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The interaction between the char solid heat carrier and the volatiles during low-rank coal pyrolysis

机译:低阶煤热解过程中炭固体热载体与挥发物的相互作用

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Compared with traditional coal pyrolysis technology, low-rank coal pyrolysis with char as the solid heat carrier can achieve higher tar yield and lighter tar components. The hot char provides heat for coal pyrolysis process and has a thermal catalytic effect on the reactions of released volatiles. Simultaneously, the physicochemical properties and reactivity of the hot char have changed. The effects of the initial temperature of the solid heat carrier on the products of a low-rank coal pyrolysis and on the change of the solid heat carrier after pyrolysis were investigated in a downer reactor. With the initial temperature of the char solid heat carrier increasing from 650 degrees C to 800 degrees C, the reactions between volatiles and the hot char solid heat carrier were different, which resulted in the variations in the final product distributions and tar composition. The char solid heat carrier exhibited the best catalytic cracking effect at 800 degrees C on volatiles generated during coal pyrolysis. The inorganic minerals in coal may play an important catalytic role in the subsequent coal-char-CO2 gasification after the coal pyrolysis.
机译:与传统的煤热解技术相比,以焦炭为固体热载体的低级煤热解可实现更高的焦油收率和更轻的焦油成分。热炭为煤的热解过程提供热量,并对释放的挥发物的反应具有热催化作用。同时,热焦的物理化学性质和反应性发生了变化。在下降反应器中研究了固体载热体的初始温度对低阶煤热解产物和热解后固体载热体变化的影响。随着焦炭固体载热体的初始温度从650摄氏度增加到800摄氏度,挥发物与热焦炭固体载热体之间的反应不同,这导致最终产物分布和焦油组成发生变化。炭固体热载体在800℃下对煤热解过程中产生的挥发物表现出最佳的催化裂化效果。煤中的无机矿物在煤热解后的后续煤焦-CO2气化中可能起重要的催化作用。

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