Three paths to reduce ferric oxides taken by Geobacter metallireducens
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摘要: 異化金屬還原菌通過絡和劑、電子傳遞中間體、直接接觸三種方式異化還原金屬氧化礦.以Geobacter metallireducens還原鐵氧化物為實驗體系,利用微生物燃料電池考察了以上三種方式對異化還原鐵氧化物的影響.結果表明,微生物異化還原鐵氧化礦時,NTA,AQDS在初始階段顯著加速鐵氧化物的還原,但也加速磁鐵礦的生成,阻礙反應繼續進行;直接接觸方式起著重要作用,吸附形成的生物膜是一個關鍵因素,其形成是一個相對較長的過程.生物膜的形成阻礙電子傳遞中間體發揮作用.Abstract: There were three ways to reduce metal oxides by metal reducing microorganisms:direct contact, electron shuttling and chelation of insoluble metal oxides. A microbial fuel cell by Geobacter metallireducens was used to investigate the influence of the three paths on the rate of dissimilatory iron reduction. The results indicate that in the process of dissimilatory metal reduction, NTA and AQDS can accelerate the speed of ferric oxides reduction and magnetite generation in the initial stage, but magnetite production prevents further iron reduction. Direct contact is a very important way, and the biomembrane formed by adsorption for long time is a critical factor for reduction. Electron shuttling plays a less important role after most of mineral oxides surfaces have been enclosed by microorganisms.
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