Development of fluorescein-based dosimeter for radiation processing applications

Sachin V. Mhatre, V. Sathian, Probal Chaudhury
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Abstract

Dosimetry forms an inseparable part of radiation processing. Many dosimeters are available to cover wide range of doses used in radiation processing. These include the Fricke, ceric-cerous, alanine ESR Alanine (Electron Spin Resonance Technique), dichromate, and radiochromic films. Low-dose radiation processing applications (<2 kGy) such as insect disinfestation, shelf-life extension, and sprout inhibition use imported dosimeters. At present, radiochromic films/waveguides are used for low-dose applications; however, the dosimeters are costly and subject to sanctions and supply restrictions from country of origin. The present work discusses the development of system that can be used as a routine dosimeter for radiation processing facilities in the dose range of 200–2500 Gy. Iodine is generated by the action of radiolysis products of water on iodide and iodate present. Generated iodine halogenates fluorescein to erythrosine with the help of bicarbonate. Increase in absorbance due to the formation of erythrosine can be related to the absorbed dose and used in routine dosimetric applications. As the change is radiochromic, it advantageously provides a visual indication of dose received.
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用于辐射处理应用的荧光素剂量计的开发
剂量学是辐射处理不可分割的一部分。有许多剂量计可以覆盖辐射处理中使用的大剂量范围。这些包括Fricke, ceric-cerous,丙氨酸ESR(电子自旋共振技术),重铬酸盐和放射性变色薄膜。低剂量辐射处理应用(< 2kgy),如除虫、延长保质期和抑制发芽,使用进口剂量计。目前,放射性致色膜/波导用于低剂量应用;但是,剂量计价格昂贵,并受到原产国的制裁和供应限制。本工作讨论了在200 - 2500gy剂量范围内可作为辐射处理设施常规剂量计的系统的研制。碘是由水的放射性溶解产物对碘化物和碘酸盐的作用而产生的。在碳酸氢盐的帮助下,生成卤化碘荧光素为红血球。由于红红素形成引起的吸光度增加与吸收剂量有关,可用于常规剂量学应用。由于变化是放射性变色的,它有利地提供了所接受剂量的视觉指示。
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Theme 8. Emergency preparedness and response Theme 2. Radiation Safety and Protection in Nuclear Facilities Theme 1. Foundation Topics on Radiation Protection Philosophy and Risk Estimates Theme 7. Existing Exposures Theme 5. Nuclear instrumentation and system development
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