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Heavy Metal Coprecipitation with Hydrozincite Zn5(CO3)2(OH)6 from Mine Waters Caused by Photosynthetic Microorganisms

机译:光合微生物导致矿山水中重金属锌与Zn5(CO3)2(OH)6的重金属共沉淀

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摘要

An iron-poor stream of nearly neutral pH polluted by mine tailings has been investigated for a natural phenomenon responsible for the polishing of heavy metals in mine wastewaters. A white mineralized mat, which was determined to be hydrozincite [Zn5(CO3)2(OH)6] by X-ray diffraction analysis, was observed in the stream sediments mainly in spring. The precipitate shows a total organic matter residue of 10% dry weight and contains high concentrations of Pb, Cd, Ni, Cu, and other metals. Scanning electron microscopy analysis suggests that hydrozincite is mainly of biological origin. Dormant photosynthetic microorganisms have been retrieved from 1-year-old dry hydrozincite. The autofluorescent microorganisms were imaged by a scanning confocal laser microscope. A photosynthetic filamentous bacterium, classified as Scytonema sp. strain ING-1, was found associated with microalga Chlorella sp. strain SA1. This microbial community is responsible for the natural polishing of heavy metals in the water stream by coprecipitation with hydrozincite.
机译:已经对矿山尾矿污染的接近中性pH的贫铁流进行了研究,该自然流负责矿山废水中重金属的抛光。在X射线衍射分析中观察到白色矿化垫层,主要是春季,该矿化垫层通过X射线衍射分析确定为水合锌矿[Zn5(CO3)2(OH)6]。沉淀物显示总有机物残渣为干重的10%,并且含有高浓度的Pb,Cd,Ni,Cu和其他金属。扫描电子显微镜分析表明,水锌矿主要是生物来源的。已从1岁的干水锌矿中回收了休眠的光合微生物。通过扫描共聚焦激光显微镜使自发荧光微生物成像。一种光合作用的丝状细菌,被分类为Scytonema sp。发现菌株ING-1与微藻小球藻sp。相关。 SA1株。该微生物群落负责与水锌矿共沉淀,从而自然抛光水中的重金属。

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