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利用一维多物种模型模拟两种基于氢气的膜曝气生物膜反应器(H2-MBfR)中的营养物减少和生物量结构:模型开发与参数分析。

Utilizing a one-dimensional multispecies model to simulate the nutrient reduction and biomass structure in two types of H2-based membrane-aeration biofilm reactors (H2-MBfR): model development and parametric analysis.

作者信息

Wang Zuowei, Xia Siqing, Xu Xiaoyin, Wang Chenhui

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai, 200092, China.

出版信息

Environ Sci Pollut Res Int. 2016 Feb;23(4):3436-49. doi: 10.1007/s11356-015-5584-2. Epub 2015 Oct 21.

Abstract

In this study, a one-dimensional multispecies model (ODMSM) was utilized to simulate NO3(-)-N and ClO4(-) reduction performances in two kinds of H2-based membrane-aeration biofilm reactors (H2-MBfR) within different operating conditions (e.g., NO3(-)-N/ClO4(-) loading rates, H2 partial pressure, etc.). Before the simulation process, we conducted the sensitivity analysis of some key parameters which would fluctuate in different environmental conditions, then we used the experimental data to calibrate the more sensitive parameters μ1 and μ2 (maximum specific growth rates of denitrification bacteria and perchlorate reduction bacteria) in two H2-MBfRs, and the diversity of the two key parameters' values in two types of reactors may be resulted from the different carbon source fed in the reactors. From the simulation results of six different operating conditions (four in H2-MBfR 1 and two in H2-MBfR 2), the applicability of the model was approved, and the variation of the removal tendency in different operating conditions could be well simulated. Besides, the rationality of operating parameters (H2 partial pressure, etc.) could be judged especially in condition of high nutrients' loading rates. To a certain degree, the model could provide theoretical guidance to determine the operating parameters on some specific conditions in practical application.

摘要

在本研究中,利用一维多物种模型(ODMSM)来模拟两种基于氢气的膜曝气生物膜反应器(H2-MBfR)在不同运行条件(例如,NO3(-)-N/ClO4(-) 负荷率、H2 分压等)下的 NO3(-)-N 和 ClO4(-) 还原性能。在模拟过程之前,我们对一些在不同环境条件下会波动的关键参数进行了敏感性分析,然后使用实验数据对两个 H2-MBfR 中更敏感的参数 μ1 和 μ2(反硝化细菌和高氯酸盐还原细菌的最大比生长速率)进行校准,并且两个关键参数值在两种类型反应器中的差异可能是由于反应器中投喂的碳源不同所致。从六种不同运行条件(H2-MBfR 1 中有四种,H2-MBfR 2 中有两种)的模拟结果来看,该模型的适用性得到了验证,并且能够很好地模拟不同运行条件下去除趋势的变化。此外,尤其在高营养负荷率条件下,可以判断运行参数(H2 分压等)的合理性。在一定程度上,该模型可为实际应用中某些特定条件下运行参数的确定提供理论指导。

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