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首页> 外文期刊>Journal of industrial microbiology & biotechnology >INDISIM-Denitrification, an individual-based model for study the denitrification process
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INDISIM-Denitrification, an individual-based model for study the denitrification process

机译:赤灭反硝化,用于研究脱硝过程的基于个体模型

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Denitrification is one of the key processes of the global nitrogen (N) cycle driven by bacteria. It has been widely known for more than 100 years as a process by which the biogeochemical N-cycle is balanced. To study this process, we develop an individual-based model called INDISIM-Denitrification. The model embeds a thermodynamic model for bacterial yield prediction inside the individual-based model INDISIM and is designed to simulate in aerobic and anaerobic conditions the cell growth kinetics of denitrifying bacteria. INDISIM-Denitrification simulates a bioreactor that contains a culture medium with succinate as a carbon source, ammonium as nitrogen source and various electron acceptors. To implement INDISIM-Denitrification, the individual-based model INDISIM was used to give sub-models for nutrient uptake, stirring and reproduction cycle. Using a thermodynamic approach, the denitrification pathway, cellular maintenance and individual mass degradation were modeled using microbial metabolic reactions. These equations are the basis of the sub-models for metabolic maintenance, individual mass synthesis and reducing internal cytotoxic products. The model was implemented in the open-access platform NetLogo. INDISIM-Denitrification is validated using a set of experimental data of two denitrifying bacteria in two different experimental conditions. This provides an interactive tool to study the denitrification process carried out by any denitrifying bacterium since INDISIM-Denitrification allows changes in the microbial empirical formula and in the energy-transfer-efficiency used to represent the metabolic pathways involved in the denitrification process. The simulator can be obtained from the authors on request.
机译:脱氮是细菌驱动的全局氮气(n)循环的关键过程之一。它已被广为人知的100多年,作为生物地造态N周期的平衡过程。为了研究这一过程,我们开发了一个称为赤域反硝化的个人模式。该模型在基于个体的模型Indisim内部嵌入了用于细菌产量预测的热力动力学模型,设计用于在有氧和厌氧条件下模拟反硝化细菌的细胞生长动力学。脱乙酰亚硝化模拟含有含有琥珀酸盐作为碳源的培养基的生物反应器,作为氮源和各种电子受体。为了实施丁基乙酰亚脱氮,使用基于个体的模型INDISIM用于给营养吸收,搅拌和再现循环提供子模型。使用热力学方法,使用微生物代谢反应进行脱氮途径,细胞维持和单个质量降解。这些等式是代谢维护,单个批量合成和减少内部细胞毒产物的子模型的基础。该模型是在开放式接入平台NetLogo中实现的。使用两种不同的实验条件,使用两组反硝化细菌的一组实验数据进行验证抗脱氮。这提供了一种互动工具来研究通过任何脱氮细菌进行的脱氮过程,因为赤透明脱氮允许微生物经验公式的变化和用于表示反硝化过程中涉及的代谢途径的能量转移效率。可以根据要求从作者获得模拟器。

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