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Hafnium in peralkaline and peraluminous boro-aluminosilicate glass and glass sub-components: a solubility study

机译:高碱性和高铝硼硅铝酸盐玻璃及其子成分中的::溶解度研究

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A relationship between the solubility of hafnia (HfO2) and host glass composition was investigated by determining the solubility limits of HfO2 in peralkaline and peraluminous glasses in the system SiO2-Al2O3-B2O3-Na2O in air at 1450 degreesC. The only Hf-bearing phase to crystallize in the boro-aluminosilicate melts is hafnia. Some peraluminous boro-aluminosilicate glasses also crystallize a B-containing mullite. In glasses with molar Na2O > Al2O3, the solubility of hafnia is linearly and positively correlated with Na2O/(Na2O + Al2O3) or Na2O - Al2O3 (excess sodium), despite the presence of 5-16 mol% B2O3. The results of this solubility study are comparable to other studies of high-valence cation solubility in B-free silicate melts. For peralkaline B-bearing glasses, it is shown that, although the solubility limits are higher, the solution behavior of hafnia is the same as in B-free silicate melts previously studied by other workers. By comparison, it is shown that in peraluminous melts there must be a different solution mechanism for hafnia, different than that for peralkaline sodium-boro-aluminosilicate glasses in this study and different than that for B-free silicate melts studied by others. The formation of moieties in the peralkaline glasses/melts, with approximate stoichiometries of Na4HfO4, Na6Hf2O7 or NaHfO3 (most likely with associated Si and B), appears to be responsible for the incorporation of large amounts of Hf in the glass matrix, and therefore high HfO2 solubility. (C) 2003 Elsevier B.V. All rights reserved. [References: 32]
机译:通过确定1450℃空气中SiO2-Al2O3-B2O3-Na2O体系中高碱性和高铝玻璃中HfO2的溶解度极限,研究了氧化f(HfO2)与主体玻璃组成之间的关系。在硼铝硅酸盐熔体中结晶的唯一含Hf相是氧化f。一些高铝硼铝硅酸盐玻璃还会使含B的莫来石结晶。在摩尔比Na2O> Al2O3的玻璃中,尽管存在5-16 mol%B2O3,但氧化the的溶解度与Na2O /(Na2O + Al2O3)或Na2O-Al2O3(过量钠)呈线性正相关。此溶解度研究的结果与其他高价阳离子在无B硅酸盐熔体中的溶解度的研究可比。对于含碱金属B的玻璃,已表明,尽管溶解度极限较高,但氧化f的溶解行为与之前其他工作人员研究的无B硅酸盐熔体相同。通过比较,可以看出,在高铝熔体中,氧化ha必须具有不同的溶解机理,与本研究中的高碱性钠-硼-铝硅酸盐玻璃不同,并且与其他研究的无硼硅酸盐熔体不同。在高碱性玻璃/熔体中形成的部分,其化学计量比近似为Na4HfO4,Na6Hf2O7或NaHfO3(最可能与相关的Si和B结合),似乎是玻璃基质中大量Hf掺入的原因,因此高HfO2溶解度。 (C)2003 Elsevier B.V.保留所有权利。 [参考:32]

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