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The effects of particle grinding on the burnout and surface chemistry of coals in a drop tube furnace

机译:颗粒粉磨对落管炉中煤的燃尽和表面化学的影响

摘要

Grinding coals to a pulverised coal specification for blast furnace injection can be costly, which is why some iron manufacturers choose a larger granulated coal size specification. However, there is a concern that these coals may have lower burnout in the raceway region so there is a technical and economic balance with coal grinding. This paper investigates how the process of grinding alters the physical properties, plus the surface chemistry, of coals and their chars formed in a drop tube furnace; it was found that in many cases the larger particle size coals gave improved combustion burnout compared to smaller sizes.ududThe physical properties of the chars, formed from grinding coals to different sizes, resulted in char swelling in the smaller particle sizes, compared to char fragmentation for the larger size classifications. Minerals phases associated with better coal reactivity were found to undergo higher conversion to other chemical forms with the larger size coals, suggesting a potential catalytic or synergistic contribution to their burnout. A closer look at the surface chemistry suggests that the action of grinding coals has an important effect on the surface chemistry. The XPS spectra of the chars, formed in a drop tube furnace, indicated that grinding the coals to a smaller particle size reduced the carbon–oxygen and carbon–mineral interactions compared to the larger sizes and correlated with the higher burnouts. An increasing trend was identified for the carbon sp2 bonding with larger size and higher rank coals which correlated with their burnout at low carbon conversions; however, this did not hold at higher conversions, suggesting other factors were more dominant.
机译:将煤粉磨碎成高炉喷吹用的粉煤规格可能是昂贵的,这就是为什么一些铁制造商选择较大的粒状煤规格的原因。但是,人们担心这些煤在滚道区域的燃尽率较低,因此在磨煤方面存在技术和经济上的平衡。本文研究了研磨过程如何改变在滴管炉中形成的煤及其炭的物理性质以及表面化学性质。已发现,在许多情况下,与较小尺寸的煤相比,较大粒径的煤可改善燃烧燃烧。 ud ud由磨成不同尺寸的煤形成的炭的物理特性导致较小粒径的炭膨胀对于较大尺寸的分类,会出现char碎片。发现与更好的煤反应性相关的矿物质相随着较大尺寸的煤经历更高的转化为其他化学形式,表明对它们的燃尽具有潜在的催化作用或协同作用。仔细研究表面化学表明,磨煤的作用对表面化学有重要影响。在滴管式炉中形成的焦炭的XPS光谱表明,与较大的煤粉相比,将煤磨碎至较小的粒径可降低其碳-氧和碳-矿物质的相互作用,并且与燃尽较高相关。对于较大尺寸和更高等级的煤,碳sp2键合的增长趋势已经确定,这与低碳转化率下的燃尽有关。但是,在转化率较高的情况下,这种情况并不成立,这表明其他因素占主导地位。

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