Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts

The goal of this work was the production of hydrogen rich fraction and high value added products by pyrolysis of waste plastics over zeolite catalysts. The effects of Si/Al ratios: 22.5, 49.1 and 65.5 on product yields were also investigated. Raw materials (polyolefin) and polyethylene terephthalate...

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Main Authors: Mohammed Al-asadi, Linda Gombor, Norbert Miskolczi
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/708
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spelling doaj-2ff8885ee3384a4487f8e681957a4ce92021-02-17T20:57:52ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-08-017010.3303/CET1870278Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts Mohammed Al-asadiLinda GomborNorbert MiskolcziThe goal of this work was the production of hydrogen rich fraction and high value added products by pyrolysis of waste plastics over zeolite catalysts. The effects of Si/Al ratios: 22.5, 49.1 and 65.5 on product yields were also investigated. Raw materials (polyolefin) and polyethylene terephthalate (PET)) were placed in a horizontal tubular furnace. For pyrolysis, high temperature and nitrogen flow was used. It was found, that the transition metal incorporated into the structure of synthetic zeolite had an advanced effect to the hydrogen yield and isomerization. Acidic catalysts with high Si/Al ratio can also support the decomposition of C-C bonds, maximize the yields of gaseous products and minimize the amount of pyrolysis oil. The maximum hydrogen production (47.0 %) was achieved over Ni/ZSM-5 catalyst. This was happened due to the presence of nickel in the catalyst which increasing the conversion rate. Pyrolysis oil contains high content of aromatic compounds, which was caused by the structure of PET waste and isomerization effect of ZSM-5 catalyst. For hydrogen both the aromatization reactions and the high concentration of unsaturated branched compounds could be blamed. Keywords: pyrolysis, PET, polyolefin, hydrogen, metal loaded catalysts, transition metal https://www.cetjournal.it/index.php/cet/article/view/708
collection DOAJ
language English
format Article
sources DOAJ
author Mohammed Al-asadi
Linda Gombor
Norbert Miskolczi
spellingShingle Mohammed Al-asadi
Linda Gombor
Norbert Miskolczi
Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts
Chemical Engineering Transactions
author_facet Mohammed Al-asadi
Linda Gombor
Norbert Miskolczi
author_sort Mohammed Al-asadi
title Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts
title_short Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts
title_full Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts
title_fullStr Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts
title_full_unstemmed Production of Hydrogen Rich Products from Mixture of Polyolefin and PET over Different Modified ZSM-5 Catalysts
title_sort production of hydrogen rich products from mixture of polyolefin and pet over different modified zsm-5 catalysts
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2018-08-01
description The goal of this work was the production of hydrogen rich fraction and high value added products by pyrolysis of waste plastics over zeolite catalysts. The effects of Si/Al ratios: 22.5, 49.1 and 65.5 on product yields were also investigated. Raw materials (polyolefin) and polyethylene terephthalate (PET)) were placed in a horizontal tubular furnace. For pyrolysis, high temperature and nitrogen flow was used. It was found, that the transition metal incorporated into the structure of synthetic zeolite had an advanced effect to the hydrogen yield and isomerization. Acidic catalysts with high Si/Al ratio can also support the decomposition of C-C bonds, maximize the yields of gaseous products and minimize the amount of pyrolysis oil. The maximum hydrogen production (47.0 %) was achieved over Ni/ZSM-5 catalyst. This was happened due to the presence of nickel in the catalyst which increasing the conversion rate. Pyrolysis oil contains high content of aromatic compounds, which was caused by the structure of PET waste and isomerization effect of ZSM-5 catalyst. For hydrogen both the aromatization reactions and the high concentration of unsaturated branched compounds could be blamed. Keywords: pyrolysis, PET, polyolefin, hydrogen, metal loaded catalysts, transition metal
url https://www.cetjournal.it/index.php/cet/article/view/708
work_keys_str_mv AT mohammedalasadi productionofhydrogenrichproductsfrommixtureofpolyolefinandpetoverdifferentmodifiedzsm5catalysts
AT lindagombor productionofhydrogenrichproductsfrommixtureofpolyolefinandpetoverdifferentmodifiedzsm5catalysts
AT norbertmiskolczi productionofhydrogenrichproductsfrommixtureofpolyolefinandpetoverdifferentmodifiedzsm5catalysts
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