Zubkova Valentina, Strojwas Andrzej
Institute of Chemistry, Jan Kochanowski University in Kielce, 7 Uniwersytecka Str., 25-406 Kielce, Poland.
Materials (Basel). 2022 Dec 17;15(24):9027. doi: 10.3390/ma15249027.
The influence of three coal tar pitches (CTPs), having softening points at 86, 94, and 103 °C, on the thermal behaviour of a defrosted high-volatile coal during co-carbonization and co-pyrolysis was studied. The following research techniques were used: X-raying of the coked charge, TG/FT-IR, ATR and UV spectroscopies, extraction, SEM, STEM, and XRD. It was determined that CTP additives change the structure of the coal plastic layer, the thickness of its zones, and the ordering degree of the structure of semi-cokes to a different extent and independently from their softening points. The softening points of CTPs do not influence the composition and yield of volatile products emitted from blends with pitch as well as the composition, structural-chemical parameters, and topological structure of material extracted from coal blends. It is suggested that such a lack of existence of any correlation between the softening points of CTPs and the degree of their influence on the thermal behaviour of coal was caused by the presence of the atoms of metals (Fe and Zn) in the CTPs. These atoms change the course of the carbonization of the CTPs themselves and their influence on organic substance of coal in blends with CTPs.
研究了三种软化点分别为86、94和103℃的煤焦油沥青(CTP)对解冻后的高挥发分煤在共碳化和共热解过程中热行为的影响。采用了以下研究技术:对焦化装料进行X射线检测、热重-傅里叶变换红外光谱(TG/FT-IR)、衰减全反射(ATR)和紫外光谱分析、萃取、扫描电子显微镜(SEM)、扫描透射电子显微镜(STEM)以及X射线衍射(XRD)。结果表明,CTP添加剂会不同程度地改变煤塑性层的结构、其区域厚度以及半焦结构的有序度,且与它们的软化点无关。CTP的软化点不影响含沥青混合物中挥发产物的组成和产率,也不影响从煤混合物中萃取的物质的组成、结构化学参数和拓扑结构。研究认为,CTP软化点与其对煤热行为的影响程度之间不存在任何相关性,是由于CTP中存在金属(铁和锌)原子所致。这些原子改变了CTP自身的碳化过程及其对与CTP混合的煤中有机物的影响。