离子交换树脂超声强化孕液对铀的吸附

Q3 Engineering
A. Kononov, B. Duisebayev
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引用次数: 1

摘要

到目前为止,离子交换过程的强化(离子交换剂的吸附、解吸、洗涤)仍然是获得商业条纹裤的一个紧迫问题。本文研究了超声波(US)对离子交换树脂在原位浸出回收(ISR)铀生产中从孕液中吸附铀过程的影响。在NAC Kazatomprom JSC的一个矿场进行了超声波强化离子交换过程有效性的研究和评估。发射器周期性产生的超声波脉冲对传质装置的整个工作空间产生影响。因此,整个试剂质量保持连续运动,并且阴离子交换剂颗粒的整个表面在超声装置操作期间被永久净化。研究结果表明,超声强化吸附过程允许:-在铀浓度为0.003 g/m3的孕溶液中,吸附速率提高6.4倍-当铀浓度为0.014g/m3时,吸附速率提高1.4倍-通过应用超声波处理,实现了将吸附速率提高1.3倍的加权平均值-在保持离子交换颗粒力学强度的前提下,将离子交换树脂对铀的全动态交换容量提高1.13倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasonic Intensification of Uranium Sorption from Pregnant Solutions by Ion-Exchange Resin
Until now, the intensification of ion exchange processes (sorption, desorption, washing of ion exchanger) remains an urgent problem in obtaining commercial strippants. This paper presents the study of ultrasonic (US) effects on the process of uranium sorption from pregnant solutions by ion-exchange resin at operating in-situ leach recovery (“ISR”) uranium production. The study and evaluation of effectiveness of ultrasonic intensifying the ion exchange processes was implemented at one of the mines of NAC Kazatomprom JSC. Ultrasonic pulses periodically generated by emitters produced effects on the whole working space of the mass transfer apparatus. Thus, the whole mass of reagents is kept in continuous motion, and the whole surface of the anion exchanger grains is permanently purified during the ultrasonic device operation. The study findings showed that the ultrasonic intensification of the sorption process allows: -        increasing the sorption rate by 6.4 times at uranium concentration in the pregnant solutions of 0.003 g/m 3 ; -        increasing the sorption rate by 1.4 times at uranium concentration in the pregnant solutions of 0.014 g/m 3 ; -        achieving weighted average increasing the sorption rate by 1.3 times through applying the ultrasonic treatment; -        increasing full dynamic exchange capacity of the ion exchange resin for uranium in 1.13 times at keeping mechanical strength of the ion exchanger grains.
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来源期刊
Gornye nauki i tekhnologii
Gornye nauki i tekhnologii Chemical Engineering-Process Chemistry and Technology
CiteScore
3.00
自引率
0.00%
发文量
22
审稿时长
15 weeks
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