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Containment of Mineral Sands Processing Wastes in Saline Water Products

机译:盐水产品中矿砂加工废物的围堵

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摘要

Any value addition to the mineral sands in the Murray Basin (Australia) will generate waste that needs to be disposed of safely. For example, conversion of ilmenite and synthetic rutile to titania (TiO_2) pigment would generate large amounts of environmentally undesirable elements. Processing of U+Th containing zircon sands to zirconia or to higher purity zircon would generate a low-level radioactive waste. In this study it is proposed that one way to circumvent the waste problem could be to contain such waste in magnesium-based (Sorel) cements. Containment of waste in magnesium cements is an attractive idea especially for the mineral sand processing companies that could operate in the Murray Basin in the future, because the required magnesium oxide and magnesium chloride may be made cheaply from the saline waters encountered during mining operations. The magnesium cement production process is also far less energy intensive than the Portland cement production process. The results of this study indicate that mixing a waste stream with a slurry of magnesium cement before being discharged to the disposal area would contain the waste in a 'concrete-like' structure, resistant to dispersion by wind and moderate rain. However, some loss of strength and increased leaching of impurities, Mg and Cl could take place in wet climate areas. Ongoing research is being concentrated to develop a new process for making water-resistant magnesium cement.
机译:墨累盆地(澳大利亚)矿砂的任何附加值都会产生需要安全处置的废物。例如,将钛铁矿和合成金红石转化为二氧化钛(TiO_2)颜料会产生大量对环境有害的元素。将含U + Th的锆英砂加工成氧化锆或更高纯度的锆石会产生低放射性的废物。在这项研究中,建议一种解决废物问题的方法是将这种废物包含在镁基(Sorel)水泥中。镁水泥中的废物围堵是一个有吸引力的想法,特别是对于将来可能在默里盆地运营的矿物砂加工公司而言,因为所需的氧化镁和氯化镁可以廉价地从采矿作业中遇到的盐水中制得。镁水泥生产工艺也比波特兰水泥生产工艺能耗低得多。这项研究的结果表明,在将废物流与镁水泥浆混合后再排放到处置区域,将使废物呈“混凝土状”结构,抵抗风和中雨的散布。但是,在潮湿的气候区域可能会发生强度损失和杂质,镁和氯的浸出增加。正在进行的研究正在集中以开发一种新的制造耐水镁水泥的方法。

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