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Radionuclide sensors based on chemically selective scintillating microspheres: Renewable column sensor for analysis of Tc-99 in water

机译:基于化学选择性闪烁微球的放射性核素传感器:用于分析水中Tc-99的可更新柱传感器

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A method for chemically selective radiometric sensing of non-gamma-emitting radionuclides in solution is described. Using scintillating microspheres with selective radionuclide uptake properties, radiochemical separation and radiometric detection steps are integrated within a sensor device. These microspheres are loaded into a renewable minicolumn that serves to capture, preconcentrate, and separate radionuclides. The preconcentrating minicolumn also localizes and retains radionuclides within a detector of well-defined geometry and emits a photometric signal. The sensor material in the column can either be regenerated with eluent chemistries or be renewed by fluidic replacement of the beads. The latter method allows the use of materials that bind analytes irreversibly or are unstable under regeneration conditions. Radionuclide-selective scintillating microspheres were prepared by coimmobilization of scintillating fluors and selective organic extractants within the pores of an inert polymeric support. Preparation and characterization of microspheres, and their use for selective quantitative sensing of Tc-99(VII), is described in detail. A sensor-based procedure for Tc-99(VII) analysis was developed and successfully applied toward the determination of Tc-99(VII) in groundwater samples from the Hanford site, using standard addition techniques for quantification, Using a 50-mL sample volume and signal accumulation time of 30 min, the detection limit for Tc-99(VII) was 0.37 dpm/mL (9.8 pg/mL). [References: 52]
机译:描述了一种用于化学选择性辐射感测溶液中非伽马发射放射性核素的方法。使用具有选择性放射性核素吸收特性的闪烁微球,将放射化学分离和辐射检测步骤集成到传感器设备中。这些微球被装载到可再生的微型柱中,该柱用于捕获,预浓缩和分离放射性核素。预浓缩小柱还可以将放射性核素定位并保留在几何形状明确的检测器中,并发出光度信号。色谱柱中的传感器材料既可以用洗脱液进行化学再生,也可以通过对磁珠进行流体置换来进行更新。后一种方法允许使用不可逆结合或在再生条件下不稳定的材料。放射性核素选择性闪烁微球是通过将闪烁荧光和选择性有机萃取剂共同固定在惰性聚合物载体的孔中而制得的。详细描述了微球的制备和表征,及其在Tc-99(VII)的选择性定量感测中的应用。开发了基于传感器的Tc-99(VII)分析程序,并成功地用于测定Hanford站点的地下水样品中Tc-99(VII),使用标准添加技术进行定量,使用50mL样品信号积累时间为30分钟,Tc-99(VII)的检出限为0.37 dpm / mL(9.8 pg / mL)。 [参考:52]

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