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THE ROLE OF BACTERIAL ALTERATION IN WHITENING AND IRON REMOVAL FROM GEORGIA'S COMMERCIAL KAOLIN CLAYS

机译:细菌交替在格鲁吉亚商业高岭土中增白和除铁中的作用

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A long history of weathering and bacterial alteration processes have transformed Georgia's Coastal Plain kaolins from dark organic muds to recrystallized white pigment-grade industrial clays. A sequence of six stages in development of these valuable mineral deposits is outlined over their Late Cretaceous and Tertiary deposition and alteration history.Anaerobic and aerobic iron oxidizing and iron-reducing bacteria are present in the Georgia kaolins. These bacteria may have had a major role in iron and organic matter removal during several of the alteration stages that occurred over the past 60+ million years. Iron was likely solubilized by both iron-reducing and iron-oxidizing bacteria, depending on availability of Fe(II), Fe(III), and NO_3.Thus, over long periods bacterial activity slowly led to nearly complete groundwater removal of iron from the kaolin deposits. Further bacterial iron removal on an industrial process scale may eventually prove feasible."Without the multitude of living reactions as channels for energy and electrons and without the enormous capability of life to transfer with and against chemical gradients, there would be practically no or at least a very reduced geochemical rock cycle on this planet." (Krumbein and Dyer, 1985, p. 157)
机译:风化和细菌改变过程的悠久历史使佐治亚州的沿海平原高岭土从深色有机泥浆转变为重结晶的白色颜料级工业用粘土。这些有价值的矿床的发育过程分为六个阶段,概述了它们的晚白垩纪和第三纪沉积和蚀变历史。 佐治亚州高岭土中存在厌氧和好氧的铁氧化细菌和铁还原细菌。这些细菌可能在过去60+百万年的几个变化阶段中,对铁和有机物的去除起了主要作用。铁可能被还原铁和氧化铁细菌溶解,这取决于Fe(II),Fe(III)和NO_3的可用性。 因此,长期以来,细菌活动缓慢地导致地下水从高岭土沉积物中几乎完全去除铁。在工业规模上进一步去除细菌铁可能最终被证明是可行的。 “如果没有大量的活泼反应作为能量和电子的通道,并且没有巨大的生命能力来传递和抵抗化学梯度,那么这个星球上几乎没有地球化学岩石循环,或者至少没有非常减少的地球化学岩石循环。” (Krumbein和Dyer,1985年,第157页)

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