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Experimental simulation of long term weathering in alkaline bauxite residue tailings

机译:碱性铝土矿尾矿尾矿长期风化试验模拟

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摘要

Bauxite residue is an alkaline, saline tailings material generated as a byproduct of the Bayer process used for alumina refining. Developing effective plans for the long term management of potential environmental impacts associated with storage of these tailings is dependent on understanding how the chemical and mineralogical properties of the tailings will change during weathering and transformation into a soil-like material. Hydrothermal treatment of bauxite residue was used to compress geological weathering timescales and examine potential mineral transformations during weathering. Gibbsite was rapidly converted to boehmite; this transformation was examined with in situ synchrotron XRD. Goethite, hematite, and calcite all precipitated over longer weathering timeframes, while tricalcium aluminate dissolved. pH, total alkalinity, and salinity (electrical conductivity) all decreased during weathering despite these experiments being performed under “closed” conditions (i.e., no leaching). This indicates the potential for auto-attenuation of the high alkalinity and salinity that presents challenges for long term environmental management, and suggests that management requirements will decrease during weathering as a result of these mineral transformations.
机译:铝土矿残留物是碱性,盐渍尾料,是拜耳法炼铝过程中的副产品。为与这些尾矿的储存相关的潜在环境影响进行长期管理,制定有效的计划取决于了解尾矿的化学和矿物学特性在风化和转变成土壤状物质后将如何变化。铝土矿渣的水热处理用于压缩地质风化时间尺度,并检查风化过程中潜在的矿物转变。菱镁矿迅速转变为勃姆石。用原位同步加速器XRD检查了这种转化。针铁矿,赤铁矿和方解石都在较长的风化时间范围内沉淀,而铝酸三钙溶解。尽管这些实验是在“封闭”条件下(即无浸出)进行的,但在风化过程中,pH,总碱度和盐度(电导率)均下降。这表明高碱度和盐度自动衰减的潜力为长期环境管理提出了挑战,并表明由于这些矿物的转化,在风化过程中管理要求将降低。

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