一种适于湿热环境的防氡涂层

Radon Prevention Coating in Hot and Humid Environment

  • 摘要: 利用自制的防氡涂料,在释氡模块氡提供的辐射环境下,对防氡涂层的防氡性能和防氡稳定性进行了研究。结果表明:在1#释氡模块氡辐射环境下,涂覆0.8 mm厚的防氡涂层,消泡剂的较佳添加量为0.3%(质量分数,下同)。在消泡剂添加量为0.3%时,随着涂覆厚度的增加,防氡效率提高,当涂覆厚度大于2.0 mm后,防氡效率趋于稳定。在分别添加灰钙、白水泥、石膏和沉淀硫酸钡4种快干助剂的防氡涂层中,仅添加沉淀硫酸钡的防氡涂层的防氡效率明显下降,而添加其他3种快干助剂对防氡涂层的防氡效率基本无影响。在防氡稳定性中,白水泥和石膏的加入在一定程度上降低了防氡涂层的防氡稳定性,而添加灰钙对防氡涂层的防氡稳定性几乎无影响。在湿热和2#释氡模块氡辐射环境下,防氡涂层仍具有良好的耐湿热老化和防氡性能。

     

    Abstract: The radon prevention performance of a new self-made radon prevention coating was researched in the radon contamination provided by the releasing radon modules. With coating thickness of 0.8 mm, the radon mitigation efficiency in 1# radon module concentration is optimal when the addition of defoaming agent is 0.3% (mass fraction). The radon mitigation efficiency increases with the coating thickness when the defoaming agent of 0.3% is added, but the radon mitigation efficiency tends to be stable as the coating thickness is more than 2.0 mm. The radon mitigation efficiency of radon prevention coating appended precipitated barium sulphate decreases obviously, and the addition of ash calcium, white cement and gesso don’t decrease radon mitigation efficiency. The addition of white cement and gesso addition affects the radon prevention stability, while radon mitigation efficiency of radon prevention coating with ash calcium keeps a good performance. Under the hot and humid environment, the radon prevention coating still has good radon mitigation efficiency in 2# radon module concentration.

     

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