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微生物催化大洋多金屬結核和黃鐵礦共同浸出及反應動力學模型

Microbe catalysis co-leaching of deep sea reaction kinetics model polymetallic nodules and pyrite and its reaction kinetics model

  • 摘要: 為了直觀地表征大洋多金屬礦微生物浸出過程中各因素的相互關系,進行了微生物催化MnO2-FeS2-H2SO4體系的好氧和厭氧浸出實驗,利用DLVO理論建立厭氧條件下微生物催化浸出氧化錳礦物中有價金屬的動力學模型——收縮核模型.微生物在厭氧條件下催化大洋多金屬礦和黃鐵礦的氧化還原反應,浸出錳的機理是細菌催化鐵離子在二價和三價的循環轉化;微生物吸附在礦物表面加速反應的進程,礦物顆粒在反應中不斷縮小.進一步實驗表明收縮核模型曲線與實驗曲線擬合較好,驗證了模型的可靠性.

     

    Abstract: In order to characterize the interdependence of all the factors directly in the process of bioleaching polymetallic nodules in deep sea, this paper conducted the aerobic and anaerobic leaching experiments of a microbe catalysis MnO2-FeS2-H2SO4 system. The dynamic model of valuable metals by microbe catalysis leaching under anaerobic condition, that is the shrinking core model, was established using the DLVO theory. In the oxidation-reduction process of polymetallic nodules and pyrites, the Mn-leaching mechanics under anaerobic condition was the circulate transformation between Fe2+ and Fe3+ by microbe catalysis. The microbes absorbed on the surface of mineral and accelerated the reaction process, the mineral particles got small continuously during the reaction. The further study on the experiments indicates that retract model curves fit the experimental ones nicely, which verified the reliability of the model.

     

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