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首页> 外文期刊>European Journal of Glass Science and Technology, PartA. Glass Technology >Property modification of a high level nuclear waste borosilicate glass through the addition of
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Property modification of a high level nuclear waste borosilicate glass through the addition of

机译:通过添加下列物质来改性高含量核废硼硅玻璃

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摘要

The pro rata addition of 0-20 wt% Fe2O3 to a UK high level waste (HLW) borosilicate glass containing 25 wt% model UK HLW has been studied in terms of the effects of Fe2O3 addition on glass chemical durability, thermal properties, density and redox. Mixtures have been successfully melted in Pt crucibles at 1050 and 1150°C, and resulting glasses are x-ray amorphous. Addition of Fe2O3 increases glass density and HLW loading per unit volume increases by 3-5% for 10 wt% Fe2O3 addition. Chemical durability has been measured using the methodology of product consistency test B (ASTM C1285) for 7, M and 28 days. Leach rate and solution pH is reduced by the addition of Fe2O3. Overall test residts suggest that 5-10% Fe2O3 addition provides optimum improvement in chemical durability. Thermal stability and T_g are unaffected by 0-15 zot% Fe2O3 addition. ~(57)Fe Mossbauer spectroscopy reveals that Fe is present in these glasses as Fe~(3+) ions in tetrahedral coordination, strengthening the glass network through increased network polymerisation. The results also suggest that increasing the Fe2O3 content of the glass changes the character and makeup of the interfacial layers formed during corrosion.
机译:已就添加Fe2O3对玻璃化学耐久性,热性能,密度和氧化还原。混合物已成功地在1050和1150°C的温度下在Pt坩埚中融化,所得玻璃是X射线无定形的。 Fe 2 O 3的添加增加了玻璃密度,并且当添加10 wt%的Fe2O3时,每单位体积的HLW负载增加了3-5%。化学耐久性已使用产品一致性测试B(ASTM C1285)的方法测量了7天,M天和28天。加入Fe2O3可降低浸出率和溶液pH。总体测试残渣表明,添加5-10%的Fe2O3可以优化化学耐久性。热稳定性和T_g不受0-15zot%Fe 2 O 3添加的影响。 〜(57)Fe Mossbauer光谱显示,这些玻璃中的Fe以四面体配位的Fe〜(3+)离子的形式存在,通过增加网络聚合来增强玻璃网络。结果还表明,增加玻璃中Fe2O3的含量会改变腐蚀过程中形成的界面层的特性和组成。

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