...
首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Prototype development of ion exchanging alpha detectors
【24h】

Prototype development of ion exchanging alpha detectors

机译:离子交换α检测器的原型开发

获取原文
获取原文并翻译 | 示例

摘要

In contemporary alpha particle spectrometry, the sample preparation is separated from the detection of the radionuclides. The sample preparation itself requires much time and the equipment of a radiochemistry lab. If sample preparation and detection could be combined in one step, a huge time-saving potential becomes available. One way to realize such a combination is described here. The concept was explored by simulations with the well-established computer programs SRIM and AASI. In a proof of concept, the active surface of commercially available alpha detectors was modified with sulfonic acid groups as a well-known type of cation exchanger. It was shown, that in contrast to a pristine detector, a chemically modified detector is able to extract uranium-238 and -234 selectively as uranyl cations onto the detector surface from a diluted [U-238/234] uranyl acetate solution. It was possible to measure directly in the sample solution for one week or to prepare the modified detector surfaces within 30 s for measurements in conventional alpha chambers. In either case, the full width at half maximum of the measured spectra was around 100 keV, allowing a clear nuclide identification. After regenerating the cation exchanger surfaces by rinsing with hydrochloric acid the typical uranium spectra had disappeared, proving chemical bonding of the uranium.Due to the large variety of potential functional groups this new way of alpha spectrometry could be beneficial for all fields of alpha particle spectrometry, from environmental analysis, over security measurements to studies of the heaviest elements.
机译:在当代的α粒子光谱仪中,样品制备与放射性核素的检测是分开的。样品制备本身需要大量时间和放射化学实验室的设备。如果样品制备和检测可以在一个步骤中组合在一起,那么将有巨大的节省时间的潜力。在此描述实现这种组合的一种方式。通过使用完善的计算机程序SRIM和AASI进行仿真,探索了该概念。在概念上的证明中,将商购可得的α检测器的活性表面用磺酸基改性,作为一种众所周知的阳离​​子交换剂。结果表明,与原始检测器相比,化学修饰的检测器能够将铀-238和-234作为铀酰阳离子选择性地从稀释的​​[U-238 / 234]乙酸铀酰溶液中提取到检测器表面上。可以直接在样品溶液中测量一周,也可以在30 s内准备改良的检测器表面,以便在常规alpha腔中进行测量。在这两种情况下,所测光谱的半峰全宽约为100 keV,从而可以清楚地识别出核素。通过用盐酸冲洗使阳离子交换剂表面再生后,典型的铀光谱消失了,证明了铀的化学键合。由于潜在的官能团种类繁多,这种新的α光谱方法可能对α粒子光谱的所有领域都是有益的从环境分析到安全性测量再到最重元素的研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号