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Insight into the effects of additive water on caking and coking behaviors of coal blends with low-rank coal

机译:洞察添加剂水对低阶煤掺混煤结块和结焦行为的影响

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Additive water is usually needed to preserve 9-11% moisture content of blended coal in the stamp-charging coking process, which in fact is unfavorable for coking property. An insight into the improvement of coking property of coal blends with much low-rank coal (long flame coal SFC, lignite HLH) by regulating additive water was proposed in terms of its effects on the metaplast fluidity and the particle agglomeration behavior. The results indicate that the cohesiveness of gas coals (GC) can be properly enhanced by adding water. The restrictions on the condensation of aromatic structures and the break-up of -CH2- structure and the development of the polyhydroxy groups in aromatic structures are favorable to increase the fluidity of metaplast after adding water, as demonstrated by the optical texture and FTIR analysis of the semicoke (450 degrees C). The great difference in the hydrophilic properties for various rank coals leads to the particle agglomeration of gas coal and fat coal (GC and FC), which makes them difficult to mix uniformly with SFC after adding water, thus reduces the coking property. A reasonable approach of adding water suggests that H2O and SFC should be well mixed prior to blending with caking coals, which can lead to a uniform particle distribution and a better coking property. This approach promotes the direct and efficient utilization of low-rank coal (especially lignite) by the blending coking with no or less drying and dewatering processes.
机译:在压印焦化过程中,通常需要添加水来保持9-11%的混合煤水分,这实际上不利于炼焦性能。提出了通过调节添加剂水来改善低阶煤(长焰煤SFC,褐煤HLH)的共混物焦化性能对变质流动性和颗粒团聚行为的影响的见解。结果表明,通过添加水可以适当提高瓦斯煤(GC)的内聚力。芳族化合物的光学织构和FTIR分析表明,限制芳族结构的缩合和-CH2-结构的破坏以及芳族结构中多羟基的发展有利于增加加水后的质体流动。半焦(450摄氏度)。各种等级煤的亲水性差异很大,导致气煤和脂肪煤(GC和FC)的颗粒团聚,这使其难以在加水后与SFC均匀混合,从而降低了焦化性能。合理的加水方法建议将H2O和SFC与粘结煤混合之前应充分混合,这可以导致均匀的颗粒分布和更好的焦化性能。这种方法通过混合焦化而几乎不进行干燥和脱水过程,促进了低品位煤(尤其是褐煤)的直接和有效利用。

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