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超声处理对橄榄叶组织的机械损伤和热效应。对多酚回收的影响。

Mechanical damage and thermal effect induced by ultrasonic treatment in olive leaf tissue. Impact on polyphenols recovery.

机构信息

Centre d'Analyses et de Recherche, Unité de Recherche Technologies et Valorisation Agro-Alimentaire, Faculté des Sciences, Saint-Joseph University, P. O. Box 17-5208 Riad El Solh, Beirut 1104 2020, Lebanon.

Université de Technologie de Compiègne, Génie des Procédés Industriels, EA 4297, Unité Transformations Intégrées de la Matière Renouvelable, 60205 Compiègne Cedex, France.

出版信息

Ultrason Sonochem. 2022 Jan;82:105895. doi: 10.1016/j.ultsonch.2021.105895. Epub 2021 Dec 27.

Abstract

The influence of ultrasound treatment (US) on cellular damage of olive leaf tissue was studied. Mechanical damage and thermal effect of US were characterized. The level of tissue damage was defined by the diffusivity disintegration index Z based on the diffusivity of solutes extracted from olive leaves differently treated. The Arrhenius form using the temperature dependences of the thermal treatment time within the temperature interval 20-90 °C was observed for the thermal process. The corresponding activation energy ΔUT was estimated as 57 kJ/mol. The temperature dependences of electrical conductivity were measured for extracts of intact and maximally treated olive leaves. Then the diffusivity disintegration index Z and total phenolic compounds recovery for three studied US powers were calculated (100, 200, and 400 W). The results evidenced that the mechanically stimulated damage in olive leaf tissue can occur even at a low US power of 100 W if treatment time is long enough (t = 3.5 h). The US treatment noticeably accelerated the diffusion process mechanically in addition to its thermal effect. Trials in aqueous solution revealed the dependence of polyphenols extraction on damage level with respect to the US power applied.

摘要

研究了超声处理(US)对橄榄叶组织细胞损伤的影响。对 US 的机械损伤和热效应进行了表征。通过基于从不同处理的橄榄叶中提取的溶质的扩散率来定义组织损伤程度的扩散率解体指数 Z。观察了在 20-90°C 温度范围内热处理时间的温度依赖性的 Arrhenius 形式。估计相应的活化能 ΔUT 为 57 kJ/mol。测量了完整和最大处理的橄榄叶提取物的电导率温度依赖性。然后计算了三种研究的 US 功率(100、200 和 400 W)下的扩散率解体指数 Z 和总酚类化合物回收率。结果表明,如果处理时间足够长(t=3.5 h),即使在低功率 100 W 的 US 下也可能发生橄榄叶组织的机械刺激损伤。US 处理除了其热效应之外,还明显加速了机械扩散过程。在水溶液中的试验表明,多酚提取与应用的 US 功率相对于损伤水平有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/781a/8799614/78c5b9cc9ab7/ga1.jpg

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