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CSIRO Research for the Iron Ore Industry

机译:CSIRO研究铁矿石行业

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摘要

Australia's iron ore industry is entering a challenging period with the development of new orebodies, the introduction of new products and the push for further downstream processing. In addition, the recent price reductions for iron ore exports have intensified the focus on reducing capital and operating costs. To assist in these areas, CSIRO is expanding its research capabilities, including the incorporation into CSIRO of the Mineral Processing Laboratories in Perth, which were previously managed by the WA Department of Minerals and Energy. In addition, a large part of the $24.4 million expansion of CSIRO's Pinjarra Hills laboratories in Brisbane will be devoted to enhancing iron ore processing research, providing purpose built laboratories and large process bays. Research is being conducted in a wide range of areas, including ore characterisation, beneficiation, sintering, pelletising, process instrumentation, quality control and development of international standards. A key aspect of current research is the characterisation of iron ores and prediction of downstream processing performance using optical microscopy and computer-based image analysis techniques, backed up by a wide range of complementary techniques such as electron microscopy and electron microprobe analysis. The breakage properties of large rocks up to about 100 mm diameter are also being determined either using a Hopkinson bar or in situ in a laboratory crusher to assist with optimisation of comminution performance, and new capabilities in both wet and dry beneficiation have been developed for treating lower grade ore deposits and producing high-grade concentrates for direct reduction processes. A significant component of the beneficiation research includes the development of a range of novel techniques for dry concentration of iron ores and the removal of deleterious elements such as phosphorus. Further down the processing chain, batches of sinter and pellets are prepared under conditions simulating industrial practice using a pot-grate facility to determine how ore characteristics affect productivity and quality. Development of nuclear, microwave and ultrasonic techniques for on-line analysis of the chemical and physical characteristics of iron ore continues, and better standards are being developed for sampling, analysis and physical testing of iron ores and reduced products to improve quality control procedures and optimise the life of ore resources.
机译:随着新矿体的开发,新产品的推出以及进一步下游加工的推动,澳大利亚的铁矿石行业正进入一个充满挑战的时期。此外,最近铁矿石出口价格的下跌使人们更加关注降低资本和运营成本。为了在这些领域提供帮助,CSIRO正在扩展其研究能力,包括将珀斯的选矿实验室纳入CSIRO,该实验室以前由西澳州矿产和能源部管理。此外,CSIRO在布里斯班的Pinjarra Hills实验室的2440万澳元扩建工程中,很大一部分将用于加强铁矿石加工研究,提供专门建造的实验室和大型加工区。正在广泛的领域中进行研究,包括矿石表征,选矿,烧结,造粒,工艺仪器,质量控制和制定国际标准。当前研究的一个关键方面是铁矿石的表征以及使用光学显微镜和基于计算机的图像分析技术预测下游加工性能,并辅以多种互补技术,例如电子显微镜和电子探针分析。还可以使用霍普金森棒或在实验室破碎机中原位确定直径最大约100 mm的大岩石的破碎特性,以帮助优化粉碎性能,并且已经开发了湿法和干法选矿的新功能来处理低品位矿床并生产用于直接还原工艺的高品位精矿。选矿研究的重要组成部分包括开发一系列用于铁矿石干法浓缩和去除有害元素(例如磷)的新技术。在加工链的更下游,在模拟工业实践的条件下,使用锅g设备确定一批烧结矿和球团矿,以确定矿石特性如何影响生产率和质量。继续开发用于在线分析铁矿石化学和物理特性的核,微波和超声技术,并且正在开发更好的标准以对铁矿石和还原产品进行采样,分析和物理测试,以改善质量控制程序并优化矿石资源的寿命。

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