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A novel computational simulation approach to study biofilm significance in a packed-bed biooxidation reactor

机译:一种新的计算模拟方法,用于研究填充床生物氧化反应器中的生物膜意义

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摘要

Fe (II) biooxidation has recently gained significant interest. It plays a key role in a number of environmental and industrial processes such as bioleaching, acid mine drainage treatment, desulphurization of sour gases, and coal desulphurization. In this work, a three-dimensional CFD model for gas-liquid flow in a lab-scale packed-bed biooxidation reactor is used. The reactor is randomly packed with spherical particles, and the particles are covered with Leptospirillum ferrooxidans biofilm for Fe (II) biooxidation. A modified Jodrey-Tory algorithm is used to generate random packing with actual porosity of 0.42, and biofilm layer with constant thickness is considered over the particles. A simplified Eulerian-Eulerian model is used to obtain detailed flow field. The concentration profile in the reactor and the conversion of Fe (II) from the present simulations are obtained and validated using experimental data reported in the literature. The results of the study indicate that about three-quarters of the conversion occurs in the upper half of the reactor and Fe (II) concentration on the biofilm surface at the lower quarter of the reactor does not exceed 5 mM (The inlet concentration is 89.6 mM). The findings reveal that rate-limiting phenomena may vary in different parts of the reactor. The results obtained through the simulations represent advantages for the design and optimization of packed-bed biofilm reactors. (C) 2020 Elsevier Ltd. All rights reserved.
机译:Fe(ii)生物氧化最近获得了重大兴趣。它在许多环境和工业过程中起着关键作用,例如生物浸渍,酸性矿喷射处理,酸气体的脱硫和煤脱硫。在这项工作中,使用了一种用于Lab级填充床生物氧化反应器中的用于气液流动的三维CFD模型。反应器用球形颗粒随机包装,颗粒用Leptospirillulferrooxidans生物膜覆盖,用于Fe(II)生物氧化。改进的Jodrey-Tory算法用于产生具有0.42的实际孔隙率的随机填充,并且在颗粒上考虑具有恒定厚度的生物膜层。简化的Eulerian-Eulerian模型用于获得详细的流场。通过在文献中报道的实验数据获得并验证反应器中的浓度曲线和Fe(II)的转化率和验证。研究结果表明,大约四分之三的转化率在反应器的下半季度的反应器和Fe(II)浓度上发生的,反应器的下部不超过5mm(入口浓度为89.6毫米)。结果表明,限速现象可能在反应器的不同部分中变化。通过模拟获得的结果代表了填充床生物膜反应器的设计和优化的优点。 (c)2020 elestvier有限公司保留所有权利。

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