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Biomineralization of manganese by Bacillus spp isolated from a marine biofilm

机译:生物矿化锰的芽孢杆菌从海洋生物膜分离

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摘要

Biomineralization of manganese on titanium condenser material exposed to seawater has been illustrated. Biomineralization occurs when the fouling components, namely, the microbes, are able to oxidize minerals present in water and deposit them as insoluble oxides on biofilm surfaces. Extensive biofilm characterization studies showed that an alarmingly large number of bacteria in these biofilms are capable of oxidizing manganese and are, thereby, capable of causing biomineralization on the condenser material exposed to seawater. This paper addresses studies on understanding the exact role of the microbes in bringing about oxidation of manganese. The kinetics of manganese oxidation by marine Gram-positive manganese oxidizing bacterium Bacillus spp. that was isolated from the titanium surface was studied in detail. Manganese oxidation in the presence of Bacillus cells, by cell free extract (CFE) and heat-treated cell free extract was also studied. The study confirmed that bacteria mediate manganese oxidation and lead to the formation of biogenic oxides of MnO_2, eventually leading to biomineralization on titanium surface exposed to seawater.
机译:生物矿化的锰钛电容器材料暴露在海水画报。污染成分,即微生物能存在于水和氧化矿物质存款作为不溶性氧化物生物膜表面。研究表明,一个令人担忧的是大量的生物膜的细菌的能力因此,氧化锰和有能力导致生物矿化电容器材料暴露在海水。地址研究了解确切的作用带来的微生物氧化锰。海洋的革兰氏阳性锰氧化细菌芽孢杆菌种虫害是隔绝详细研究了钛表面。氧化锰在芽孢杆菌的存在细胞,通过细胞提取(CFE)和自由热处理单元自由提取也进行了研究。研究证实,细菌进行调解锰氧化,导致的形成生物MnO_2氧化物,最终导致生物矿化钛表面接触海水。

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