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Co-pyrolysis Behavior of Low-grade Coal and Binder Using High Temperature Solvent Fractionation

机译:高温溶剂分级分离低品位煤和粘结剂的共热解行为

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The authors have proposed a high temperature solvent fractionation method that can separate coals into several fractions having different molecular weight without destroying coal structure. In this study the method was applied to characterization of low-grade coals and binder during their co-pyrolysis to clarify chemical interaction between them. When a sub-bituminous coal or a slightly-caking coal was co-pyrolyzed with asphalt pitch (ASP), it was found that smaller-molecular weight compounds less than 800 in molecular weight which were abundant in ASP could be added by appearance as can be expected from the calculation assuming no interaction between the coals and ASP. The added smaller-molecular weight compounds contributed to the reduction of viscosity of the pyrolyzing coal. The possibility was also suggested that part of smaller-molecular weight compounds in ASP were converted to heavier compounds whereas some smaller-molecular weight compounds were formed from coals to compensate the loss of such compounds derived from ASP. It was also shown that oxygen existent in the heaviest fraction of the low-grade coals was removed to form H_(2)O and CO_(2) by chemical interaction with ASP. This interaction was found to contribute to the reduction of shrinkage of low-grade coals during carbonization.
机译:作者提出了一种高温溶剂分馏方法,该方法可以将煤分离成具有不同分子量的几个馏分而不会破坏煤的结构。在这项研究中,该方法用于低品位煤和粘结剂共热解过程中的表征,以阐明它们之间的化学相互作用。发现当亚沥青煤或轻度结块的煤与沥青沥青(ASP)共热解时,发现可以通过外观添加尽可能多的分子量小于800且富含ASP的小分子量化合物。假设煤和ASP之间没有相互作用,则可以从计算中得出。添加的较小分子量的化合物有助于降低热解煤的粘度。也有可能将ASP中的一部分较小分子量的化合物转化为较重的化合物,而一些较小分子量的化合物则由煤形成,以补偿这种衍生自ASP的化合物的损失。研究还表明,通过与ASP的化学作用,低级煤中最重的部分中存在的氧被除去,形成H_(2)O和CO_(2)。发现这种相互作用有助于减少碳化过程中低品位煤的收缩。

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