评估kleszczÓw地堑(beŁchatÓw褐煤矿床- szczercÓw油田)石灰石在电力工业中作为潜在二氧化硫吸附剂的用途-地质文献问题

E. Hycnar, J. Mucha, T. Ratajczak, M. Wasilewska-Błaszczyk
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引用次数: 2

摘要

Kleszczów地堑侏罗系灰岩是Bełchatów褐煤矿床最重要的伴生原料之一。近年来,有必要认识到它们作为SO2吸附剂在能源工业中的适用性。石灰石的特点是岩性变异性高。它们显示出高硬度和致密性,并且是弱简洁甚至粉质。在顶部,它们遭受岩溶作用。下部受二次矿化作用影响,其中硅化作用最超前。方解石的压实、胶结、溶解和再结晶等其他转变过程的影响也很明显。这些过程促进了石灰石矿物和化学成分的显著多样化,以及物理-化学和物理-机械参数的分化,这些参数负责评估石灰石作为生产二氧化硫吸附剂原料的商业用途的适用性。与记录Bełchatów矿床中的石灰石有关的其他问题是,与主要矿物相比,它们的重要性较低。它的勘探程度较低,其特点是勘探钻孔密度较低,从岩心中采集的样品平均长度明显较长。在目前伴随的矿产勘探阶段,只能初步估计石灰石资源作为潜在的二氧化硫吸附剂是可能的。在建立准则参数的三维模型和开发提取方案后,将有可能进行精确的估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE ASSESSMENT OF USEFULNESS OF LIMESTONES FROM THE KLESZCZÓW GRABEN (BEŁCHATÓW LIGNITE DEPOSIT – SZCZERCÓW FIELD) AS POTENTIAL SO2 SORBENTS IN THE POWER INDUSTRY – PROBLEMS OF GEOLOGICAL DOCUMENTING
Jurassic limestones of the Kleszczów Graben are among the most important accompanying raw materials in the Bełchatów lignite deposit. In recent years, there has been a need to recognize their suitability as SO2 sorbents for use in the energy industry. The limestones are characterized by high lithological variability. They show both high hardness and compactness, and are weakly concise or even silty. At the top parts, they are subjected to karst processes. The lower parts are affected by secondary mineralization processes, among which the silicification process is most advanced. The effects of other transformation processes, such as compaction, cementation, dissolution and recrystallization of calcite are also visible. These processes contributed to a significant diversification of the mineral and chemical composition of limestone, and differentiation of physico-chemical and physical-mechanical parameters responsible for assessing the suitability for their commercial use as a raw material for the production of SO2 sorbents. Other problems associated with documenting the limestones in the Bełchatów deposit are related to their lesser importance compared to the main mineral. Its degree of exploration is low, characterized by a lower density of exploratory boreholes and significantly longer average lengths of samples collected from drill cores. At the present stage of the accompanying mineral exploration, only a preliminary estimation of limestone resources as potential SO2 sorbents is possible. The precise estimation will be possible after constructing a 3D model of criterion parameters and developing an extraction scenario.
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