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首页> 外文期刊>Journal of Analytical Sciences, Methods and Instrumentation >Determination of Di-n-Butyl Phosphate in Organic Streams of FBTR Mixed Carbide Fuel Reprocessing Solution by Gas Chromatographic Technique
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Determination of Di-n-Butyl Phosphate in Organic Streams of FBTR Mixed Carbide Fuel Reprocessing Solution by Gas Chromatographic Technique

机译:气相色谱法测定FBTR混合硬质合金燃料后处理液有机物流中的磷酸二正丁酯

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摘要

The present work describes the amount of Di-n- butyl phosphate (DBP) produced when PUREX solvent (30%tri-n-butyl phosphate (TBP) mixed with 70% hydrocarbon diluent) is exposed to intensive radiolytic and chemical at- tack during the separation of uranium and plutonium from fission products of FBTR mixed carbide fuel reprocessing solution. DBP is the major degradation product of Tri-n-butyl phosphate (TBP). Amount of DBP formed in the lean organic streams of different fuel burn-up FBTR carbide fuel reprocessing solutions were analyzed by Gas Chromatographic technique. The method is based on the preparation of diazo methane and conversion of non-volatile Di-n-butyl phosphate in to volatile and stable derivatives by the action of diazomethane and then determined by Gas Chromatography (GC). A calibration graph was made for DBP over a concentration in the range from 200 to 1800 ppm with correlation coefficient of 0.99587 and RSD 1.2%. The degraded 30% TBP-NPH solvent loaded with heavy metal ions like uranium was analyzed after repeated use and results are compared with standard ion chromatographic technique. A column comparison study to select of proper gas chromatographic column for the separation of DBP from other components in a single aliquot of injection is also examined.
机译:本工作描述了当PUREX溶剂(30%磷酸三正丁酯(TBP)与70%烃稀释剂混合)在强烈的辐射和化学作用下暴露时产生的磷酸二正丁酯(DBP)的量。从FBTR混合碳化物燃料后处理溶液的裂变产物中分离铀和p。 DBP是磷酸三正丁酯(TBP)的主要降解产物。通过气相色谱技术分析了在不同燃耗FBTR碳化物燃料后处理溶液的稀有机物流中形成的DBP量。该方法基于重氮甲烷的制备,并通过重氮甲烷的作用将非挥发性磷酸二正丁酯转化为挥发性和稳定的衍生物,然后通过气相色谱法(GC)测定。绘制了浓度范围为200至1800 ppm的DBP的校正图,相关系数为0.99587,RSD为1.2%。重复使用后,分析了降解的负载有重金属离子(如铀)的30%TBP-NPH溶剂,并将结果与​​标准离子色谱技术进行了比较。还对色谱柱比较研究进行了选择,以选择合适的气相色谱柱,以单次进样即可分离DBP与其他组分。

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