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The Thermophysical Properties of Australian Opal

机译:澳大利亚蛋白石的热物理特性

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The characterisation of the surface area and porosity of opals derived from Tintenbar, a volcanic environment, and Lightning Ridge, a sedimentary environment, using nitrogen gas adsorption at -196 deg C is reported. Both opal types were found to have relatively low surface areas and displayed little porosity. The low surface areas observed is indicative of the ability of silica to infill voids and interstices. Thermogravimetric analysis of the samples before and after degassing was carried out to determine the amount of water removed by the degassing process. Negligible difference was found in the water content before and after degassing in the case of the Lightning Ridge sedimentary opal, while the Tintenbar volcanic opal was found to have lost more that 60 per cent of its water during the degassing process. These differences were ascribed to the differences in the silica structure of the opals with the Lightning Ridge opal having a denser cage structure, which traps the molecular water, while a more open structure is postulated for the Tintenbar opal, allowing the water to be relatively easily removed.
机译:报道了在-196℃-196℃下衍生自Tintenbar,火山环境和雷岭,沉积环境的Tintenbar,火山环境和雷岭岭的蛋白石的表征。发现这两种蛋白石类型都有相对低的表面积并显示出小的孔隙率。观察到的低表面积表示二氧化硅到填充空隙和空隙的能力。进行脱气前后的样品的热重分析以确定通过脱气过程除去的水量。在闪电岭沉积蛋白石的情况下脱气之前和之后发现含水量可忽略不计差异,而在脱气过程中发现Tintenbar火山蛋白蛋白葡萄球菌蛋白葡萄球菌蛋白在脱气过程中损失了60%。这些差异归因于具有具有密度笼式结构的闪电脊蛋白的粉红色覆盖物的差异,该模具捕获分子水,而允许更多的开放结构用于Tintenbar蛋白,允许水相对容易地相对容易删除了。

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