1.苏州大学公共卫生学院 江苏省高校放射医学协同创新中心 江苏省放射医学与防护重点实验室 苏州 215123
[ "薛素妹, 女, 1994年1月出生, 2016年于常熟理工学院获工学学士学位, 现为苏州大学公共卫生学院公共卫生专业硕士研究生, 研究方向为室内涂料与氡污染防治的研究, E-mail: 13601552584@163.com", "XUE Sumei (female) was born in January 1994, and received her bachelor's degree from Changshu Institute of Technology in 2016. Now she is a master candidate at the School of Public Health, Soochow University, the main research direction for indoor coatings and prevention of radon pollution. E-mail: 13601552584@163.com" ]
万骏, 副教授, 硕士生导师, E-mail: sdwanjun@suda.edu.cn WAN Jun, associate professor, master supervisor, E-mail: sdwanjun@suda.edu.cn
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薛素妹, 堵庆苏, 万骏. 辐照交联技术在防氡涂料中的应用[J]. 辐射研究与辐射工艺学报, 2018,36(5):050402-6.
Sumei XUE, Qingsu DU, Jun WAN. Application of radiation crosslinking technology in anti-radon coating[J]. Journal of Radiation Research and Radiation Processing, 2018,36(5):050402-6.
薛素妹, 堵庆苏, 万骏. 辐照交联技术在防氡涂料中的应用[J]. 辐射研究与辐射工艺学报, 2018,36(5):050402-6. DOI: 10.11889/j.1000-3436.2018.rrj.36.050402.
Sumei XUE, Qingsu DU, Jun WAN. Application of radiation crosslinking technology in anti-radon coating[J]. Journal of Radiation Research and Radiation Processing, 2018,36(5):050402-6. DOI: 10.11889/j.1000-3436.2018.rrj.36.050402.
为阻隔墙壁内的氡,减少其对人体的危害,研究了辐射对丙烯酸面漆的交联作用,提出研制防氡涂料的新方法。利用γ射线对涂料进行照射,设置吸收剂量为1、2、3、4、5、6、7、8、9、10 kGy,探索了不同吸收剂量对涂料的交联作用。结果表明,当吸收剂量小于2 kGy时,涂料交联作用随吸收剂量的增加而加强,相应的防氡效率也逐渐增加;当吸收剂量为2 kGy时,防氡效率达到最大值,为67.3%;当吸收剂量大于2 kGy时,交联作用随着吸收剂量的增加而逐渐降低,涂料的防氡效果也越来越差。
The cross-linking effect of radiation on acrylic paint was investigated in order to block the emission of radon from walls and to reduce its harmful influence on the human body. As a result, a new method is proposed for the development of an anti-radon coating. The investigated coating was irradiated with gamma-rays, and the absorbed dose was in the range of 1 to 10 kGy in increments of 1 kGy. Subsequently, the cross-linking effect of the different absorbed doses on the coating was examined. The results indicated that when the absorbed dose was less than 2 kGy, the cross-linking effect of the coating increased with the absorbed dose, and the corresponding radon prevention efficiency also gradually increased. An absorbed dose of 2 kGy resulted in a maximum value of 67.3% for the flood prevention efficiency. In the case when the absorbed dose was more than 2 kGy, the cross-linking effect gradually decreased with an increase in the absorbed dose, and the anti-radon effect of the paint progressively deteriorated.
辐照交联防氡涂料
IrradiationCross-linkedAnti-radonCoating
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