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超声辅助酒精提取黄粉虫幼虫油:工艺优化、理化特性及能耗

Ultrasound-Assisted Alcoholic Extraction of Lesser Mealworm Larvae Oil: Process Optimization, Physicochemical Characteristics, and Energy Consumption.

作者信息

Gharibzahedi Seyed Mohammad Taghi, Altintas Zeynep

机构信息

Institute of Chemistry, Faculty of Natural Sciences and Maths, Technical University of Berlin, Straße des 17, Juni 124, 10623 Berlin, Germany.

Institute of Materials Science, Faculty of Engineering, Kiel University, 24143 Kiel, Germany.

出版信息

Antioxidants (Basel). 2022 Sep 28;11(10):1943. doi: 10.3390/antiox11101943.

Abstract

The ultrasound-assisted extraction (UAE) of oil from lesser mealworm (Alphitobius diaperinus L.) larvae powders (LMLPs) using ethanol/isopropanol as the superior solvent was optimized. The evaluation of time (9.89−35.11 min), solvent-to-LMLPs (2.39−27.61 v/w), and temperature (16.36−83.64 °C) showed that the highest extraction efficiency (EE, 88.08%) and in vitro antioxidant activity (IVAA) of reducing power (0.651), and DPPH free-radical scavenging capacity (70.79%) were achieved at 22.5 v/w solvent-to-LMLPs and 70 °C for 22.64 min. Optimal ultrasound conditions significantly improved the EE than n-hexane extraction (60.09%) by reducing the electric energy consumption by ~18.5 times from 0.637 to 0.035 kWh/g. The oil diffusivity in ethanol-isopropanol during the UAE (0.97 × 10−9 m2/s) was much better than that of n-hexane (5.07 × 10−11 m2/s). The microstructural images confirmed the high efficiency of ethanol-isopropanol in the presence of ultrasounds to remove oil flakes from the internal and external surfaces of LMLPs. The improved IVAA was significantly associated with the total phenolic (4.306 mg GAE/g, r = 0.991) and carotenoid (0.778 mg/g, r = 0.937) contents (p < 0.01). Although there was no significant difference in the fatty acid profile between the two extracted oils, ethanol-isopropanol under sonication acceptably improved oxidative stability with lower peroxides, conjugated dienes and trienes, and free fatty acids.

摘要

以乙醇/异丙醇作为优良溶剂,对利用超声辅助从黄粉虫(Alphitobius diaperinus L.)幼虫粉末(LMLP)中提取油脂进行了优化。对时间(9.89 - 35.11分钟)、溶剂与LMLP的比例(2.39 - 27.61 v/w)和温度(16.36 - 83.64 °C)进行评估后发现,当溶剂与LMLP的比例为22.5 v/w、温度为70 °C、时间为22.64分钟时,提取效率(EE,88.08%)以及体外抗氧化活性(IVAA)中的还原能力(0.651)和DPPH自由基清除能力(70.79%)达到最高。与正己烷提取法(60.09%)相比,优化后的超声条件显著提高了提取效率,电能消耗从0.637降至0.035 kWh/g,降低了约18.5倍。超声辅助提取过程中乙醇 - 异丙醇体系中油脂的扩散系数(0.97 × 10−9 m2/s)远优于正己烷(5.07 × 10−11 m2/s)。微观结构图像证实了在超声作用下乙醇 - 异丙醇从LMLP内外表面去除油片的高效性。体外抗氧化活性的提高与总酚含量(4.306 mg GAE/g,r = 0.991)和类胡萝卜素含量(0.778 mg/g,r = 0.937)显著相关(p < 0.01)。尽管两种提取油的脂肪酸组成没有显著差异,但超声作用下的乙醇 - 异丙醇可通过降低过氧化物、共轭二烯和三烯以及游离脂肪酸的含量,令人满意地提高氧化稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc22/9598858/fc4c0bf2ba9a/antioxidants-11-01943-g001.jpg

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