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Waste plastics-to-fuel using fly ash catalyst

机译:使用粉煤灰催化剂的废物塑料到燃料

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摘要

Abstract Suitable disposal pathways of waste plastics and coal fly ash have yet not been established which is a matter of great environmental concern. Waste low-density polyethylene (LDPE) and high-density polyethylene (HDPE) were degraded using a semi-batch reactor along with acid or alkali modified fly ash catalyst. The high yield of liquid fuel product (about 87.24 wt%) was achieved for low-density polyethylene at a polymer and catalyst ratio of 25 w/w. About 96% conversion was found with very few amount of gaseous fuels. Both of the waste plastics were degraded at 400–450?°C. The liquid products were analyzed using Fourier-transform infrared spectroscopy (FTIR), nuclear magnetic resonance (1H, 13C, and DEPT-135 NMR), and gas chromatography–mass spectrometry (GC–MS). Fly ash is an efficient catalyst to degrade waste plastic into light weight liquid (gasoline and kerosene) hydrocarbons. The NMR results accompanied by GC–MS data ensure that obtained fuels contain both aliphatic (saturated and unsaturated) and aromatic hydrocarbons. This plastic-to-fuel technology should be commercialized owing to be profitable and eco-friendly.Graphic abstract
机译:尚未建立抽象的废物塑料和煤灰的适当处置途径,这是一个极大的环境问题。使用半批量反应器以及酸或碱性改良的粉煤灰催化剂,将废物低密度聚乙烯(LDPE)和高密度聚乙烯(HDPE)降解。低密度聚乙烯在聚合物和催化剂比为25 w/w的低密度聚乙烯中获得了液体燃料产物的高收率(约为87.24 wt%)。发现大约96%的转化率,几乎没有气体燃料。两种废物塑料在400–450°C下降解。使用傅立叶转换红外光谱(FTIR),核磁共振(1H,13C和DEPT-135 NMR)以及气相色谱 - 质量光谱法(GC – MS)分析液体产物。粉煤灰是一种有效的催化剂,可将废物塑料降低到轻质液体(汽油和煤油)烃。 NMR结果伴随GC -MS数据,可确保获得的燃料含有脂肪族(饱和和不饱和)和芳族烃。这种塑料到燃料技术应因盈利和环保而被商业化。图摘要

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