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利用新的数值技术对生物膜中细胞外聚合物的结构和功能进行建模。

Modelling the structure and function of extracellular polymeric substances in biofilms with new numerical techniques.

作者信息

Horn H, Neu T R, Wulkow M

机构信息

Hydrochemistry, FH Magdeburg, 39114 Magdeburg, Germany.

出版信息

Water Sci Technol. 2001;43(6):121-7.

Abstract

The objective of this study is the mathematical description of the structure and function of the extracellular polymeric substances (EPS) in biofilms. The basic assumptions of the EPS biofilm model are: the production of EPS in biofilms is coupled to the growth of micro-organisms the production of EPS is additionally coupled to the substrate conditions the EPS represent a considerable volume fraction of the matrix in biofilms and thus the density of the biofilms is strongly influenced by the EPS sorption of biocides and pollutants in biofilms occurs mainly to EPS the EPS can be used as an energy source during substrate limited phases. The mathematical model has been derived as a system of partial differential equations. The numerical solution of these complex balance equations has been done by a self-adaptive Galerkin-h-p-method. It can be shown, that on the one hand the simulation of substrate conversion and biofilm growth with the EPS-biofilm model yields similar results as the known biofilm models without consideration of the EPS fraction. On the other hand the advantage of the EPS-biofilm model is a better understanding of biofilm structure, which is mainly influenced by the EPS fraction in the biofilm. Furthermore, the sorption of pollutants, such as heavy metals and chlorinated organic substances, can be simulated in more detail.

摘要

本研究的目的是对生物膜中细胞外聚合物(EPS)的结构和功能进行数学描述。EPS生物膜模型的基本假设是:生物膜中EPS的产生与微生物的生长相关联;EPS的产生还与底物条件相关联;EPS在生物膜基质中占相当大的体积分数,因此生物膜的密度受EPS的强烈影响;生物膜中杀菌剂和污染物的吸附主要发生在EPS上;在底物受限阶段,EPS可作为能量来源。该数学模型已推导为一个偏微分方程组。这些复杂平衡方程的数值解通过自适应伽辽金-h-p方法完成。可以看出,一方面,使用EPS生物膜模型对底物转化和生物膜生长进行模拟,得到的结果与不考虑EPS部分的已知生物膜模型相似。另一方面,EPS生物膜模型的优势在于能更好地理解生物膜结构,而生物膜结构主要受生物膜中EPS部分的影响。此外,还可以更详细地模拟重金属和氯化有机物质等污染物的吸附。

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