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Effects of Different Conditions on Co-Pyrolysis Behavior of Corn Stover and Polypropylene

机译:不同条件对玉米秸秆和聚丙烯共热解行为的影响

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摘要

The pyrolysis behavior of corn stover and polypropylene during co-pyrolysis was studied using a tube furnace reactor. The effects of mixing ratio of corn stover and polypropylene, pyrolysis temperature, addition amount of catalyst (HZSM-5) and reaction atmosphere (N and CO ) on the properties of pyrolysis products were studied. The results showed that co-pyrolysis of corn stover and polypropylene can increase the yield of pyrolysis oil. When corn stover:polypropylene = 1:3, the yield of pyrolysis oil was as high as 52.1%, which was 4.5% higher than the theoretical value. With the increase of pyrolysis temperature, the yield of pyrolysis oil increased first and then decreased, and reached the optimal yield at 550 °C. The addition of catalyst (HZSM-5) reduced the proportion of oxygenates and promoted the generation of aromatic hydrocarbons. CO has a certain oxidation effect on the components of pyrolysis oil, which promoted the increase of oxygen-containing aromatics and the reduction of deoxy-aromatic hydrocarbons. This study identified the theoretical basis for the comprehensive utilization of plastic and biomass energy.
机译:使用管式炉反应器研究了玉米秸秆和聚丙烯在共热解过程中的热解行为。研究了玉米秸秆与聚丙烯的混合比,热解温度,催化剂的加入量(HZSM-5)和反应气氛(N和CO)对热解产物性能的影响。结果表明,玉米秸秆与聚丙烯共热解可以提高热解油的收率。当玉米秸秆:聚丙烯= 1∶3时,热解油的产率高达52.1%,比理论值高4.5%。随着热解温度的升高,热解油的产率先升高后降低,并在550℃达到最佳产率。催化剂(HZSM-5)的添加减少了含氧化合物的比例并促进了芳烃的生成。 CO对热解油的成分具有一定的氧化作用,促进了含氧芳烃的增加和脱氧芳烃的减少。这项研究确定了塑料和生物质能的综合利用的理论基础。

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