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首页> 外文期刊>Food and bioprocess technology >Discoloration kinetics of clarified apple juice treated with LewatitReg. S 4528 adsorbent resin during processing.
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Discoloration kinetics of clarified apple juice treated with LewatitReg. S 4528 adsorbent resin during processing.

机译:LewatitReg处理的澄清苹果汁的变色动力学。 S 4528加工过程中的吸附树脂。

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The present work studies the adsorption of colored compounds in apple juice with a LewatitReg. resin S 4528. The sorption equilibrium through the adsorption isotherms for 20, 35, and 50 degrees C was studied. The absorbance at 420 nm was used to measure the concentration of colored compounds, which permits correlating the residual concentration with the adsorbed concentration, proving that the data matched reasonably well according to the Langmuir and Freundlich models. Also, the efficiency of the adsorption process was studied for different resin/juice mass ratios at different temperatures, from which it was observed that there was an improvement in efficiency as the resin content increased, while the increase in temperature was not so important in the process. The adsorption kinetics at 35 degrees C for different resin/juice mass ratios was also studied. The kinetic model developed by Ibarz was used, concluding that the data matched this model reasonably well. The adsorption kinetic constant was always higher than the desorption kinetic constant, which indicates that the adsorption stage predominates the desorption stage. The adsorption kinetic constant shows a decreasing tendency with the raise in the resin/juice ratio, and the desorption kinetic constant shows an increasing tendency. The variation of the CIELab color parameters (L*, a*, and b*) with the adsorption time was studied, obtaining results that match the kinetic adsorption model proposed.
机译:目前的工作研究了LewatitReg对苹果汁中有色化合物的吸附。树脂S4528。研究了在20、35和50摄氏度下通过吸附等温线的吸附平衡。 420 nm处的吸光度用于测量有色化合物的浓度,这可以使残留浓度与吸附浓度相关联,证明根据Langmuir和Freundlich模型,数据合理匹配。同样,研究了在不同温度下不同树脂/果汁质量比下吸附过程的效率,从中可以看出,随着树脂含量的增加,效率有所提高,而温度的升高在树脂温度下并不那么重要。处理。还研究了在35摄氏度下不同树脂/果汁质量比的吸附动力学。使用了由Ibarz开发的动力学模型,结论是数据与该模型相当吻合。吸附动力学常数始终高于解吸动力学常数,这表明吸附阶段占主导地位。吸附动力学常数显示出随着树脂/果汁比的增加而降低的趋势,而解吸动力学常数显示出升高的趋势。研究了CIELab颜色参数(L *,a *和b *)随吸附时间的变化,获得了与所提出的动力学吸附模型相匹配的结果。

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