氧化铝工业的热分析。第一部分:测量、观察和仪器

C. M. Earnest
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引用次数: 1

摘要

在这里介绍的工作中,介绍了用于识别和分析含铝矿物和其他矿物的铝土矿热分析的例子。此外,采用差热分析(DTA)、差热分析(DSC)、热重分析(TGA)和差热分析(DTG)技术对拜耳工艺生产设施的产品和副产品(赤泥)进行了研究。在整个手稿中,包含了大量关于热分析仪器及其用于此类矿物混合物的信息,这些矿物混合物可能对获得良好结果有特殊要求。在使用DSC, DTA和TGA/DTG分析具有重叠过渡的样品时,特别关注操作员的选择。还讨论了产品氧化铝、赤泥副产物和铝土矿原料中选定组分脱氢产生的水蒸气的释放和消除。本文将介绍两种牙买加铝土矿矿石的差热分析、差热分析、差热分析、差热分析和差热分析,一种是来自澳大利亚北部(Weipa)的铝土矿样品,一种是来自澳大利亚西部(Darling Range)的铝土矿矿石,一种是来自拜耳工艺的赤泥样品和产品氧化铝。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal Analysis in the Alumina Industry. Part I: Measurements, Observations and Instrumentation
In the work presented here, examples of the thermal analysis of bauxites for the recognition and analysis of both aluminous bearing minerals and other minerals which are presented. In addition to this, samples obtained from Bayer process production facilities were studied by the techniques of DTA, DSC, TG (TGA) and DTG for both product and by-product (red mud). Throughout the manuscript, a great deal of information is included regarding the thermal analysis instrumentation and its use for such mineral mixtures which may have special requirements for achieving good results. Particular interest is given to the operator choices while using DSC, DTA, and TGA/DTG for the analysis of samples with overlapping transitions. The liberation and elimination of water vapor arising from the dehydroxylation of selected components in product alumina, red mud by-product and bauxite raw material are also discussed. This paper will present the DTA, DSC, TGA and DTG analysis of two Jamaican bauxite ores, a bauxite specimen from northern Australia (Weipa), a Western Australia (Darling Range) bauxite ore, a red mud specimen and a product alumina from the Bayer Process.
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