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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Process optimization and analysis of product inhibition kinetics of crude glycerol fermentation for 1,3-Dihydroxyacetone production
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Process optimization and analysis of product inhibition kinetics of crude glycerol fermentation for 1,3-Dihydroxyacetone production

机译:1,3-二羟基丙酮生产粗甘油发酵产物抑制动力学的过程优化及分析

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摘要

In present study, statistical optimization of biodiesel-derived crude glycerol fermentation to DHA by immobilized G. oxydans cells over polyurethane foam is reported. Effect of DHA (product) inhibition on crude glycerol fermentation was analyzed using conventional biokinetic models and new model that accounts for both substrate and product inhibition. Optimum values of fermentation parameters were: pH= 4.7, temperature = 31 degrees C, initial substrate concentration = 20 g/L. At optimum conditions, DHA yield was 89% (17.83 g/L). Effect of product inhibition on fermentation was trivial for DHA concentrations <= 30 g/L. At higher concentrations (>= 50 g/L), kinetics and yield of fermentation showed marked reduction with sharp drop in V-max and K-S values. Inhibition effect was more pronounced for immobilized cells due to restricted transport of fermentation mixture across polyurethane foam. Retention of fermentation mixture in immobilized matrix resulted in higher localized DHA concentration that possibly enhanced inhibition effect.
机译:在本研究中,报道了通过固定的G.氧氨酸细胞在聚氨酯泡沫上进行生物柴油衍生的粗甘油发酵对DHA的统计优化。利用常规的生物致动模型和用于底物和产品抑制的新模型分析DHA(产物)抑制对粗甘油发酵的影响。发酵参数的最佳值为:pH = 4.7,温度= 31℃,初始衬底浓度= 20g / L.在最佳条件下,DHA产率为89%(17.83克/升)。 DHA浓度的效果抑制发酵对发酵的影响<= 30g / L.在较高的浓度(> = 50g / L),发酵动力学和发酵产率显示出明显的降低,V-Max和K-S值急剧下降。由于在聚氨酯泡沫上限制发酵混合物的传输,因此对固定细胞更加明显抑制作用。固定化基质中发酵混合物的保留导致较高的局部DHA浓度,可能增强了抑制作用。

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