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产朊假丝酵母在菠萝罐头厂废水中的连续生长动力学

Continuous growth kinetics of Candida utilis in pineapple cannery effluent.

作者信息

Prior B A

机构信息

Department of Microbiology, University of the Orange Free State, PO Box 339, Bloemfontein, South Africa.

出版信息

Biotechnol Bioeng. 1984 Jul;26(7):748-52. doi: 10.1002/bit.260260718.

Abstract

Candida utilis was grown on a pineapple cannery effluent as the sole carbon and energy source in a chemostat at dilution rates between 0.10 and 0.62 h(-1) to determine the growth kinetics. The principal sugars in the effluent were sucrose, glucose, and fructose. The cell yield coefficient on carbohydrate varied with dilution rate and a maximum value of 0.63 was observed at a dilution rate of 0.33 h(-1). The steady-state concentrations of carbohydrate, reducing sugar, and chemical oxygen demand (COD) appeared to follow Monod saturation kinetics with increasing dilution rate, although none of the measured parameters represented a pure substrate. The maximum specific growth rate and reducing sugar saturation constant were 0.64 h(-1) and 0.060 g/L, respectively. A maximum cell mass productivity of 2.3 g/L h was observed at a dilution rate of 0.51 h(-1). At this dilution rate, only 68% of the COD was removed. A 95% COD removal was attained at a dilution rate of 0.10 h(-1). Optimal yeast productivity and COD reduction occurred at a dilution rate of 0.33 h(-1).

摘要

以菠萝罐头厂废水作为唯一碳源和能源,在恒化器中于0.10至0.62 h⁻¹的稀释率下培养产朊假丝酵母,以确定其生长动力学。废水中的主要糖类为蔗糖、葡萄糖和果糖。基于碳水化合物的细胞得率系数随稀释率而变化,在稀释率为0.33 h⁻¹时观察到最大值0.63。尽管所测参数均不代表纯底物,但随着稀释率增加,碳水化合物、还原糖和化学需氧量(COD)的稳态浓度似乎遵循莫诺德饱和动力学。最大比生长速率和还原糖饱和常数分别为0.64 h⁻¹和0.060 g/L。在稀释率为0.51 h⁻¹时观察到最大细胞质量生产率为2.3 g/(L·h)。在此稀释率下,仅去除了68%的COD。在稀释率为0.10 h⁻¹时,COD去除率达到95%。在稀释率为0.33 h⁻¹时,酵母生产率和COD降低效果最佳。

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