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Modeling and kinetics of microwave assisted leaching based oil extraction from Bhat

机译:微波炉辅助浸出基油萃取的建模与动力学

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摘要

A polar green solvent based Microwave assisted oil extraction from low oil content source likebhatseed is one of the novel and sustainable approach. The understanding of exact mechanism of mass transfer and hence oil extraction is vital for its industrial scale application. The kinetics of oil extraction and their modeling is carried out in present investigation. The MAE of oil from different size particles (1, 2, and 4 mm) ofbhatseed sample was carried out through isopropanol as solvent. Fick's law based model and two stage (washing and diffusion) extraction based empirical model was fitted to the experimental data. Fick's law shown the best fit to all three particle sizes withR(2).98, .98, and .97, respectively. The diffusion rate was observed to be decreased from 0.54 to 0.26 min(-1)with increase in particle size. Empirical model shown that the washing stage was most predominant over diffusion with extraction rate few hundred times the diffusion. Practical Application In recent years, microwave assisted extraction (MAE) attracts the industrial interest because of various advantages. But, the phenomenon of MAE is considerably different than conventional solvent extraction. The understanding of insight in to the process of mass transfer kinetics taking place during extraction is the key requirement for design and scale-up of the extraction system. Therefore, the present investigation understands the mass transfer and extraction dynamics taking place at molecular level especially in low oil content source, which will help for large-scale commercial design of MAE systems.
机译:来自低油含量源的极性绿色溶剂的微波辅助油萃取是一种新颖和可持续的方法之一。对批量转移确切机制的理解对其产业规模应用至关重要。目前调查中进行了油提取的动力学及其建模。通过异丙醇作为溶剂进行不同尺寸颗粒(<1,2和4mm)的含有异丙醇的油的MAE。 Fick的基于定律的模型和两个阶段(清洗和扩散)基于实验数据的实证模型。 Fick的定律表明,分别最适合所有三种粒度(2).98,.98和.97。观察到扩散速率从0.54升至0.26分钟(-1),随着粒度的增加而降低至0.26分钟(-1)。实证模型表明,洗涤阶段在扩散的扩散中最占主导地位的扩散。近年来的实际应用,微波炉辅助提取(MAE)由于各种优势而吸引了工业利益。但是,MAE的现象比常规溶剂萃取相当不同。在提取过程中对大规模转移动力学过程的了解是对提取系统的设计和扩展的关键要求。因此,本研究了解在分子水平上进行的传质和提取动力学,特别是在低油含量源,这将有助于大规模的MAE系统商业设计。

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  • 来源
    《Journal of food process engineering》 |2020年第10期|e13503.1-e13503.9|共9页
  • 作者单位

    ICAR Cent Inst Agr Engn Bhopal India;

    GB Pant Univ Agr & Technol Pantnagar Uttar Pradesh India;

    GB Pant Univ Agr & Technol Pantnagar Uttar Pradesh India;

    GB Pant Univ Agr & Technol Pantnagar Uttar Pradesh India;

    GB Pant Univ Agr & Technol Pantnagar Uttar Pradesh India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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