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Microwave assisted co-pyrolysis of biomasses with polypropylene and polystyrene for high quality bio-oil production

机译:微波辅助生物量与聚丙烯和聚苯乙烯进行高品质生物油生产

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摘要

In this study, co-pyrolysis of five lignocellulosic biomass residues, viz. groundnut shell (G), bagasse (B), rice husk (RH), Prosopis fuliflora (PJF) and mixed wood sawdust (MWSD), with two synthetic plastics, polypropylene (PP) and polystyrene (PS), was conducted to improve the quality of bio-oil. Equal composition of biomass and plastic was pyrolyzed at 450 W microwave power using graphite susceptor, and the yields of bio-oil, char and gas fractions were determined. The bio-oil yields from PS-biomass blends varied in the range of 51-60 wt%, with maximum yield obtained from PS-MWSD, while that from PP-biomass blends were 25-41 wt% with maximum yield obtained from PP-RH. The higher heating value of co-pyrolysis bio-oil was high (38-42 MJ kg(-1)) as compared to bio-oil obtained from only biomass pyrolysis (20-30 MJ kg(-1)). Energy yield of co-pyrolysis bio-oil was significantly higher with PS mixtures (73-81%) than PP mixtures (32-62%). Importantly, the bio-oil, char and gas yields, and organic composition of bio-oil were non-additive with respect to that obtained from pyrolysis of the individual feedstocks. The presence of PS boosted the production of aromatic hydrocarbons (48-54 wt%), while PP promoted aliphatic hydrocarbons (19-33 wt%) in co-pyrolysis bio-oil. Specifically, high selectivity towards alkanes in bio-oil was obtained from PP-RH mixture. Co-pyrolysis bio-oil contained less moisture with lower acidity compared to pyrolysis bio-oil. RH-PS and RH-PP mixtures were shown to be the better biomass plastic combinations from the viewpoint of recovering high energy in bio-oil. The microwave co-pyrolysis process efficiency was also high (63-68%) and promising.
机译:在本研究中,共热解析五种木质纤维素生物质残留物,viz。进行地生壳(g),甘蔗渣(b),稻壳(rh),prosopis fuliflora(pjf)和混合木锯末(mwsd),具有两个合成塑料,聚丙烯(pp)和聚苯乙烯(ps),以改善生物油的质量。使用石墨敏感剂在450W微波功率下热解化生物质和塑料的相同组成,并测定生物油,炭和气体级分的产率。来自PS-BioMass共混物的生物油产率在51-60wt%的范围内变化,最大收率从PS-MWSD获得,而来自PP-生物量共混物为25-41wt%,最大收率来自PP- RH。与仅生物量热解(20-30MJKG(-1))获得的生物油相比,共热分解生物油的较高的加热值高(38-42MJ kg(-1))。 PS混合物(73-81%)比PP混合物(32-62%)显着高出高热解生物油的能量产率。重要的是,生物油,炭和煤气收率和生物油的有机组合物相对于由单个原料的热解产生的生物油是非添加剂。 PS的存在促进了芳烃的产生(48-54wt%),而PP促进了共热分解生物油中的脂族烃(19-33wt%)。具体地,从PP-Rh混合物中获得对生物油中的烷烃的高选择性。与热解生物油相比,共热分解生物油含有较低的酸度水分。从生物油中恢复高能量的观点来看,RH-PS和RH-PP混合物显示为更好的生物量塑料组合。微波共热分解过程效率也高(63-68%)和有前途。

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