高速渗流对浸铀周期的影响
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作者单位:

1.东华理工大学 核资源与环境国家重点实验室, 江西 南昌 330013 ;2.东华理工大学 水资源与环境工程学院, 江西 南昌 330013

作者简介:

袁嘉懋(1996—),男,四川广汉人,硕士研究生,研究方向为湿法冶金。

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TL212

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Effect of high velocity percolation on uranium leaching period
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1.State Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013 , China ; 2.School of Water Resources & Environmental Engineering, East China University of Technology, Nanchang 330013 , China

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    摘要:

    铀矿堆浸作为我国目前主要的浸出手段之一,具有成本低、对环境无二次污染的优点,但堆浸也存在浸出周期较长、容易造成堵塞等缺点。为改善以往浸铀周期较长的问题,本文对铀矿柱浸过程进行研究,使用5g/L硫酸、5g/L Fe3+作为浸出剂,分别对酸化和加铁浸铀2个阶段考察不同粒径和不同渗流速率对pH值、Eh值、铁浓度、浸铀周期的影响。试验结果发现渗流速率对浸铀周期有显著影响,即渗流速率越快,酸化时间越短、浸铀周期越短,同时过高的渗流速率会使溶浸液与矿石无法充分反应,导致浸出率偏低;渗流速率为382.16L·h-1·m-2、178.34L·h-1·m-2、127.38L·h-1·m-2的体系(粒径为-8mm)浸铀周期逐渐延长,分别为38h、50h、72h,最终铀浸出率分别为81.14%、84.48%、85.02%;高速渗流的情况下,粒径越小,反应周期越长,浸出率越高; -5mm、-8mm粒径体系(5g/L硫酸、5g/L Fe3+、178.34L·h-1·m-2渗流速率)的铀浸出率分别为88.61%、84.48%,浸铀周期分别为60h、54h。本研究旨在为绿色高效浸铀提供参考。

    Abstract:

    As one of the main leaching methods in China at present, heap leaching of uranium ore has the advantages of low cost and no secondary pollution to the environment, but it also has the disadvantages of long leaching cycle and easy to cause blockage. In order to improve the previous problem of long uranium leaching cycles, this paper studied the uranium ore column leaching process using 5 g/L sulfuric acid and 5 g/L Fe3+ as leaching agent, including acidification and iron-added leaching two phases, and investigated the effects of different particle sizes and different seepage velocities on pH value, Eh value, iron concentration and uranium leaching period. The experimental results showed the percolation velocity had a significant impact on the uranium leaching cycle, that was, the faster the percolation velocity, the shorter the acidification time, and the shorter the uranium leaching cycle; at the same time, too high percolation velocity would make the leaching solution and the ore unable to fully react, resulting in a low leaching rate; the leaching period of the system (particle size of -8mm) with percolation velocity of 382.16L·h-1·m-2 , 178.34L·h-1·m-2 and 127.38L·h-1·m-2 (particle size of -8mm) was gradually extended, which was 38 h, 50 h and 72 h respectively, and the final uranium leaching rate was 81.14%, 84.48% and 85.02% respectively; under the condition of high speed seepage, the smaller the particle size, the longer the reaction period and the higher the leaching rate; uranium leaching rates of -5mm and -8 mm particle size systems (5g/L sulfuric acid, 5g/L Fe3+, 178.34L·h-1·m-2 percolation velocity) were 88.61% and 84.48% respectively, and the leaching cycle was 60 h and 54 h respectively. The paper aims to provide reference for green and efficient uranium leaching.

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袁嘉懋,周仲魁,史维浚,等.高速渗流对浸铀周期的影响[J]. 中国有色冶金, 2023, 52(1): 146-153.

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  • 收稿日期:2022-07-10
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  • 在线发布日期: 2025-12-23
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