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Modeling of biomass accumulation and filter bed st6ructure change in biofilters for gaseous toluene removal

机译:去除气态甲苯的生物滤池中生物质积累和滤床结构变化的模型

摘要

[Abstract] In this study, a proper microbial growth model was established and analyzed to investigate the biomass accumulation process in biofilters. Four biofilters treating gaseous toluene were set up in parallel and were operated under different inlet toluene loadings for 100 days. Based on the experimental data of microbial biomass and toluene removal rate, the kinetic parameters were decided by either estimation from literature or parameter regression. The calculation results based on the model showed a good agreement with the experimental data of biomass change. By applying the model, it is found that lower than 50% of biomass in the filter bed was active during the last 50 days for the four biofilters. In addition, the void fraction of the filter bed with highest loading was only 55% of the initial level at the end of the operation. All the experimental and calculation results indicated that the microbial growth model could successfully describe the biomass accumulation process and have the potential to predict the long-term performance of biofilters.
机译:[摘要]本研究建立了合适的微生物生长模型,并对其进行了分析,以研究生物滤池中生物量的积累过程。平行设置四个处理气态甲苯的生物滤池,并在不同的进口甲苯负荷下运行100天。根据微生物量和甲苯去除率的实验数据,通过文献估算或参数回归确定动力学参数。基于模型的计算结果与生物量变化的实验数据吻合良好。通过应用该模型,发现在过去的50天内,四个生物滤池中不到50%的生物质处于活动状态。另外,在操作结束时,具有最高负载的滤床的空隙率仅为初始水平的55%。所有的实验和计算结果表明,微生物生长模型可以成功地描述生物量的积累过程,并具有预测生物滤池长期性能的潜力。

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