Sąsiadek-Andrzejczak Elżbieta, Maras Piotr, Kozicki Marek
Department of Mechanical Engineering, Informatics and Chemistry of Polymer Materials, Faculty of Materials Technologies and Textile Design, Lodz University of Technology, Żeromskiego 116, 90-543 Lodz, Poland.
Department of Radiotherapy Planning, Copernicus Hospital, Pabianicka 62, 93-513 Lodz, Poland.
Materials (Basel). 2024 Sep 2;17(17):4339. doi: 10.3390/ma17174339.
This work presents a 2D radiochromic dosimeter for ultraviolet (UV) radiation measurements, based on cotton fabric volume-modified with nitroblue tetrazolium chloride (NBT) as a radiation-sensitive compound. The developed dosimeter is flexible, which allows it to adapt to various shapes and show a color change from yellowish to purple-brown during irradiation. The intensity of the color change depends on the type of UV radiation and is the highest for UVC (253.7 nm). It has been shown that the developed dosimeters (i) can be used for UVC radiation dose measurements in the range of up to 10 J/cm; (ii) can be measured in 2D using a flatbed scanner; and (iii) can have the obtained images after scanning be filtered with a medium filter to improve their quality by reducing noise from the fabric structure. The developed cotton-NBT dosimeters can measure UVC-absorbed radiation doses on objects of various shapes, and when combined with a dedicated computer software package and a data processing method, they form a comprehensive system for measuring dose distributions for objects with complex shapes. The developed system can also serve as a comprehensive method for assessing the quality and control of UV radiation sources used in various industrial processes.
这项工作展示了一种用于紫外线(UV)辐射测量的二维放射变色剂量计,它基于用氯化硝基四氮唑蓝(NBT)作为辐射敏感化合物进行体积改性的棉织物。所开发的剂量计具有柔韧性,这使其能够适应各种形状,并在辐照过程中呈现从淡黄色到紫褐色的颜色变化。颜色变化的强度取决于紫外线辐射的类型,对于UVC(253.7纳米)来说是最高的。已经表明,所开发的剂量计:(i)可用于高达10 J/cm范围内的UVC辐射剂量测量;(ii)可以使用平板扫描仪进行二维测量;(iii)扫描后获得的图像可以用中值滤波器进行滤波,以通过减少织物结构的噪声来提高其质量。所开发的棉-NBT剂量计可以测量各种形状物体上UVC吸收的辐射剂量,并且当与专用的计算机软件包和数据处理方法相结合时,它们形成了一个用于测量复杂形状物体剂量分布的综合系统。所开发的系统还可以作为一种综合方法,用于评估各种工业过程中使用的紫外线辐射源的质量和控制。