Mesa M M, Macías M, Cantero D
Department of Chemical Engineering, Faculty of Sciences, University of Cádiz, 11510 Puerto Real, Cádiz, Spain.
Biotechnol Prog. 2002 Jul-Aug;18(4):679-85. doi: 10.1021/bp020063g.
Microbial oxidation of ferrous iron may be a viable alternative method of producing ferric sulfate, which is a reagent used for removal of H(2)S from biogas. The paper introduces a kinetic study of the biological oxidation of ferrous iron by Thiobacillus ferrooxidans immobilized on biomass support particles (BSP) composed of polyurethane foam. On the basis of the data obtained, a mathematical model for the bioreactor was subsequently developed. In the model described here, the microorganisms adhere by reversible physical adsorption to the ferric precipitates that are formed on the BSP. The model can also be considered as an expression for the erosion of microorganisms immobilized due to the agitation of the medium by aeration.
亚铁的微生物氧化可能是生产硫酸铁的一种可行替代方法,硫酸铁是一种用于从沼气中去除H₂S的试剂。本文介绍了固定在由聚氨酯泡沫组成的生物质载体颗粒(BSP)上的氧化亚铁硫杆菌对亚铁进行生物氧化的动力学研究。基于所获得的数据,随后开发了生物反应器的数学模型。在此描述的模型中,微生物通过可逆物理吸附附着在BSP上形成的铁沉淀物上。该模型也可被视为由于曝气使介质搅动而导致固定化微生物侵蚀的一种表达式。