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Biodegradation kinetics of peptone and 2,6-dihydroxybenzoic acid by acclimated dual microbial culture

机译:适应性双重微生物培养对蛋白ept和2,6-二羟基苯甲酸的生物降解动力学

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摘要

This study evaluated the kinetics of simultaneous biodegradation of peptone mixture and 2,6-dihydroxybenzoic acid (2,6-DHBA) by an acclimated dual microbial culture under aerobic conditions. A laboratory-scale sequencing batch reactor was sustained at steady-state with peptone mixture feeding. During the study period, peptone mixture feeding was continuously supplemented with 2,6-DHBA. Related experimental data were derived from three sets of parallel batch reactors, the first fed with the peptone mixture, the second with 2,6-DHBA and the third one with the two substrates, after acclimation of microbial culture and simultaneous biodegradation of both organics. A mechanistic model was developed for this purpose including the necessary model components and process kinetics for the model calibration of relevant experimental data. Model evaluation provided all biodegradation characteristics and kinetics for both peptone mixture and 2,6-DHBA. It also supported the development of a dual microbial community through acclimation, with the selective growth of a second group of microorganisms specifically capable of metabolizing 2,6-DHBA as an organic carbon source.
机译:这项研究评估了在有氧条件下通过适应性双重微生物培养同时降解蛋白ept混合物和2,6-二羟基苯甲酸(2,6-DHBA)的动力学。用蛋白mixture混合物进料将实验室规模的测序批量反应器维持在稳态。在研究期间,蛋白feeding混合物的饲料不断补充2,6-DHBA。相关的实验数据来自三组平行分批反应器,其中第一组加入蛋白ept混合物,第二组加入2,6-DHBA,第三组加入两种底物,这是经过微生物培养适应和两种有机物同时生物降解之后的结果。为此,开发了一种机械模型,包括必要的模型组件和过程动力学,用于相关实验数据的模型校准。模型评估提供了蛋白mixture混合物和2,6-DHBA的所有生物降解特性和动力学。它还通过驯化支持了双微生物群落的发展,其中第二组微生物的选择性生长特别能够代谢2,6-DHBA作为有机碳源。

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