SunRui, MaGaofeng, MaGuoshuai, WangXiaoying, LiangJie. Catalytic pyrolysis characteristics of simulated seawater in lean coal[J]. Journal of Mining Science and Technology, 2020, 5(1): 115-121.
Citation: SunRui, MaGaofeng, MaGuoshuai, WangXiaoying, LiangJie. Catalytic pyrolysis characteristics of simulated seawater in lean coal[J]. Journal of Mining Science and Technology, 2020, 5(1): 115-121.

Catalytic pyrolysis characteristics of simulated seawater in lean coal

  • Publish Date: 2020-02-28
  • Intheunderground catalytic gasification processof lean coal,the solid catalyst cannot be usedandrecovered,soitisnecessarytodevelopaninexpensiveliquidcatalyst.Inordertoexplorethe feasibilityofseawaterasacheapgasificationagentforundergroundcoalgasification,andtounderstand thecatalyticeffectofNaClcomponentoncoalpyrolysisandgasification,thispaperselectstheblocksize with3%NaClsolution(simulatedseawater)ascatalyst.TheleancoalofWangxieCoalMineofabout 6cmwassubjectedtopyrolysistest.Theheatingrateinsideandoutsideofthecoalblockandthecompositionofthepyrolysisproducttarweremeasured.Theinfluenceofthecatalystonthesemi-cokestructurewasstudied.Theresultsshowthatthetemperaturetransferintheprocessofpyrolysisofmassive leancoalhashysteresis.Theactivationenergyoflarge-scalecoalwithadditionofNaClcatalystinthetemperaturerangeof350℃~650℃isreducedby39%and45%,respectively,comparedwiththeraw coal;catalyticpyrolysisThebenzenecontentintarincreasedby7.8%,thehydrocarboncontentofcoal sampleⅠdecreasedby14.9%,coalsampleⅡdecreasedby32.4%;thespecificsurfaceareaofcatalyticpyrolysiscoalcharwassignificantlylargerthanthatofnon-catalyzedpyrolysis;Thecontentof—OH bondand* *C* *OhealthcoalⅡcoke
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      沈阳化工大学材料科学与工程学院 沈阳 110142

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