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Hydrous pyrolysis of two kinds of low-rank coal for relatively long duration

机译:两种低阶煤的水热解持续时间较长

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摘要

Brown coal samples were treated with hot water in a stainless steel batch reactor at 623 K for 2-72 h. After this hot hydrous treat-ment, gas, oils, and residues were recovered. The resulting residues were chemically analyzed in detail to understand the reaction chem-istry during hydrous pyrolysis. Oxygen functionalities were analyzed chemically with the titration method and carbon types in the residue were examined by solid-state~(13)C NMR measurement. Elemental analyses showed that the oxygen atoms in the residue decreased mark-edly up to 2 h while treatments longer than 48 h were also very effective in removing oxygen functionalities from brown coal. The detailed chemical analyses revealed that alcoholic hydroxyl and carboxyl groups were decomposed in the earlier stages of the treatment, and that ether bonds may be cleaved during the latter stages of the hot hydrous pyrolysis. Experiments using two kinds of brown coal gave very different results. A comparison of the chemical structure of these two coals revealed the origin of the difference; one of them has a greater amount of hydroaromatic moieties than the other, which act as a hydrogen source even during hydrous pyrolysis occurring at temper-atures as low as 623 K.
机译:褐煤样品在623 K的不锈钢间歇反应器中用热水处理2-72小时。经过这种热的含水处理后,可以回收天然气,油和残渣。对生成的残留物进行了详细的化学分析,以了解在水合热解过程中的反应化学。用滴定法对氧的功能进行化学分析,并通过固态〜(13)C NMR测定残留物中的碳类型。元素分析表明,残渣中的氧原子在长达2 h的时间内显着下降,而处理时间超过48 h的去除褐煤中的氧官能度也非常有效。详细的化学分析表明,醇羟基和羧基在处理的早期阶段被分解,而醚键可能在热水热解的后期被裂解。使用两种褐煤的实验得出了截然不同的结果。比较这两种煤的化学结构,可以发现差异的来源。其中一个具有比另一个更大的氢芳族部分,即使在温度低至623 K的含水热解过程中,氢也能作为氢源。

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