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THE RECOVERY OF URANIUM FROM ACID LEACHED ORE USING RESIN-IN-PULP TECHNOLOGY

机译:使用树脂纸浆技术从酸浸出的矿石中恢复铀

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摘要

Ion exchange resins have been used extensively in the past to extract uranium from aqueous solutions. This was done by contacting relatively clean solutions with resin beads in a conventional resin column. An expensive liquid-solid separation step ahead of the ion exchange circuit is required to provide the clean solutions. When dealing with uranium ores that are difficult to filter or settle, it has been found that resin-in-pulp (RIP) provides a more economical treatment path. Aker Metals, a division of Aker Solutions Canada Inc. has been involved in the design of two such plants and, in each case, has found RIP to be an acceptable low cost solution to these difficult ores. This paper will compare the Capital and Operating costs of a 3500 tonne per day acid leach uranium plant using the more conventional CCD-SX route with those for a RIP circuit. Treatment options designed to mitigate resin loss by breakage and fouling will be discussed. An overview of current projects using this approach will be given.
机译:过去已经广泛使用离子交换树脂以从水溶液中提取铀。这是通过使相对清洁的溶液与常规树脂柱中的树脂珠接触来完成的。需要前方的离子交换电路前方昂贵的液体固体分离步骤提供清洁溶液。当处理难以过滤或沉降的铀矿石时,已经发现树脂 - 纸浆(RIP)提供更经济的处理路径。 Aker Metals,Aker Solutions Canada Inc.一直参与了两个这样的植物的设计,并且在每种情况下,发现RIP是对这些困难矿石的可接受的低成本解决方案。本文将使用具有更传统的CCD-SX路由与RIP电路的酸途径进行比较每天3500吨酸浸铀厂的资本和运营成本。将讨论旨在减轻破损和污垢的树脂损失的处理选择。将给出使用此方法的当前项目的概述。

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