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TRPO污溶剂净化树脂吸附床穿透时间确定新方法研究
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作者 马宇 徐聪 《原子能科学技术》 北大核心 2025年第7期1457-1464,共8页
三烷基氧膦(TRPO)污溶剂净化工艺是我国自主开发的高放废液处理流程,为大幅降低成本和放射性废物量,生成的大量污溶剂需要净化后进行复用。树脂固定床吸附净化技术是TRPO污溶剂有效净化的途径之一,其设计需要基于准确的、不同操作条件... 三烷基氧膦(TRPO)污溶剂净化工艺是我国自主开发的高放废液处理流程,为大幅降低成本和放射性废物量,生成的大量污溶剂需要净化后进行复用。树脂固定床吸附净化技术是TRPO污溶剂有效净化的途径之一,其设计需要基于准确的、不同操作条件下的穿透时间才能进行。但在放射性限制下,获取大量辐射降解污溶剂存在困难,无法通过大量试验确定系列条件下的穿透时间。为解决该难题,本文采用微分床技术,利用少量辐射降解污溶剂,通过少量试验确定树脂净化吸附热力学和动力学关键参数—树脂吸附平衡曲线和树脂吸附传质系数,并据此建立固定床吸附传质模型,获得系列穿透曲线。结果表明,TRPO污溶剂净化树脂吸附床操作穿透时间(t_(p))和树脂饱和吸附时间(t_(s))之间存在线性关系(t_(p)=3.94t_(s)-9.64×10^(3)),其中树脂吸附饱和时间可根据操作条件简单计算得到。本文提出的方法为避免放射性限制,快速确定TRPO污溶剂净化树脂吸附床的穿透时间提供了一条可行途径。 展开更多
关键词 高放废液 TRPO净化 树脂吸附 固定床模拟 穿透时间 设计方程
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Fixed-bed column study for deep removal of copper(Ⅱ) from simulated cobalt electrolyte using polystyrene-supported 2-aminomethylpyridine chelating resin 被引量:3
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作者 WANG Yu-hua HU Hui-ping QIU Xue-jing 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第5期1374-1384,共11页
This study presents the deep removal of copper (Ⅱ) from the simulated cobalt electrolyte using fabricated polystyrene-supported 2-aminomethylpyridine chelating resin (PS-AMP) in a fixed-bed.The effects of bed height ... This study presents the deep removal of copper (Ⅱ) from the simulated cobalt electrolyte using fabricated polystyrene-supported 2-aminomethylpyridine chelating resin (PS-AMP) in a fixed-bed.The effects of bed height (7.0–14.0 cm),feed flow rate (4.5–9.0 mL/min),initial copper (Ⅱ) concentration of the feed (250–1000 mg/L),feed temperature (25–40 ℃) and the value of pH (2.0–4.0) on the adsorption process of the PS-AMP resin were investigated.The experimental data showed that the PS-AMP resin can deeply eliminate copper (Ⅱ) from the simulated cobalt electrolyte.The bed height,feed flow rate,initial copper (Ⅱ) concentration of the feed,feed temperature and feed pH value which corresponded to the highest removal of copper (Ⅱ) were 7.0 cm with 35 mm of the column diameter,4.5 mL/min,40℃,1000 mg/L and 4.0,respectively.The breakthrough capacity,the saturated capacity of the column and the mass ratio of Cu/Co (g/g) in the saturated resin were correspondingly 16.51 mg/g dry resin,61.72 mg/g dry resin and 37.67 under the optimal experimental conditions.The copper (Ⅱ) breakthrough curves were fitted by the empirical models of Thomas,Yoon-Nelson and Adam-Bohart,respectively.The Thomas model was found to be the most suitable one for predicting how the concentration of copper (Ⅱ) in the effluent changes with the adsorption time. 展开更多
关键词 deep removal of copper (Ⅱ) chelating resin simulated cobalt electrolyte fixed-bed column model fitting
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