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Characteristics of bio-oil obtained by catalytic pyrolysis of beverage carton packaging waste

机译:饮料纸盒包装废料催化热解获得的生物油特性

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Milled Tetra Aseptic (TA), and cardboard (TAC) and polyethylene (TAPE) layers separated from TA were subjected to non-catalytic and catalytic pyrolysis at 450 ℃ with a heating rate of 100 ℃/s to produce liquid products with high yield. Two montmorillonite clays (K10, KSF) were acting as catalysts. The pyrolytic oil yield was in the range of 49.7-69.3 wt% depending on the type and the amount of catalyst. The non-catalytic fast pyrolysis at 450 ℃ leads to the formation of bio-oil as a mixture of water, oil and wax with the highest yield (66.9 wt%). The addition of montmorillonite K10 promotes deeper degradation of polyethylene with the formation of liquid and gaseous products. Increasing amount of montmorillonite results in loss of bio-oil productivity followed by a substantial increase of gas yield. The amount and the type of catalyst influence the distribution of oil components. The addition of montmorillonite K10 to Tetra Aseptic promotes deeper conversion of cardboard and polyethylene layers. Ultimate and FT-IR analyzes show that the liquid products are characterized by lower oxygen content accompanied by increased hydrogen and carbon contents. The contribution of liquid hydrocarbons is the highest in bio-oil when a montmorillonite K10 is used as a catalyst during pyrolysis of TA. The pyrolysis of cardboard or polyethylene layers separated from TA shows that the process does not undergo according to the additivity rule. The degradation of PE is much deeper during the pyrolysis of separate layer than whole TA.
机译:将经过碾磨的Tetra As无菌(TA)以及从TA分离出的纸板(TAC)和聚乙烯(TAPE)层在450℃下以100℃/ s的加热速率进行非催化和催化热解,以高产率生产液体产品。两种蒙脱土(K10,KSF)用作催化剂。根据催化剂的类型和量,热解油的产率在49.7-69.3重量%的范围内。 450℃下的非催化快速热解以水,油和蜡的混合物形式形成生物油,产率最高(66.9 wt%)。蒙脱石K10的加入促进了聚乙烯的更深层降解,形成了液体和气体产物。蒙脱石量的增加导致生物油生产率的损失,随后气体产率的显着提高。催化剂的量和类型影响油组分的分布。在Tetra Aseptic中添加蒙脱石K10可以促进纸板和聚乙烯层的更深层转化。最终和FT-IR分析表明,液体产物的特征是氧含量较低,同时氢和碳含量增加。当将蒙脱石K10用作TA热解过程中的催化剂时,液态烃在生物油中的贡献最大。从TA分离的纸板或聚乙烯层的热解表明,该过程未按照加和规则进行。在分离层的热解过程中,PE的降解比整个TA的降解要深得多。

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