Enhanced prediction of Cs removal by CST from Hanford tank waste with K accountability

IF 2.1 4区 环境科学与生态学 Q3 ENGINEERING, CHEMICAL
Amy Westesen, Emily Campbell, Reid Peterson
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Abstract

The treatment of Hanford tank waste is one of the most challenging environmental cleanup activities to date. To expedite the processing of liquid waste stored in underground tanks in Washington State it is necessary to remove the significant dose contributor, 137Cs. Crystalline silicotitanate ion exchanger is currently used to remove 137Cs from the aqueous phase of Hanford tank wastes in preparation for vitrification at the Waste Treatment and Immobilization Plant (WTP). Improving the understanding of potassium impacts on ion exchange behavior of Cs will help in the operation of a critical component of one of the most complex treatment processes in the world today. Optimization of this process can result in significant cost savings and less waste production. Toward this effort, a series of batch contact tests varied in potassium concentration were conducted to look at the impact of potassium concentration on Cs distribution. Experimental distribution ratios (Kd) were compared to the distribution ratios predicted using the ZAM model. A significant underprediction of Cs capacity in the presence of potassium was seen with the existing model. A revision of the equilibrium constants was determined and provided a statistically better fit for determining the Cs Kd values in tank waste matrices.

Abstract Image

基于K问责制的CST对汉福德废液Cs去除的增强预测
汉福德污水池的处理是迄今为止最具挑战性的环境清理活动之一。为了加快华盛顿州地下储存罐中液体废物的处理,有必要去除重要的剂量贡献者137Cs。晶体硅钛酸盐离子交换剂目前用于从汉福德罐废物的水相中去除137Cs,为废物处理和固定化厂(WTP)的玻璃化做准备。提高对钾对Cs离子交换行为的影响的理解将有助于当今世界上最复杂的处理过程之一的关键组成部分的操作。该过程的优化可以显著节省成本并减少废物产生。为此,进行了一系列不同钾浓度的批量接触试验,以观察钾浓度对Cs分布的影响。将实验分布比(Kd)与ZAM模型预测的分布比进行比较。在钾存在下,现有模型明显低估了Cs容量。对平衡常数进行了修正,并提供了统计上更好的适合于确定槽废物矩阵中的Cs Kd值。
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来源期刊
Environmental Progress & Sustainable Energy
Environmental Progress & Sustainable Energy 环境科学-工程:化工
CiteScore
5.00
自引率
3.60%
发文量
231
审稿时长
4.3 months
期刊介绍: Environmental Progress , a quarterly publication of the American Institute of Chemical Engineers, reports on critical issues like remediation and treatment of solid or aqueous wastes, air pollution, sustainability, and sustainable energy. Each issue helps chemical engineers (and those in related fields) stay on top of technological advances in all areas associated with the environment through feature articles, updates, book and software reviews, and editorials.
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