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首页> 外文期刊>Biotechnology and Bioengineering >Determination of diffusion coefficients and diffusion characteristics for chlorferon and diethylthiophosphate in Ca-alginate gel beads
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Determination of diffusion coefficients and diffusion characteristics for chlorferon and diethylthiophosphate in Ca-alginate gel beads

机译:海藻酸钙微珠中氯仿和二乙基硫代磷酸酯的扩散系数和扩散特性的测定

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摘要

Diffusion characteristics of chlorferon and diethylthiophosphate (DETP) in Ca-alginate gel beads were studied to assist in designing and operating bioreactor systems. Diffusion coefficients for chlorferon and DETP in Ca-alginate gel beads determined at conditions suitable for biodegradation studies were 2.70 x 10(-11) m(2)/s and 4.28 x 10(-11) m(2)/s, respectively. Diffusivities of chlorferon and DETP were influenced by several factors, including viscosity of the bulk solution, agitation speed, and the concentrations of diffusing substrate and immobilized cells. Diffusion coefficients increased with increasing agitation speed, probably due to poor mixing at low speed and some attrition of beads at high speeds. Diffusion coefficients also increased with decreasing substrate concentration. Increased cell concentration in the gel beads caused lower diffusivity. Theoretical models to predict diffusivities as a function of cell weight fraction overestimated the effective diffusivities for both chlorferon and DETP, but linear relations between effective diffusivity and cell weight fraction were derived from experimental data. Calcium-alginate gel beads with radii of 1.65-1.70 mm used in this study were not subject to diffusional limitations: external mass transfer resistances were negligible based on Biot number calculations and effectiveness factors indicated that internal mass transfer resistance was negligible. Therefore, the degradation rates of chlorferon and DETP inside Ca-alginate gel beads were reaction-limited.
机译:研究了氯藻酸和二乙基硫代磷酸酯(DETP)在藻酸盐钙微珠中的扩散特性,以帮助设计和操作生物反应器系统。在适合进行生物降解研究的条件下确定的藻酸钙微球中的氯feron和DETP的扩散系数分别为2.70 x 10(-11)m(2)/ s和4.28 x 10(-11)m(2)/ s。氯feron和DETP的扩散性受多种因素影响,包括本体溶液的粘度,搅拌速度以及扩散底物和固定化细胞的浓度。扩散系数随着搅拌速度的增加而增加,这可能是由于低速下混合不良以及高速下珠粒的磨损造成的。扩散系数也随着底物浓度的降低而增加。凝胶珠中细胞浓度的增加导致扩散性降低。预测扩散率随细胞重量分数而变化的理论模型高估了氯草隆和DETP的有效扩散率,但有效扩散率与细胞重量分数之间的线性关系是从实验数据中得出的。这项研究中使用的半径为1.65-1.70 mm的海藻酸钙凝胶珠不受扩散限制:根据Biot数计算,外部传质阻力可忽略不计,而有效因素表明内部传质阻力可忽略不计。因此,海藻酸钙凝胶珠内的氯铁和DETP的降解速率受到反应的限制。

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