Thermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review
The main methods of treating oily sludge at home and abroad and the current research status of oily sludge pyrolysis technology are briefly described, and four commonly used catalysts are introduced: metals, metal compounds, molecular sieves, metal-supported molecular sieves, and biomass catalysts f...
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2021
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oai:doaj.org-article:c831285827c8469695b2edb11b82a34e2021-11-08T02:36:10ZThermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review1932-874510.1155/2021/1131858https://doaj.org/article/c831285827c8469695b2edb11b82a34e2021-01-01T00:00:00Zhttp://dx.doi.org/10.1155/2021/1131858https://doaj.org/toc/1932-8745The main methods of treating oily sludge at home and abroad and the current research status of oily sludge pyrolysis technology are briefly described, and four commonly used catalysts are introduced: metals, metal compounds, molecular sieves, metal-supported molecular sieves, and biomass catalysts for oily sludge. The influence of pyrolysis, the pyrolysis mechanism, and the product composition of oily sludge with the addition of different catalysts are also discussed. Finally, the development direction of preparing new catalysts and the mixed use of multiple catalysts is proposed as a theory to provide for the efficient and reasonable utilization of oily sludge.Xiaojing DiHaodan PanDonghao LiHongxiang HuZhiyong HuYulin YanHindawi-WileyarticleMicroscopyQH201-278.5ENScanning, Vol 2021 (2021) |
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Microscopy QH201-278.5 |
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Microscopy QH201-278.5 Xiaojing Di Haodan Pan Donghao Li Hongxiang Hu Zhiyong Hu Yulin Yan Thermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review |
description |
The main methods of treating oily sludge at home and abroad and the current research status of oily sludge pyrolysis technology are briefly described, and four commonly used catalysts are introduced: metals, metal compounds, molecular sieves, metal-supported molecular sieves, and biomass catalysts for oily sludge. The influence of pyrolysis, the pyrolysis mechanism, and the product composition of oily sludge with the addition of different catalysts are also discussed. Finally, the development direction of preparing new catalysts and the mixed use of multiple catalysts is proposed as a theory to provide for the efficient and reasonable utilization of oily sludge. |
format |
article |
author |
Xiaojing Di Haodan Pan Donghao Li Hongxiang Hu Zhiyong Hu Yulin Yan |
author_facet |
Xiaojing Di Haodan Pan Donghao Li Hongxiang Hu Zhiyong Hu Yulin Yan |
author_sort |
Xiaojing Di |
title |
Thermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review |
title_short |
Thermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review |
title_full |
Thermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review |
title_fullStr |
Thermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review |
title_full_unstemmed |
Thermochemical Recycling of Oily Sludge by Catalytic Pyrolysis: A Review |
title_sort |
thermochemical recycling of oily sludge by catalytic pyrolysis: a review |
publisher |
Hindawi-Wiley |
publishDate |
2021 |
url |
https://doaj.org/article/c831285827c8469695b2edb11b82a34e |
work_keys_str_mv |
AT xiaojingdi thermochemicalrecyclingofoilysludgebycatalyticpyrolysisareview AT haodanpan thermochemicalrecyclingofoilysludgebycatalyticpyrolysisareview AT donghaoli thermochemicalrecyclingofoilysludgebycatalyticpyrolysisareview AT hongxianghu thermochemicalrecyclingofoilysludgebycatalyticpyrolysisareview AT zhiyonghu thermochemicalrecyclingofoilysludgebycatalyticpyrolysisareview AT yulinyan thermochemicalrecyclingofoilysludgebycatalyticpyrolysisareview |
_version_ |
1718443226966261760 |