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首页> 外文期刊>Acta Geologica Sinica - English Edition >Microbial Mats in Tibetan Hot Springs and their Contributions to the Cesium-bearing Geyserite Ore Formation
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Microbial Mats in Tibetan Hot Springs and their Contributions to the Cesium-bearing Geyserite Ore Formation

机译:藏族温泉中的微生物垫及其对含铯石膏沸石矿形成的贡献

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摘要

Microbial mats, mainly dominated by filamentous algae Calothrix and Oscillatoria, are well developed in Tibetan hot springs. A great number of fossil microorganisms, which existed as algae lamination in thermal depositional cesium-bearing geyserite in this area, are identified as Calothrix and Oscillatoria through microexamination and culture experiments. These microbial mats show the ability to accumulate cesium from spring water to the extent of cesium concentration of 0.46–1.03% cell dry weight, 900 times higher than that in water, and capture large numbers of cesium-bearing opal grain. Silicon dioxide colloid in spring water replaces and fills with the organism and deposits on it to form algae laminated geyserite after dehydration and congelation. Cesium in the microbial mats and opal grain is then reserved in the geyserite. Eventually, cesium-bearing algae laminated geyserite is formed. Study on cesium distribution in geyserite also shows that cesium content in algae lamination, especially in heavily compacted algae lamination, is higher than in the opal layer. For geyserite with no algae lamination or other organism structure, which is generally formed in spring water with low silicon content, cesium accumulation and cesium-bearing opal grain assembled by the microbial mats are also indispensable. After the microbial mats accumulating cesium from spring water, silicon dioxide colloid poorly replaces and fills with the organism to form opal grain-bearing tremellose microbial mats. The shape and structure of the organisms are then destroyed, resulting in cesium-bearing geyserite with no algae lamination structure after dehydration and congelation. It is then concluded that microbial mats in the spring area contribute to the enrichment of cesium in the formation of cesium-bearing geyserite, and a biological genesis of the geyserite, besides of the physical and chemical genesis, is likely.
机译:在藏族温泉中,微生物垫主要由丝状藻类Calothrix和Oscillatoria主导。通过微检查和培养实验,在该地区含热沉积铯的间歇泉中以藻类叠层形式存在的大量化石微生物被确定为Calotrix和Oscillatoria。这些微生物垫显示出能够从泉水中积累铯的能力,使铯浓度达到细胞干重的0.46-1.03%,是水中的铯的900倍,并能捕获大量的铯蛋白石颗粒。泉水中的二氧化硅胶体替代并充满生物体,并在脱水和胶凝后沉积在其上,形成藻类层压的沸石。然后将微生物垫中的铯和蛋白石颗粒保留在钙矾石中。最终,形成了含铯的藻类层压的沸石。对石膏中铯分布的研究还表明,藻类薄片中的铯含量,特别是在紧密压实的藻类薄片中,比蛋白石层中的铯含量高。对于通常没有在藻类中形成的藻类叠层或其他生物结构的硅藻土来说,铯堆积和由微生物垫组装的含铯蛋白石颗粒也是必不可少的。在微生物垫从泉水中积聚铯之后,二氧化硅胶体很难替换并充满生物,从而形成了蛋白石含谷物的月桂糖微生物垫。然后破坏生物体的形状和结构,在脱水和胶凝作用后,形成具有铯的,没有藻类层状结构的铯沸石。然后得出的结论是,春季地区的微生物垫有助于铯的富集,形成含铯的钙矾石,并且除了物理和化学成因之外,该钙矾石的生物学成因也是可能的。

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