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Production of oil and gas through thermal and thermo-catalytic pyrolysis of waste polyethylene

机译:通过废聚乙烯热和热催化热解的油气生产废聚乙烯

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摘要

Waste polyethylene is one of the most abundant plastics coming to the municipal waste. Polyethylene releases toxic chemicals, which deteriorate the environment and human health. This study investigates the valorization of waste polyethylene through thermal and thermo-catalytic pyrolysis process. Being low cost and reusable, the ordinary Portland and white cements were used as a catalyst. The thermal, white cement catalyzed, and Portland cement catalyzed pyrolysis produced 83.16%, 90.99%, and 89.61% relative amount of oil, respectively, at optimum temperature of 500 degrees C. For time optimization, the pyrolysis reaction was carried out for different time intervals between 15 and 78 min. The catalyst weight of 30% was found best option for increasing the hydrocarbon yield and cutting down the reaction time and is deemed as ensuring the economic disposal of the waste polyethylene. The oil product was broken down into fractions with boiling points comparable to gasoline, kerosene, and diesel and some residual fraction. The gaseous product was analyzed through different chemical analysis and combustibility tests. The oil product was analyzed using FT-IR and GC-MS techniques. It was observed that the oil product is composed of alkane and alkenes. The oil products of catalytic and thermal processes exhibited different chemical compositions. The number of compounds and their nature varied with a change in pyrolysis approach.
机译:废聚乙烯是城市浪费最丰富的塑料之一。聚乙烯释放有毒化学品,使环境恶化和人类健康。本研究研究了通过热和热催化热解过程的废聚乙烯的算入。成本低,可重复使用,普通的波特兰和白色水泥用作催化剂。热量,白色水泥催化,波特兰水泥催化热解,分别产生83.16%,90.99%和89.61%的相对量,最佳温度为500℃。对于时间优化,进行热解反应不同的时间间隔在15到78分钟之间。催化剂重量为30%的最佳选择,用于增加烃产率并切割反应时间,并被认为是确保废聚乙烯的经济处理。将油产物分解成馏分,沸点与汽油,煤油和柴油和柴油和一些残留级分。通过不同的化学分析和可燃性测试分析气态产物。使用FT-IR和GC-MS技术分析油产品。观察到油产物由烷烃和烯烃组成。催化和热过程的油产品表现出不同的化学组合物。化合物的数量及其性质随着热解方法的变化而变化。

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