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一步法用塑料闪烁萃取树脂测定油藏示踪剂 (S14CN-)。

Determination of oil reservoir radiotracer (S14CN-) in a single step using a plastic scintillator extractive resin.

机构信息

Departament de Química Analítica, Universitat de Barcelona, Diagonal 645, E-08028 Barcelona, Spain.

出版信息

Anal Chim Acta. 2012 Jul 29;736:30-5. doi: 10.1016/j.aca.2012.05.045. Epub 2012 May 31.

Abstract

The analysis of radiotracers is important in the study of oil reservoir dynamics. One of the most widely used radiotracer is S(14)CN(-). Prior to activity measurements by Liquid Scintillation (LS), routine determinations require the pretreatment steps of purification and concentration of the samples using anion exchange columns. The final elution media produces samples with high salt concentration that may lead to problems with phase separation during the LS measurement. Plastic Scintillation (PS) is an alternative technique that provides a solid surface that can be used as a platform for the immobilisation of selective extractants to obtain a PS resin. The proposed procedure unifies chemical separation and sample measurement preparation in a single step, serving to reduce the number of reagents needed and manpower required for the analysis while also avoiding mixed waste production by LS. The objective of this study is to develop a PS resin for the determination of (14)C-labelled thiocyanate radiotracer in water samples. For this purpose, the immobilisation procedure was optimised, including optimisation of the proportion of PS microspheres:extractant and the use of a control blank to monitor the PS resin immobilisation process. The breakthrough volume was studied and the detection and quantification limits for 100 mL of sample were determined to be 0.08 Bq L(-1) and 0.31 Bq L(-1), respectively. The established procedure was applied to active samples from oil reservoirs and errors lower than 5% in the sample determinations were obtained.

摘要

在油藏动力学研究中,放射性示踪剂的分析非常重要。最广泛使用的放射性示踪剂之一是 S(14)CN(-)。在使用液体闪烁法(LS)进行活性测量之前,常规测定需要使用阴离子交换柱对样品进行纯化和浓缩的预处理步骤。最终的洗脱介质会产生高盐浓度的样品,这可能会导致 LS 测量过程中出现相分离问题。塑料闪烁(PS)是一种替代技术,它提供了一个可以用作固定选择萃取剂的平台的固体表面,以获得 PS 树脂。所提出的程序将化学分离和样品测量准备统一在一个步骤中,有助于减少分析所需的试剂数量和人力,同时避免 LS 产生混合废物。本研究的目的是开发一种 PS 树脂,用于测定水样中的(14)C 标记硫氰酸盐放射性示踪剂。为此,对固定化程序进行了优化,包括优化 PS 微球:萃取剂的比例以及使用空白对照来监测 PS 树脂固定化过程。研究了穿透体积,并确定了 100 mL 样品的检测限和定量限分别为 0.08 Bq L(-1)和 0.31 Bq L(-1)。所建立的程序已应用于油藏中的活性样品,样品测定的误差低于 5%。

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