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Sulphated zirconia catalysed conversion of high density polyethylene to value-added products using a fixed-bed reactor

机译:使用固定床反应器的硫酸化氧化锆催化将高密度聚乙烯转化为增值产品

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A sulphated zirconia catalyst (SZ) was investigated for catalytic conversion of high density polyethylene (HDPE) to liquid and gaseous hydrocarbons using a fixed-bed reactor. The SZ catalyst reduced the onset of degradation from 337 degrees C for HDPE alone to 187 degrees C with 10 wt% SZ added. At 450 degrees C a complete weight loss was obtained with the SZ addition against only 4wt% loss for HDPE only. Fixed-bed reactor experiments using 2 g of HDPE with 10 wt% SZ catalyst with a 30 min residence time showed a 98.0 wt% conversion at temperature as low as 380 degrees C. The liquid yield obtained was 39.0 wt% with a composition of 16 wt% paraffins, 21 wt% olefins, 5 wt% naphthenes and 58 wt% aromatics. The carbon number distribution of the liquid was C7-C12, which is within the gasoline range. Equally, gaseous products ranging from methane up to different isomers of pentane which contained more paraffinic and naphthenic hydrocarbon were obtained. The sulphated zirconia catalyst was found to have high ammonia desorption (337.0 mu mol NH3 g(-1)), BET surface area (116.0 m(2) g(-1)), external surface area (112.0 m(2) g(-1)) and mesoporous structure. The overall results indicate that sulphated zirconia had excellent properties for catalytic conversion at temperature as low as 380 degrees C with significant liquid yield which could offer a solution to plastic waste problem by converting the waste back into value-added chemicals and fuel. (C) 2017 Elsevier B.V. All rights reserved.
机译:研究了使用固定床反应器将高密度聚乙烯(HDPE)催化转化为液态和气态烃的硫酸化氧化锆催化剂(SZ)。 SZ催化剂将降解开始时间从仅HDPE的337摄氏度降低到添加10 wt%SZ的187摄氏度。在450摄氏度下,添加SZ可获得完全的重量损失,而HDPE仅损失4wt%。使用2 g HDPE和10 wt%SZ催化剂,停留时间为30分钟的固定床反应器实验显示,在低至380℃的温度下,转化率为98.0 wt%。获得的液体产率为39.0 wt%,组成为16重量%的链烷烃,21重量%的烯烃,5重量%的环烷和58重量%的芳族化合物。液体的碳数分布为C7-C12,在汽油范围内。同样地,获得了从甲烷直到戊烷的不同异构体的气态产物,其包含更多的链烷烃和环烷烃。发现硫酸化的氧化锆催化剂具有高的氨解吸(337.0μmol NH3 g(-1)),BET表面积(116.0 m(2)g(-1)),外表面积(112.0 m(2)g( -1))和中孔结构。总体结果表明,硫酸化氧化锆在低至380摄氏度的温度下具有出色的催化转化性能,并具有显着的液体收率,这可以通过将废物转化回增值化学品和燃料来解决塑料废物问题。 (C)2017 Elsevier B.V.保留所有权利。

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