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Evidence of Microbial Activity in the Formation of Manganese Wads at the Asahidake Hot Spring in Hokkaido, Japan

机译:日本北海道旭岳温泉中锰团形成中微生物活性的证据。

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摘要

Mt. Asahidake is an active volcano, with more than 90 active wells, in the Daisetsu volcanic group located in central Hokkaido, Japan. Wells along the Yukomanbetsu-sawa River showed high manganese concentrations and associated manganese deposits. These deposits consist of manganese oxides, and the concentration of iron is very low except for one sample collected from the upper reach of the river. Most of the wet samples showed basal diffraction characteristic of todorokite (9.6 A). Cultivation tests showed that microorganisms were responsible for the oxidation of dissolved Mn~(2+) in the Asahidake hot spring. The dissolved Mn~(2+) concentration in the sterilized hot spring water was unchanged after four days, whereas the Mn~(2+) concentration in the sterilized hot spring water with a small amount of fresh manganese wad was decreased to zero after three days, and manganese oxide formed. This result implies that the activity of microorganism oxidizes dissolved Mn~(2+) and forms manganese oxide at the Asahidake manganese deposits. In addition to Komanoyu hot spring and Yunotaki Falls, this is the third report of microbial activity forming considerable deposits of manganese oxides in hot spring waters.
机译:公吨。 Asahidake是一座活火山,位于日本北海道中部的大雪火山群中有90多个活井。 Yukomanbetsu-sawa河沿岸的水井显示出高锰含量及相关的锰矿床。这些矿床由氧化锰组成,铁的浓度非常低,除了从河流上游采集的一个样品外。多数湿样品都显示了钙钛矿的基础衍射特性(9.6 A)。培养试验表明,微生物是造成旭旭温泉中溶解的Mn〜(2+)氧化的原因。消毒后的温泉水中溶解后的Mn〜(2+)浓度在4天后没有变化,而新鲜锰含量较低的消毒后的温泉水中的Mn〜(2+)浓度在3天后降至零。天,形成氧化锰。该结果表明,微生物的活性氧化了溶解的Mn〜(2+),并在旭旭锰矿床中形成了氧化锰。除Komanoyu温泉和Yunotaki瀑布外,这是微生物活动的第三次报告,该微生物在温泉水中形成了大量的锰氧化物。

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