...
首页> 外文期刊>Bioprocess and Biosystems Engineering >Simulation and experimental validation of a gradient feeding system for fast assessment of the kinetic behavior of a microbial consortium in a tubular biofilm reactor
【24h】

Simulation and experimental validation of a gradient feeding system for fast assessment of the kinetic behavior of a microbial consortium in a tubular biofilm reactor

机译:用于快速评估管状生物膜反应器中微生物联盟动力学行为的梯度进料系统的仿真和实验验证

获取原文
获取原文并翻译 | 示例
           

摘要

This study deals with the mathematical simulation and experimental validation of a gradient system for the gradual change of the imidacloprid loading rate to a tubular biofilm reactor (TBR). The strategy was used for fast studies of the kinetic and stoichiometric impact caused by the increase in the pesticide loading rate in a TBR, running in plug flow regime. Seemingly, this strategy has never been used for biokinetic and stoichiometric studies in biofilm reactors. For this purpose, a mathematical model describing the substrate transient behavior S-g(t) in a concentration gradient generator system using variable volume tanks is proposed. A second model, representing the temporary variation in the loading rate of imidacloprid to an aerated equalizer tank preceding the packed zone of the TBR, is also presented. Both models were experimentally confirmed. After the treatment of the experimental data, the kinetic and stoichiometric changes occurring in the TBR, caused by the gradual increase in the imidacloprid loading rate, were readily evaluated. Although the structure of the microbial community, at the phylum level, showed similar behavior along the tubular reactor, the stress produced by the gradual increase in imidacloprid concentration had functional consequences on the mixed microbial populations which were reflected on the stoichiometric and kinetic parameters. After increasing more than five times the imidacloprid loading rate to the TBR, the imidacloprid removal efficiency decayed about 40%, and the microbial-specific removal rate of the insecticide showed a decrease of about 30%.
机译:这项研究涉及梯度系统的吡虫啉向管状生物膜反应器(TBR)的加载速率的逐渐变化的数学模拟和实验验证。该策略用于快速研究由TBR(在活塞流状态下运行)中的农药装载量增加引起的动力学和化学计量影响。看来,这种策略从未用于生物膜反应器的生物动力学和化学计量研究。为此,提出了一个数学模型,该模型描述了使用可变容积储罐的浓度梯度发生器系统中的基质瞬态行为S-g(t)。还提出了第二种模型,该模型代表吡虫啉到TBR填充区之前的充气均衡罐中的装载量的暂时变化。两种模型均通过实验确认。处理完实验数据后,可以很容易地评估出吡虫啉负载率逐渐增加引起的TBR中的动力学和化学计量变化。尽管在菌毛水平的微生物群落结构在管式反应器中表现出相似的行为,但吡虫啉浓度逐渐增加所产生的应力对混合微生物种群具有功能性影响,这在化学计量和动力学参数上得到了反映。在吡虫啉向TBR的负载率增加超过5倍后,吡虫啉的去除效率下降了约40%,杀虫剂的微生物特异性去除率下降了约30%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号