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首页> 外文期刊>Mineralogical Magazine >Relation between oxidation/crystallization and degassing upon reheating of basalt glass from Kilauea, Hawaii
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Relation between oxidation/crystallization and degassing upon reheating of basalt glass from Kilauea, Hawaii

机译:夏威夷基拉韦厄的玄武岩玻璃再加热时氧化/结晶与脱气之间的关系

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Basalt glass from Kilauea, Hawaii (SBG) starts to crystallize upon heat treatment in air at ~840°C. In addition, oxidation takes place. The kinetics of both processes may be readily quantified though the mechanism is difficult to access. This work investigates the relationship between these processes, crystallization and oxidation, and the escape of volatiles from the glass/liquid upon reheating. Evolved gas analyses and differential scanning calorimetry are the techniques used. In addition, isothermal heat treatment in argon is carried out in order to eliminate the external reason for oxidation, the oxygen gradient, and to focus on intrinsic oxidation. Products are examined with 57Fe Mössbauer spectroscopy. As expected, degassing temperatures of SBG, and of two MORB samples, considered for comparison, are above the glass transition temperature. We find no convincing evidence of intrinsic oxidation. Degassing is likely to induce interface-controlled crystallization.
机译:夏威夷基拉韦厄(SBG)的玄武岩玻璃在约840°C的空气中热处理后开始结晶。另外,发生氧化 。尽管很难找到机制,但可以很容易地量化这两个过程的动力学。这项工作研究了 这些过程之间的关系,结晶和 氧化以及重新加热时玻璃/液体 中的挥发物逸出。不断发展的气体分析和差示扫描量热法是所使用的技术。另外,在氩气中进行等温 热处理是为了消除 外部氧化原因,氧梯度和 本征氧化。用 57 FeMössbauer光谱检查产品。正如预期的那样,SBG的脱气温度 和考虑进行比较的两个MORB样品的脱气温度 都高于玻璃化转变温度。我们发现没有令人信服的 内在氧化的证据。脱气很可能引起 界面控制的结晶。

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