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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Water Transport in 2-Hydroxyethyl Methacrylate Copolymer Irradiated by #gamma# Rays in Air and Related Phenomena
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Water Transport in 2-Hydroxyethyl Methacrylate Copolymer Irradiated by #gamma# Rays in Air and Related Phenomena

机译:空气中#γ#射线辐照的甲基丙烯酸2-羟乙酯中的水迁移及相关现象

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The water transport in 2-hydroxyethyl methacrylate copolymer (HEMA copolymer) irradiated by #gamma# rays in air is investigated. The sorption data of deionized water transport in HEMA copolymer subjected to various dosages of #gamma#-ray irradiation are in excellent agreement with hte theoretical model that accounts for case I, case II, and anomalous transport. The diffusion coefficient for case I and the velocity for case II satisfy the Arrhenius equation for all dosage levels. The transport process is exothermic and the equilibrium-swelling ratio satisfies the van't Hoff plot. The studies of the glass transiton temperature of the irradiated HEMA copolymer, the pH value of deionized water after irradiation treatment, and the quantitative determination of water structures in the HEMA copolymer hydrogel are helpful in analyzing the irradiation effect on water transport in the HEMA copolymer. The effect of irradiation on the optical properties of the HEMA copolymer is also analyzed. The transmittance of a standard specimen with saturated water is lower than that before the water treatment because of the creation of holes. however, because of the formation of color centers, the color of the copolymer becomes yellow to brown and the UV cutoff wavelength of the HEMA copolymer shifts to the longer wavelength side with increasing irradiation dosage. Some of the color centers can be annigilated after water treatment. The buckled pattern on the outer surface is observed when the HEMA copolymer irradiated by a #gamma# ray in air is immersed in the water. This phenomenon is explained by the inhomogeneous distribution of crosslinking density.
机译:研究了在空气中#γ#射线照射下的甲基丙烯酸2-羟乙酯(HEMA共聚物)中的水传输。在不同剂量的#γ#射线辐照下,HEMA共聚物中去离子水输运的吸附数据与说明案例I,案例II和异常输运的理论模型高度吻合。对于所有剂量水平,情况I的扩散系数和情况II的速度均满足Arrhenius方程。输运过程是放热的,平衡溶胀比满足范霍夫图。研究辐照过的HEMA共聚物的玻璃化转变温度,辐照处理后的去离子水的pH值以及HEMA共聚物水凝胶中水结构的定量测定,有助于分析辐照对HEMA共聚物中水迁移的影响。还分析了辐照对HEMA共聚物的光学性能的影响。由于存在孔,标准样品在饱和水中的透射率低于水处理之前的透射率。但是,由于形成了色心,所以随着照射剂量的增加,共聚物的颜色变为黄色至褐色,并且HEMA共聚物的UV截止波长向较长的波长侧移动。水处理后,某些色心可能会消失。当在空气中被#gamma#射线照射的HEMA共聚物浸入水中时,会观察到外表面的弯曲图案。这种现象可以通过交联密度的不均匀分布来解释。

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