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首页> 外文期刊>Journal of the Serbian Chemical Society >Study of pyrolysis of high density polyethylene in the open system and estimation of its capability for co-pyrolysis with lignite
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Study of pyrolysis of high density polyethylene in the open system and estimation of its capability for co-pyrolysis with lignite

机译:开放系统中高密度聚乙烯的热解研究及其与褐煤共热解的能力估算

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Pyrolysis of high density polyethylene (HDPE) in the open system was studied. A plastic bag for food packing was used as a source of HDPE. Pyrolysis was performed at temperatures of 400, 450 and 500°C, which were chosen based on thermogravimetric analysis. The HDPE pyrolysis yielded liquid, gaseous and solid products. Temperature rise resulted in the increase of conversion of HDPE into liquid and gaseous products. The main constituents of liquid pyrolysates are 1-n-alkenes, n-alkanes and terminal n-dienes. The composition of liquid products indicates that the performed pyrolysis of HDPE could not serve as a standalone operation for the production of gasoline or diesel, but preferably as a pre-treatment to yield a product to be blended into a refinery or petrochemical feed stream. The advantage of a liquid pyrolysate in comparison to crude oil is the extremely low content of aromatic hydrocarbons and the absence of polar compounds. The gaseous products have desirable composition and consist mainly of methane and ethene. The solid residues do not produce ash by combustion and have high calorific values. Co-pyrolysis of HDPE with mineral-rich lignite indicated positive synergetic effect at 450 and 500°C, which is reflected through the increased experimental yields of liquid and gaseous products in comparison to theoretical ones. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. 176006].
机译:研究了开放系统中高密度聚乙烯(HDPE)的热解。用于食品包装的塑料袋用作HDPE的来源。热解是在400、450和500°C的温度下进行的,这些温度是根据热重分析选择的。 HDPE热解产生液体,气体和固体产物。温度升高导致HDPE转化为液态和气态产物的增加。液体热解产物的主要成分是1-n-烯烃,n-烷烃和末端n-二烯。液体产物的组成表明,进行HDPE的热解不能作为生产汽油或柴油的独立操作,而优选作为预处理以产生将要掺混到炼油厂或石化原料流中的产物。与原油相比,液态热解产物的优点是芳烃含量极低,并且没有极性化合物。气态产物具有理想的组成,并且主要由甲烷和乙烯组成。固体残留物不会通过燃烧产生灰烬,并且具有很高的发热量。 HDPE与富含矿物质的褐煤的共热解表明在450和500°C时具有积极的协同作用,这通过与理论值相比增加的液体和气体产物的实验产率来体现。 [塞尔维亚教育,科学和技术发展部的项目,赠款176006]。

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