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Kinetic models and process parameters for ultrasound-assisted extraction of water-soluble components and polysaccharides from a medicinal fungus

机译:超声波从药用真菌中提取水溶性成分和多糖的动力学模型和工艺参数

摘要

This study was on the kinetics and process parameters for ultrasound-assisted extraction (UAE) of water-soluble components and polysaccharides (PS) from the dry mycelium of a medicinal fungus, Cordyceps sinensis Cs-HK1. Four process variables (factors) were evaluated at different levels, ultrasound intensity (2.44-44.1W/cm2), temperature (40-70°C), solid particle size (156.5-750μm), and solid-to-liquid ratio (1/30-1/70g/mL). The experimental data of yields versus time in most cases were fitted closely to two empirical kinetic models for solid-liquid extraction, parabolic diffusion equation (y=yo+y1t1/2) and power law (y=βtn) with high correlation coefficients (R2) of 0.95-0.99 for total extract yield, and 0.90-0.96 for PS yield. The PS yield was increased more significantly than the total extract yield with the ultrasound intensity. Reducing the particle size and increasing the extraction temperature led to a higher yield and extraction rate; increasing the solid-to-liquid ratio (or decreasing the liquid volume) increased the PS yield and extraction rate but had little influence on the total extract. Significant correlations were found between extraction rate (dy/dt) and ultrasound power density (P/V), and between extract yield (y) and energy density (Pt/V). The kinetic and process parameters are useful for rational design and efficient operation of UAE processes.
机译:这项研究的动力学和工艺参数用于从药用真菌冬虫夏草Cs-HK1的干菌丝体中超声辅助提取(UAE)水溶性成分和多糖(PS)。在不同的水平上评估了四个过程变量(因素),超声强度(2.44-44.1W / cm2),温度(40-70°C),固体粒径(156.5-750μm)和固液比(1 / 30-1 / 70g / mL)。在大多数情况下,产率与时间的实验数据与固液萃取的两个经验动力学模型,抛物线扩散方程(y = yo + y1t1 / 2)和幂律(y =βtn)紧密相关,具有较高的相关系数(R2) )的总提取物产率为0.95-0.99,PS的产率为0.90-0.96。随着超声强度的增加,PS产量比总提取物产量显着增加。减小粒径和提高提取温度可提高收率和提取率。增加固液比(或减少液体体积)可提高PS的收率和提取率,但对总提取物的影响很小。发现提取率(dy / dt)与超声功率密度(P / V)之间,提取物产率(y)与能量密度(Pt / V)之间存在显着相关性。动力学参数和过程参数对于合理设计和有效运行阿联酋过程很有用。

著录项

  • 作者

    Cheung YC; Wu JY;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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