铜、锂和硫的联合添加对波特兰水泥熟料形成的影响。

IF 1.5 4区 工程技术 Q3 MICROSCOPY Journal of microscopy Pub Date : 2024-04-01 DOI:10.1111/jmi.13293
Theodor Staněk, Alexandra Rybová, Martin Boháč, Eva Bartoníčková, Jakub Palovčík
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引用次数: 0

摘要

铜和锂都是强助熔剂,可降低熟料熔体形成的温度。硫能促进水力活性更强的明矾石 M1 改性的稳定。预计这种组合可在显著降低温度的情况下生产出具有高质量技术参数的明矾石熟料。本文研究了铜、锂和硫的组合氧化物添加对波特兰水泥相组成和熟料结构的影响。参考生料由普通水泥原料制备而成。上述每种氧化物以两种不同的浓度添加到参考生料中,共制备了 8 种组合。化学纯化合物 (NH4)2SO4、CuO 和 Li2CO3 被用作这些氧化物的来源。生料在 1450°C 煅烧至平衡。生料的相组成通过 X 射线衍射分析确定,微观结构通过光学显微镜监测,熟料相的微观化学性质通过电子显微镜和 EDS 分析观察。研究发现,在锂或铜含量较高的样品中,白云石和游离石灰增加,而白云石则减少。铜+锂的组合产生的负面影响最大,其次是单独的锂和单独的铜。较高的 SO3 含量稍微抵消了这种负面影响。
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The effect of the combined addition of copper, lithium and sulphur on the formation of Portland cement clinker

Both copper and lithium act as strong fluxes and lower the temperature of the clinker melt formation. Sulphur promotes the stabilisation of more hydraulically active modification of alite M1. It is expected that this combination could produce an alite clinker at significantly lower temperatures with high quality technological parameters. In this paper, the effect of combined oxides of copper, lithium and sulphur addition on the phase composition and clinker structure of Portland cement was investigated. The reference raw meal was prepared from common cement raw materials. Each of the mentioned oxides was added to the reference raw meal in two different concentrations, and 8 combinations were prepared. Chemically pure compounds (NH4)2SO4, CuO and Li2CO3 were used as a source of these oxides. The raw meals were burned to equilibrium at 1450°C. Their phase composition was determined by X-ray diffraction analysis, the microstructure was monitored by optical microscopy, and the microchemistry of the clinker phases was observed by electron microscopy with EDS analysis. It was found that in samples with high lithium or copper content, there is an increase in belite and free lime at the expense of alite. The combination of Cu + Li has the most negative effect, followed by Li alone and Cu alone. The higher SO3 content slightly offsets this negative effect.

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来源期刊
Journal of microscopy
Journal of microscopy 工程技术-显微镜技术
CiteScore
4.30
自引率
5.00%
发文量
83
审稿时长
1 months
期刊介绍: The Journal of Microscopy is the oldest journal dedicated to the science of microscopy and the only peer-reviewed publication of the Royal Microscopical Society. It publishes papers that report on the very latest developments in microscopy such as advances in microscopy techniques or novel areas of application. The Journal does not seek to publish routine applications of microscopy or specimen preparation even though the submission may otherwise have a high scientific merit. The scope covers research in the physical and biological sciences and covers imaging methods using light, electrons, X-rays and other radiations as well as atomic force and near field techniques. Interdisciplinary research is welcome. Papers pertaining to microscopy are also welcomed on optical theory, spectroscopy, novel specimen preparation and manipulation methods and image recording, processing and analysis including dynamic analysis of living specimens. Publication types include full papers, hot topic fast tracked communications and review articles. Authors considering submitting a review article should contact the editorial office first.
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