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首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Thermal cracking of potato-peel powder-polypropylene biocomposite and characterization of products-Pyrolysed oils and bio-char
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Thermal cracking of potato-peel powder-polypropylene biocomposite and characterization of products-Pyrolysed oils and bio-char

机译:马铃薯-皮粉-聚丙烯生物复合材料的热裂解和产物表征-热解油和生物炭

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摘要

Waste plastic disposal is a major environmental issue worldwide. Pyrolysis is an effective tool to convert plastic to liquid fuel. Pyrolysis of biomass yields liquid oil with high oxygen content and thereby low heating value. However copyrolysis of plastic with biomass yield oil of low oxygen content, better stability due to synergy between them. In our research work we have carried out thermal cracking process in which the liquid oil has better stability and with very low oxygen content has been adopted for pyrolysis of potato-peel powder/polypropylene (POPP40) biocomposite and neat PP individually under identical conditions. The liquid products generated have been compared for physico-chemical properties. Analytical techniques like gel permeation chromatography, fourier transform infrared spectroscopy, nuclear magnetic resonance spectroscopy, gas chromatography mass spectrometry and scanning electron microscopy has been utilized for detailed characterization of pyrolysed oils and bio-char. A potential use of these pyrolysed oils has been explored where the 10% pyrolysed oil blends in diesel exhibited excellent fuel properties with improvement in cetane index, density and viscosity.
机译:废塑料处理是全球范围内的主要环境问题。热解是将塑料转化为液体燃料的有效工具。生物质的热解产生具有高氧含量的液体油,因此热值低。但是,塑料与生物质的共溶会产生低氧含量的油,由于它们之间的协同作用,稳定性更好。在我们的研究工作中,我们进行了热裂化工艺,其中液态油具有更好的稳定性,并且氧含量非常低,已被用于在相同条件下分别裂解马铃薯-皮粉/聚丙烯(POPP40)生物复合材料和纯PP。比较了产生的液体产物的理化性质。诸如凝胶渗透色谱,傅里叶变换红外光谱,核磁共振光谱,气相色谱质谱和扫描电子显微镜等分析技术已用于热解油和生物炭的详细表征。已经探索了这些热解油的潜在用途,其中柴油中10%的热解油混合物具有出色的燃料特性,并改善了十六烷指数,密度和粘度。

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