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Relationship between Thermal Extraction Yield and Oxygen-Containing Functional Groups

机译:热萃取收率与含氧官能团的关系

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Generating power from HyperCoal is a high-efficiency process in which the organic portion of coal is extracted with industrial solvents at a temperature around 360℃ and fed to a gas turbine directly. This study sought to establish a selection index for identifying subbituminous coals that give high extraction yields. Subbituminous coals were extracted at 360℃ with flowing industrial solvents, and we investigated the relationship between the extraction yield and the quantity of oxygen-containing functional groups in the coal. The extraction yield with a polar solvent, crude methylnaphthalene oil (CMNO), increased with the quantity of carboxylate groups bridged by metal cations, such as Ca~(2+) and Mg~(2+) (COOM). The correlation coefficient between the extraction yield and the quantity was 0.82. Acid treatment of coal before extraction released COOM cross-links, increasing the extraction yield. These results suggest that the thermal extraction of low-rank coals strongly depends on the cross-links rather than the hydrogen bonds. Therefore, the thermal extraction yields of low-rank coals can be estimated from the quantity of COOM in the original coals. The intercept of the regression line between the quantity of COOM and the extraction yield with CMNO was 57.8%. This value is the average extraction yield for low-rank coals with free COOM.
机译:HyperCoal的发电是一个高效过程,其中煤的有机部分用工业溶剂在360℃左右的温度下提取,然后直接送入燃气轮机。这项研究试图建立一个选择指数,以鉴定出高提取率的次烟煤。用流动的工业溶剂在360℃下萃取了次烟煤,并研究了其提取率与煤中含氧官能团数量之间的关系。极性溶剂粗甲基萘油(CMNO)的萃取收率随金属阳离子(例如Ca〜(2+)和Mg〜(2+)(COOM))桥接的羧酸根基团的数量而增加。提取率与提取量的相关系数为0.82。提取前对煤进行酸处理可释放出COOM交联键,从而提高了提取率。这些结果表明,低级煤的热萃取很大程度上取决于交联而不是氢键。因此,可以从原始煤的COOM数量估算低阶煤的热提取产量。用CMNO计算,COOM量与提取率之间的回归线截距为57.8%。该值是具有游离COOM的低品位煤的平均提取产量。

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