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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Development of normal phase-high performance liquid chromatography-atmospherical pressure chemical ionization-mass spectrometry method for the study of 6,6'-bis-(5,5,8,8-tetramethyl-5,6,7,8-tetrahydro-benzo[1,2,4]-triazin-3-yl)-[2,2']-bipyridine hydrolytic degradation
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Development of normal phase-high performance liquid chromatography-atmospherical pressure chemical ionization-mass spectrometry method for the study of 6,6'-bis-(5,5,8,8-tetramethyl-5,6,7,8-tetrahydro-benzo[1,2,4]-triazin-3-yl)-[2,2']-bipyridine hydrolytic degradation

机译:正相高效液相色谱-大气压化学电离质谱法研究6,6'-双-((5,5,8,8-四甲基-5,6,7,8-四氢-苯并[1,2,4]-三嗪-3-基)-[2,2']-联吡啶水解降解

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摘要

In the field of nuclear waste management, the 6,6'-bis-(5,5,8,8-tetramethyl-5,6,7,8-tetrahydro-benzo[1,2,4]-triazin-3-yl)-[2,2']-bipyridine (CyMe_4BTBP) is a polycyclic N-based molecule eligible to remove actinides from spent nuclear fuel by liquid-liquid extraction processes. In such processes, the organic phase containing the extracting molecules will undergo hydrolysis and radiolysis, involving degradation products. The purpose of this work was to develop a normal phase chromatography (NP-HPLC) coupled to atmospherical pressure chemical ionisation-mass spectrometry (APCI-MS) method to separate and identify degradation products of CyMe_4BTBP dissolved in octanol, submitted to HNO_3 hydrolysis. 1molL~(-1) HNO_3 hydrolysis conditions were used regarding the selective actinides extraction (SANEX) process, while 3molL~(-1) HNO_3 conditions were applied for the group actinide extraction (GANEX) process. The first step consisted in optimizing the chromatographic separation conditions using a diode array detection (DAD). Retention behavior of a non hydrolyzed mixture of N,N'-dimethyl-N,N'-dioctyl-hexyloxyethyl-malonamide (DMDOHEMA), a malonamide used in the SANEX process to increase the kinetic of extraction, and CyMe_4BTBP were investigated on diol-, cyano-, and amino-bonded stationary phases using different mobile phase compositions. These latter were hexane with different polar modifiers, i.e. dioxane, isopropanol, ethanol and methylene chloride/methanol. The different retention processes in NP-HPLC were highlighted when using various stationary and mobile phases. The second step was the setting-up of the NP-HPLC-APCI-MS coupling and the use of the low-energy collision dissociation tandem mass spectrometry (CID-MS/MS) of the precursor protonated molecules that allowed the separation and the characterization of the main hydrolytic CyMe_4BTBP degradation product under a 3molL~(-1) HNO_3 concentration. Investigation of the CID-MS/MS fragmentation pattern was used to suggest the potential ways leading to this hydrolysis degradation product. This NP-HPLC-APCI-MS method development is described for the first time for the CyMe_4BTBP and should provide separation methods regarding the analysis of polycyclic N-based extracting molecules and more generally for the investigation of the organic phase coming from liquid-liquid extraction processes used in nuclear fuel reprocessing.
机译:在核废料管理领域,6,6'-bis-(5,5,8,8-四甲基-5,6,7,8-四氢-苯并[1,2,4]-三嗪-3- yl)-[2,2']-联吡啶(CyMe_4BTBP)是一种多环N基分子,适合通过液-液萃取工艺从乏核燃料中除去act系元素。在这样的过程中,包含萃取分子的有机相将经历水解和放射分解,涉及降解产物。这项工作的目的是开发一种正相色谱法(NP-HPLC)和大气压化学电离质谱(APCI-MS)方法,以分离和鉴定溶解在辛醇中的CyMe_4BTBP降解产物,并进行HNO_3水解。选择性act系元素的抽提(SANEX)过程采用1molL〜(-1)HNO_3水解条件,组群act系元素的提取(GANEX)采用3molL〜(-1)HNO_3条件。第一步包括使用二极管阵列检测(DAD)优化色谱分离条件。 N,N'-二甲基-N,N'-二辛基-己氧基氧基乙基-丙二酰胺(DMDOHEMA),SANEX工艺中使用的丙二酰胺以增加萃取动力学的非水解混合物的保留行为,以及CyMe_4BTBP在二醇,氰基和氨基键合固定相使用不同的流动相组成。后者是具有不同极性改性剂的己烷,即二恶烷,异丙醇,乙醇和二氯甲烷/甲醇。当使用各种固定相和流动相时,在NP-HPLC中的保留过程会有所不同。第二步是建立NP-HPLC-APCI-MS偶联以及使用前体质子化分子的低能碰撞解离串联质谱(CID-MS / MS),从而可以进行分离和表征3molL〜(-1)HNO_3浓度下水解主要的CyMe_4BTBP降解产物CID-MS / MS碎片图谱的研究被用来表明导致这种水解降解产物的潜在途径。首次针对CyMe_4BTBP描述了这种NP-HPLC-APCI-MS方法开发,它应提供有关多环N基萃取分子分析的分离方法,并且更普遍地用于液-液萃取中有机相的研究核燃料后处理中使用的过程。

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