Evaluation of the Possibility of Using Granulated Carbonated Volatile Fly Ash from Fluidized Beds (G-CVFA) in Underground Mining Techniques

IF 1.2 4区 工程技术 Q3 MINING & MINERAL PROCESSING
Jadwiga Proksa, M. Łączny, Z. Bzowski
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引用次数: 1

Abstract

The application of fluidized fly ash in underground mining excavations is limited due to its significant content of free calcium and calcium sulfate. In order to increase the amount of utilized fly ash from fluidized beds, it should be converted to a product with properties that meet the requirements for mining applications. This research presents the results of an attempt to adapt fluidized fly ashes for use in underground mining techniques, by means of carbonation and granulation. Carbonation was performed with the use of technical carbon dioxide and resulted in the reduction of free calcium content to a value below 1%. Granulation on the other hand, resulted in obtaining a product with good physical and mechanical parameters. The performed mineralogical and chemical studies indicate that trace amounts of “binding” phases, such as basanite and/or gypsum are present in the carbonized ash. The addition of water, during the granulation of carbonized fluidized fly ash, resulted in changes in the mineral phases leading to the formation of ettringite and gypsum as well as the recrystallization of the amorphous substance. It was confirmed that the carbonization and granulation of flying fluidized ashes positively affects the possibility of using these ashes in underground mining excavations.
流化床颗粒化碳酸化挥发性粉煤灰(G-CVFA)在地下采矿技术中应用的可能性评价
流态化粉煤灰中游离钙和硫酸钙含量高,限制了其在地下矿山开挖中的应用。为了提高流化床飞灰的利用率,应将其转化为具有满足采矿应用要求的性能的产品。本研究提出了一项尝试的结果,以适应流态化粉煤灰用于地下采矿技术,通过碳酸化和造粒。使用技术二氧化碳进行碳化,使游离钙含量降低到1%以下。另一方面,造粒可以获得具有良好物理和机械参数的产品。所进行的矿物学和化学研究表明,在碳化灰中存在微量的“结合”相,如玄武岩和/或石膏。在碳化流化粉煤灰造粒过程中,水的加入使矿物相发生变化,形成钙矾石和石膏,并使无定形物质重结晶。研究结果表明,飞流化灰的炭化和造粒对飞流化灰在地下开采中应用的可能性有积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Mining Sciences
Archives of Mining Sciences 工程技术-矿业与矿物加工
CiteScore
2.40
自引率
16.70%
发文量
0
审稿时长
20 months
期刊介绍: Archives of Mining Sciences (AMS) is concerned with original research, new developments and case studies in mining sciences and energy, civil engineering and environmental engineering. The journal provides an international forum for the publication of high quality research results in: mining technologies, mineral processing, stability of mine workings, mining machine science, ventilation systems, rock mechanics, termodynamics, underground storage of oil and gas, mining and engineering geology, geotechnical engineering, tunnelling, design and construction of tunnels, design and construction on mining areas, mining geodesy, environmental protection in mining, revitalisation of postindustrial areas. Papers are welcomed on all relevant topics and especially on theoretical developments, analytical methods, numerical methods, rock testing, site investigation, and case studies.
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