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作 者:宁海霞 安红娜[1] 雷杰 王宾 吴浪[2] NING Haixia;AN Hongna;LEI Jie;WANG Bin;WU Lang(Mianyang Polytechnic,Mianyang 621000,China;School of Materials Science and Chemistry,Southwest University of Science and Technology,Mianyang 621010,China)
机构地区:[1]绵阳职业技术学院,绵阳621000 [2]西南科技大学材料与化学学院,绵阳621010
出 处:《硅酸盐通报》2024年第6期2287-2293,2300,共8页Bulletin of the Chinese Ceramic Society
基 金:国家自然科学基金(12375316);绵阳职业技术学院2022年度校级科研项目(MY22YB01)。
摘 要:为提高硼硅酸盐玻璃对硫的包容能力,采用Ba(NO_(3))_(2)将模拟高硫高钠废液中的SO_(4)^(2-)转变为BaSO_(4),再利用熔融法制备硼硅酸盐玻璃固化体,研究了模拟高放废液掺量对玻璃固化体结构和抗浸出性能的影响。结果表明:采用Ba(NO_(3))_(2)对模拟高硫高钠废液进行预处理后,废物包容量达到23%(质量分数)仍未发生分相;掺入模拟高放废液的玻璃固化体中的Na、B、Si元素归一化质量损失比纯硼硅酸盐玻璃低一个数量级,随着模拟高放废液掺量增加玻璃固化体抗浸出性能无明显变化。^(11)B和^(29)Si核磁共振谱分析表明,模拟高放废液的掺入使部分BO_(3)结构转变为BO_(4)结构,玻璃网络结构有所增强。In order to increase solubility of sulfur in borosilicate glass,SO_(4)^(2-)ions in simulated high-level liquid waste(HLLW)with relatively high content of sulfur and sodium were pretreated by adding Ba(NO_(3))_(2)solution,and then borosilicate glass waste form was prepared by melt-quenching method.The effects of pretreated HLLW on the structure and leaching resistance were mainly investigated.The results show that the waste loading can be increased to 23%(mass fraction)without phase separation after the Ba(NO_(3))_(2)pretreatment.The normalized elemental mass loss of Na,B and Si of the HLLW-loaded samples are one order of magnitude lower than that of the pure borosilicate glass.Furthermore,the leaching resistance of the glass waste form has no significant change with increasing HLLW content.11 B and 29 Si MAS NMR analyses indicate that part of BO_(3)transforms into BO_(4)structural units and a polymerization of the glass network occurs after HLLW addition.
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