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厌氧生物膜系统的建模研究:II. 反应器建模。

A modeling study of anaerobic biofilm systems: II. Reactor modeling.

作者信息

Flora J R, Suidan M T, Biswas P, Sayles G D

机构信息

Department of Civil and Environmental Engineering, University of Cincinnati, 741 Baldwin Hall (ML # 71), Cincinnati, Ohio 45221-0071.

出版信息

Biotechnol Bioeng. 1995 Apr 5;46(1):54-61. doi: 10.1002/bit.260460108.

Abstract

A rigorous steady-state model of anaerobic biofilm reactors taking into account acid-base and gas-phase equilibria in the reactor in conjunction with detailed chemical equilibria and mass transfer in acetate-utilizing methanogenic biofilms is presented. The performances of ideal completely stirred tank reactors (CSTRs) and plug-flow reactors, as well as reactors with nonideal hydraulic conditions, are simulated. Decreasing the surface loading rate increases the acetate removal efficiency, while decreasing the influent pH and increasing the buffering capacity improves the removal efficiency only if the bulk pH of the reactor shifts toward more optimal values between 6.8 to 7.0. The reactor can have negative or positive removal efficiencies depending on the start-up conditions. The respiration coefficient plays a critical role in determining the minimum influent pH required for reactor recovery after failure. Having multiple CSTRs-in-series generally increases the overall removal efficiency for the influent conditions investigated. Monitoring of the influent feed quality is critical for plug-flow reactors, becasue failure of the initial sections of the reactor may cause a cascading effect that may lead to a rapid reactor failure. (c) 1995 John Wiley & Sons, Inc.

摘要

本文提出了一种严格的厌氧生物膜反应器稳态模型,该模型考虑了反应器中的酸碱和气相平衡,以及利用乙酸盐的产甲烷生物膜中的详细化学平衡和传质。模拟了理想全混流反应器(CSTR)和推流反应器以及具有非理想水力条件的反应器的性能。降低表面负荷率可提高乙酸盐去除效率,而降低进水pH值并提高缓冲能力仅在反应器的总体pH值向6.8至7.0之间的更优值变化时才会提高去除效率。根据启动条件,反应器的去除效率可能为负或正。呼吸系数在确定反应器故障后恢复所需的最低进水pH值方面起着关键作用。串联多个CSTR通常会提高所研究进水条件下的总体去除效率。对于推流反应器,监测进水水质至关重要,因为反应器初始部分的故障可能会导致级联效应,进而可能导致反应器迅速失效。(c)1995约翰威立父子公司

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