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利用固定在粘土载体上的脂肪酶 Lipozyme® TL 100 L 进行单甘酯和二甘酯合成的动力学建模与优化。

Kinetic modeling and optimization of the mono- and diglycerides synthesis mediated by the lipase Lipozyme® TL 100 L immobilized on clayey support.

机构信息

Department of Chemical Engineering, Western State University of Paraná, Toledo, PR, Brazil.

Department of Bioprocess and Biotechnology Engineering, Federal Technological University of Paraná, Toledo, PR, Brazil.

出版信息

Bioprocess Biosyst Eng. 2024 May;47(5):697-712. doi: 10.1007/s00449-024-02999-1. Epub 2024 Mar 27.

Abstract

Mono- and diglycerides play a crucial role in the food industry as multifunctional food additives and emulsifiers. Their importance stems from their unique properties, which allow them to improve the quality, texture, and stability of various food products. Here, results of the kinetic modeling of the mono- and diglycerides synthesis mediated by the lipase Lipozyme® TL 100 L immobilized on the clayey support Spectrogel® type C are reported. The support was characterized by TEM, SEM, and FTIR. Firstly, the influence of pH and lipase load on the immobilization process was analyzed, resulting in an enzymatic activity of 93.2 ± 0.7 U g under optimized conditions (170.9 U g of lipase and pH of 7.1). Afterward, the effects of reaction temperature and concentration of immobilized biocatalyst in the feedstock conversion were evaluated. At optimized parameters, a triglycerides conversion of 97% was obtained at 36.5 °C, 7.9 vol.% of enzyme, a glycerol to feedstock molar ratio of 2:1, and 2 h. The optimized conditions were used to determine the kinetic constants of the elementary reactions involved in the glycerolysis, where a fit superior to 0.99 was achieved between experimental values and predicted data.

摘要

单甘酯和双甘酯作为多功能食品添加剂和乳化剂,在食品工业中起着至关重要的作用。它们的重要性源于其独特的性质,使它们能够改善各种食品产品的质量、质地和稳定性。在这里,报道了固定在粘土载体 Spectrogel® 型 C 上的脂肪酶 Lipozyme® TL 100 L 介导的单甘酯和双甘酯合成的动力学模型的结果。该载体通过 TEM、SEM 和 FTIR 进行了表征。首先,分析了 pH 和脂肪酶负载对固定化过程的影响,在优化条件下(170.9 U/g 的脂肪酶和 pH 为 7.1),得到了 93.2 ± 0.7 U/g 的酶活性。然后,评估了反应温度和固定化生物催化剂在原料转化中的浓度对反应的影响。在优化的参数下,在 36.5°C、7.9 体积%的酶、甘油与原料摩尔比为 2:1 和 2 小时的条件下,可获得 97%的三酸甘油酯转化率。优化条件用于确定甘油解涉及的基本反应的动力学常数,实验值和预测数据之间的拟合度达到 0.99 以上。

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