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Identifying and Addressing the Challenges to In Situ Recovery

机译:识别并解决原位恢复的挑战

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In situ recovery (ISR) technology has been proposed as an alternative to conventional underground and open pit mining for metal recovery, since it shows potential for a step-change in the costs associated with the extraction of value from deposits of declining grade, challenging mineralogy and often increasingly greater depths. Although ISR has been implemented for the extraction of uranium at a number of deposits, its uptake for other mineral systems has been restricted, often because of the perceived limited ability and availability of ISR tools and technologies. In particular, the limited ability to observe, measure and therefore evaluate subterranean process performances is a significant drawback. In the current economic climate, the further development of ISR to a more generically applicable technology, which eliminates mining and milling costs, may be vital to ensure future economic metal production from many orebodies.The Commonwealth Scientific and Industrial Research Organisation (CSIRO) has therefore focused efforts on understanding the outstanding challenges of ISR and identifying global capabilities that can contribute to developing the essential enabling technologies required to realise ISR. This presentation will cover our findings related to:- resource characterisation- drilling, blasting and rock fracturing ? ore porosity and permeability- reactive transport modelling- lixiviant systems development- monitoring and forecasting- social and environmental aspects- techno-economic modelling. Addressing these challenges is further complicated by the breadth and interdependency of these challenges. We will also propose a way forward that involves a collaborative multi-disciplinary approach to address the issues pertaining to ISR in general and specifically to broader uranium ISR, and requires a unique collaboration between researchers, technology suppliers and mining companies.
机译:原位恢复(ISR)技术已经提出作为常规地下和露天挖掘的替代金属恢复,因为它表明了与从降低级数的沉积物中提取价值相关的成本的趋势,具有挑战性的矿物学并且通常越来越大的深度。虽然ISR已经为铀的提取而实施了许多沉积物,但其对其他矿物系统的摄取已经受到限制,通常是因为ISR工具和技术的有限能力和可用性。特别地,有限的观察,测量,因此评估了地下过程表演是一个显着的缺点。在目前的经济气氛中,ISR的进一步发展是一种更普遍适用的技术,消除了采矿和铣削成本,可能对确保许多奥勒布的未来经济金属生产至关重要。因此致力于了解ISR的出色挑战并确定能够为制定实现ISR所需的基本支持技术的全球能力而识别全球能力。此演示文稿将涵盖与以下结果相关的结果: - 资源特征 - 钻井,爆破和岩石压裂?矿石孔隙率和渗透性 - 反应性转运型爆发 - 李赛兴系统发展 - 监测和预测 - 社会和环境方面 - 技术经济型号。通过这些挑战的广度和相互依赖性,解决这些挑战进一步复杂化。我们还将提出前进的方式,涉及一种协作的多学科方法,以解决一般的ISR的问题,特别是铀ISR,并需要研究人员,技术供应商和矿业公司之间的独特合作。

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