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首页> 外文期刊>Exploration and Mining Geology >Low-temperature Iron and Manganese Mineral Phases of an Inactive Hydrothermal Mound: TAG Hydrothermal Field, Mid-Atlantic Ridge
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Low-temperature Iron and Manganese Mineral Phases of an Inactive Hydrothermal Mound: TAG Hydrothermal Field, Mid-Atlantic Ridge

机译:惰性热液堆的低温铁和锰矿物相:大西洋中脊TAG热液场

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摘要

Detailed crystal-chemical study of iron and manganese oxides and some other minerals from low-temperature hydrothermal deposits in a newly discovered inactive mound in the TAG hydrothermal field were used to determine the precipitation sequence of mineral phases during low-temperature processes and their post-sedimentary transformations. Particles of primary sedimentary X-ray amorphous proto-ferrihydrite with high silica content were replaced in situ by nontronite, ferrihydrite, or goethite during alteration. Ferrihydrite is the only proto-hematite phase. The transformation of the iron minerals, related to change in the physicochemical environment, is an important characteristic of low-temperature hydrothermal processes. The occurrence of hydrogenetic Fe vernadite and Mn feroxyhyte in the uppermost part of low-temperature deposits and bottom sediments near the base of the mound is evidence for cessation of low-temperature hydrothermal processes. Among the investigated mineral phases, goethite, nontronite, and hematite are stable in reduced sediments only.
机译:在TAG水热领域中新发现的无活性土堆中,对低温热液沉积物中的铁和锰氧化物及一些其他矿物进行的详细晶体化学研究,用于确定低温过程及其后的矿物相的沉淀顺序。沉积转变。蚀变过程中,原位沉积的X射线无定形原水铁矿的高二氧化硅颗粒被原矿,三水铁矿或针铁矿原位取代。水铁矿是唯一的赤铁矿相。铁矿物质的转化与理化环境的变化有关,是低温水热过程的重要特征。在土丘底部附近的低温沉积物和底部沉积物的最上部,发生了铁质菱铁矿和锰铁氢氧化物的存在,这是停止低温水热过程的证据。在研究的矿物相中,针铁矿,绿脱石和赤铁矿仅在减少的沉积物中稳定。

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