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Melt densities in the Na2O-FeO-Fe2O3-SiO2 system and the partial molar volume of tetrahedrally-coordinated ferric iron in silicate melts

机译:Na2O-FeO-Fe2O3-siO2体系中的熔体密度和硅酸盐熔体中四面体配位三价铁的部分摩尔体积

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摘要

The densities of 12 melts in the Na2O-FeO-Fe2O3-SiO2 system have been determined in equilibrium with air, in the temperature range of 1000–1500°C, using the double bob, Archimedean technique. Ferrous iron determinations of 100–200 mg samples, “dip” quenched from high temperature, indicate that all the melts investigated were highly oxidized under these experimental conditions. 57Fe Mössbauer spectra of glasses obtained by drop quenching 80 mg melt samples from loop equilibration runs yield Fe3+/Fe2+ data equivalent to that for the densitometry (dip) samples for all but the most viscous melt, and confirm that all but one melt equilibrated with air during the densitometry measurements.Melt densities range from 2.17 to 2.88 g/cm3 with a mean standard deviation (from replicate experiments) of 0.36%. Least squares regression of the density data at 1300, 1400 and 1500°C, was calculated, both excluding and including excess volume terms (herein named linear and nonlinear fits, respectively) and the root mean squared deviation (RMSD) of each regression was compared with the total experimental error. The partial molar volumes computed for linear fits for Na2O and SiO2 are similar to those previously reported for melts in the Na2O-Al2O3-SiO2 system (Steinet al., 1986). The partial molar volumes of Fe2O3 obtained in these linear fits are equal to those obtained by Shiraishi et al. (1978) in the FeO-Fe2O3-SiO2 system but 5 to 10% lower than reported by Mo et al. (1982) in multicomponent melts. The partial molar volume exhibited by Fe3+ in this system is representative of the partial molar volume of tetrahedrally coordinated Fe3+ in silicate melts.
机译:已使用双鲍勃,阿基米德技术在Na2O-FeO-Fe2O3-SiO2系统中在1000-1500°C的温度与空气平衡的条件下确定了12个熔体的密度。测定100–200 mg样品中的亚铁,然后从高温“淬火”下来,这表明所研究的所有熔体在这些实验条件下均被高度氧化。通过回路平衡运行对80 mg熔融样品进行滴淬处理而获得的玻璃的57FeMössbauer光谱得出的Fe3 + / Fe2 +数据与密度法(浸量)样品的数据相当,但粘度最高的熔融物除外,并确认除一个熔融物外,所有样品均与空气平衡熔体密度范围为2.17至2.88 g / cm3,平均标准偏差(来自重复实验)为0.36%。计算了1300、1400和1500°C时密度数据的最小二乘回归,排除和包括了多余的体积项(分别称为线性拟合和非线性拟合),并比较了每个回归的均方根偏差(RMSD)总的实验误差。 Na2O和SiO2的线性拟合计算出的部分摩尔体积与先前报道的Na2O-Al2O3-SiO2体系中的熔体的摩尔分布相似(Steinet等,1986)。在这些线性拟合中获得的Fe2O3的部分摩尔体积等于Shiraishi等人获得的那些。 (1978年)在FeO-Fe2O3-SiO2系统中,但比Mo等人报道的低5%至10%。 (1982)在多组分熔体中。 Fe3 +在该系统中表现出的部分摩尔体积代表了硅酸盐熔体中四面体配位的Fe3 +的部分摩尔体积。

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