 处理后回收的固体皱缩,扩大了产品结构。HPLC 分析表明,当 DIC 和 UAE 结合使用时,柚皮苷和橙皮苷提取的最佳动力学和产率。实际上,在提取 1 小时后,用 UAE 处理的 DIC 橙皮中,柚皮苷的提取动力学和产率分别为 0.825±1.6×10(-2)g/g dm 和 6.45×10(-2)±2.3×10(-4)g/g dm,而 SE 分别为 0.64±2.7×10(-2)g/g dm 和 5.7×10(-2)±1.6×10(-3)g/g dm。通过将 DIC 与 UAE 结合,可以提高抗氧化剂提取的动力学和产率。

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