首页> 外文期刊>Journal of Cleaner Production >Pyrolysis-gasification of wastes plastics for syngas production using metal modified zeolite catalysts under different ratio of nitrogen/ oxygen
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Pyrolysis-gasification of wastes plastics for syngas production using metal modified zeolite catalysts under different ratio of nitrogen/ oxygen

机译:利用金属改性沸石催化剂的不同比例的金属改性沸石催化剂产生脂肪塑料的热解 - 气化塑料。

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The aim of this study was the syngas production by the gasification of plastic waste (polyethylene, polypropylene and terephthalate polyethylene). Ca, Ce, La, Mg and Mn were used to promote the Ni/ZSM-5 catalyst in order to enhance the production of higher syngas yield. The modified catalysts can enhanced the reaction rate of the pyrolysis process and resulting in high syngas in the product yields. Especially cerium, lanthanum promoted catalysts can enhance the yield of syngas. The effect of the reaction temperature and nitrogen/oxygen ratio of the carrier gas was also investigated. The maximum syngas production was obtained with lanthanum catalyst (112.2 mmol/g (95%N-2 and 5%O-2), and 130.7 mmol/g (90%N-2 and 10%O-2) at 850 degrees C. Less carbon depositions was found at 850 degrees C or even by the using of catalyst and more oxygen in the carrier gas. The oxygen content of the pyrolysis-gasification atmosphere had a key role to the syngas yield and affects significantly the carbon-monoxide/carbon-dioxide ratio. Catalysts can also accelerate the methanization reactions and isomerize the main carbon frame. Increasing in both temperature and oxygen in the atmosphere led to higher n-paraffin-olefin ratio and more multi-ring aromatic hydrocarbons in pyrolysis oils. The concentration of hydrocarbons containing oxygen and branched compounds was also significantly affected by catalysts. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:本研究的目的是通过塑料废物的气化(聚乙烯,聚丙烯和对苯二甲酸酯)的气化产生的合成气。 Ca,Ce,La,Mg和Mn用于促进Ni / ZSM-5催化剂,以增强较高合成气产量的产生。改性催化剂可以增强热解过程的反应速率,并在产物产率中得到高合成气。特别是铈,镧促进的催化剂可以增强合成气的产率。还研究了反应温度和氮气/氧比的影响。用镧催化剂(112.2mmol / g(95%N-2和5%O-2)获得最大合成气产量,在850℃下,130.7mmol / g(90%N-2和10%O-2) 。在850℃或甚至通过使用催化剂和更多氧气中的氧气中的氧气沉积较少的碳沉积。热解气化气氛的氧含量对合成气产量具有关键作用,并影响碳一氧化碳/二氧化碳比例。催化剂还可以加速甲烷化反应并异构化主碳框架。大气中的温度和氧气的增加导致了热解油中的更高的N-石蜡/正烯烃比和更多环芳烃比。含氧化合物的烃的浓度也受催化剂的显着影响。(c)2020提交人。由elestlevier有限公司发布

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