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首页> 外文期刊>FEMS Microbiology Reviews >Automated biological sulphate reduction: a review on mathematical models, monitoring and bioprocess control
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Automated biological sulphate reduction: a review on mathematical models, monitoring and bioprocess control

机译:自动化生物硫酸盐减少:数学模型,监测和生物过程控制综述

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In the sulphate-reducing process, bioprocess control can be used to regulate the competition between microbial groups, to optimize the input of the electron donor and/or to maximize or minimize the production of sulphide. As shown in this review, modelling and monitoring are important tools in the development and application of a bioprocess control strategy. Pre-eminent literature on modelling, monitoring and control of sulphate-reducing processes is reviewed. This paper firstly reviews existing mathematical models for sulphate reduction, focusing on models for biofilms, microbial competition, inhibition and bioreactor dynamics. Secondly, a summary of process monitoring strategies is presented. Special attention is given to in situ sensors for sulphate, sulphide and electron donor concentrations as well as for biomass activity and composition. Finally, the state of the art of the bioprocess control strategies in biological sulphate reduction processes is overviewed.
机译:在降低过程中,生物过程可用于调节微生物组之间的竞争,以优化电子给体的输入和/或最大化或最小化硫化物的产生。 如本综述所示,建模和监控是生物过程控制策略的开发和应用中的重要工具。 综述了减少硫酸盐减少过程的建模,监测和控制的卓越文献。 本文首先回顾了硫酸盐减少的现有数学模型,专注于生物膜,微生物竞争,抑制和生物反应器动力学的模型。 其次,提出了过程监测策略的摘要。 对硫酸盐,硫化物和电子给体浓度以及生物质活性和组成的特殊注意力给予原位传感器。 最后,概述了生物硫酸盐减少过程中生物过程控制策略的技术。

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