Elucidation of Gram-Positive Bacterial Iron(III) Reduction for Kaolinite Clay Refinement

化学 细菌 蜡样芽孢杆菌 铁质 铁细菌 铁载体 金属 微生物代谢 革兰氏阳性菌 食品科学 环境化学 生物 无机化学 有机化学 遗传学
作者
Hao Jing,Zhao Liu,Seng How Kuan,Sylvia Chieng,Chun Loong Ho
出处
期刊:Molecules [MDPI AG]
卷期号:26 (11): 3084-3084 被引量:6
标识
DOI:10.3390/molecules26113084
摘要

Recently, microbial-based iron reduction has been considered as a viable alternative to typical chemical-based treatments. The iron reduction is an important process in kaolin refining, where iron-bearing impurities in kaolin clay affects the whiteness, refractory properties, and its commercial value. In recent years, Gram-negative bacteria has been in the center stage of iron reduction research, whereas little is known about the potential use of Gram-positive bacteria to refine kaolin clay. In this study, we investigated the ferric reducing capabilities of five microbes by manipulating the microbial growth conditions. Out of the five, we discovered that Bacillus cereus and Staphylococcus aureus outperformed the other microbes under nitrogen-rich media. Through the biochemical changes and the microbial behavior, we mapped the hypothetical pathway leading to the iron reduction cellular properties, and found that the iron reduction properties of these Gram-positive bacteria rely heavily on the media composition. The media composition results in increased basification of the media that is a prerequisite for the cellular reduction of ferric ions. Further, these changes impact the formation of biofilm, suggesting that the cellular interaction for the iron(III)oxide reduction is not solely reliant on the formation of biofilms. This article reveals the potential development of Gram-positive microbes in facilitating the microbial-based removal of metal contaminants from clays or ores. Further studies to elucidate the corresponding pathways would be crucial for the further development of the field.
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