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Fibre Optic System for Detection of Uranyl Ions in the Solution Phase

机译:溶液相中检测铀酰离子的光纤系统

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Detection of radiological hazards in the solution phase using conventional means is considerably more difficult than in the gas phase. A new approach is required to provide a reliable, specific and low cost method of protecting sensitive national assets, such as water supplies, from a terrorist dirty bomb attack. Fibre optic sensors provide the required speed of response, the optical platforms are mature and of relatively low cost with proven reliability in the field. This paper describes the combination of a low cost sensor platform and smart sensor molecule (Isoamethyrin) for the selective determination of uranyl and other actinide species in water at sub ppm levels. Isoamethyrin is a synthetic porphyrin which has been demonstrated to show high selectivity for uranyl ions with an associated colour change on complexation. Fibre optic sensors are created by revealing an evanescent wave in a section of the fibre and covalently bonding the isoamethyrin to the fibre surface in this region. Colour changes occurring as a result of interaction between isoamethyrin and uranyl ions are monitored over 3 wavelength ranges covering the red, green and blue regions of the visible spectrum. Sensors created in this manner were found to be fast responding ( < 5s), sensitive (detection threshold < 500ppb), specific (response restricted to certain actinides and lanthanides) and low cost.
机译:与气相相比,使用常规方法检测溶液相中的放射危害要困难得多。需要一种新方法来提供一种可靠,特定且低成本的方法,以保护敏感的国家资产(例如供水)免受恐怖的肮脏炸弹袭击。光纤传感器提供了所需的响应速度,光学平台已经成熟并且成本相对较低,并且在现场具有可靠的可靠性。本文介绍了一种低成本传感器平台和智能传感器分子(异甲硫菊酯)的组合,用于选择性测定亚ppm级以下水中的铀酰和其他act系元素。异甲硫菊酯是一种合成的卟啉,已证明对铀酰离子具有高选择性,并且在络合时具有相关的颜色变化。光纤传感器是通过在光纤的某个区域中显示出van逝波并将该区域中的异蛋黄素共价键合到光纤表面而创建的。在覆盖可见光谱的红色,绿色和蓝色区域的3个波长范围内,监测由于异蛋黄素和铀酰离子相互作用而发生的颜色变化。发现以这种方式创建的传感器响应速度快(<5s),灵敏(检测阈值<500ppb),特异(响应仅限于某些act系元素和镧系元素)和低成本。

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