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油页岩混合小麦秸秆分级共热解特性

Graded co-pyrolysis characteristics of oil shale mixed wheat straw

  • 摘要: 利用固定床产物分级回收的方式,研究了油页岩混合小麦秸秆生物质在不同温度阶段(t=348, 476, 521℃)的共热解特性,以及有机碳热化学转化规律.利用气相色谱-质谱联用仪(GC-MS)对热解产物结构进行定性、定量分析.结果表明:两者之间的协同作用主要体现在t=348℃时油页岩中矿物质对生物质热解过程的催化,以及t=476℃时生物质灰分中矿物质对临界沥青分子裂解过程的影响;混合热解显著提升了生物质热解产物中氢和碳原子数之比,促进了氧元素从热解油向热解气的转移,提升了页岩油产量,并促进了其中长直碳链的提前热解;油页岩在t=476℃时热解生成的杂原子烃类也有一定程度增加.

     

    Abstract: The co-pyrolysis characteristics and the thermochemical transformation of organic carbon of oil shale mixed wheat straw biomass were investigated at different temperature stages(t=348, 476, 521 ℃) by the fixed bed product classification recovery. GC-MS was used to analyze the structure of pyrolysis products qualitatively and quantitatively. The results show that the synergistic effect is mainly reflected in the catalysis of minerals in the pyrolysis process of biomass in oil shale at t=348 ℃, and it is also reflected in the influence of minerals in biomass ash at t=476 ℃ on critical asphalt molecular cracking process. The H/C atomic ratio of biomass pyrolysis products is significantly increased by the mixed pyrolysis, and the transfer of oxygen elements from pyrolysis oil to pyrolysis gas is promoted to improve the production of shale oil and promote the early pyrolysis of long straight carbon chains. The heteratomic hydrocarbons generated at t=476 ℃ pyrolysis are also increased to a certain extent.

     

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