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Estimation of mass transfer coefficients of the extraction process of essential oil from orange peel using microwave assisted extraction

机译:微波辅助萃取从橙皮中提取香精油的传质系数估算

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Microwave assisted extraction (MAE) is an emerging technique of extraction that improve yields and reduce process time and energy. The aim of this work was to evaluate the effect of different MAE process parameters in the extraction yield of orange peel essential oil (EO), and the description and simulation of this process with mathematical models based on mass transfer fundamentals. For the assessment of process parameters effects on EO yield, different extractions were carried out following a two-level factorial design varying orange peel particle shape (spheres or plaques) and moisture content (dry or not), as well as microwave potency (360 or 540 W). Results demonstrated that particle size, moisture content, and its interaction significantly affected (p < 0.05) the yield obtained and had an influence on the extraction mechanism. Model parameter values associated to mass transfer coefficients (k(1) and k(2)) indicated that diffusion was the process that defined extraction velocity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:微波辅助萃取(MAE)是一种新兴的萃取技术,可提高产量并减少工艺时间和能源。这项工作的目的是评估不同的MAE工艺参数对桔皮香精油(EO)提取率的影响,并使用基于传质基础的数学模型对该工艺进行描述和模拟。为了评估工艺参数对EO收率的影响,按照两级析因设计进行了不同的提取,这些设计改变了橙皮的颗粒形状(球形或斑块)和水分含量(干燥与否)以及微波效价(360或120)。 540瓦)。结果表明,粒径,含水量及其相互作用显着影响了获得的收率(p <0.05),并影响了萃取机理。与传质系数(k(1)和k(2))相关的模型参数值表明,扩散是定义萃取速度的过程。 (C)2015 Elsevier Ltd.保留所有权利。

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