Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass

Thirteen types of fuel pellets were prepared from hydrothermally treated hospital solid waste, hydrothermally treated rice straw, pyrolytic plastic waste residue, rice straw, and Sakhalin fir residue using a flat die pellet machine. Different pellet properties such as pellet density, pellet durabili...

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Main Authors: Md Tanvir Alam, Jang-Soo Lee, Sang-Yeop Lee, Dhruba Bhatta, Kunio Yoshikawa, Yong-Chil Seo
Format: Article in Journal/Newspaper
Language:unknown
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Online Access:https://www.mdpi.com/1996-1073/12/22/4390/pdf
https://www.mdpi.com/1996-1073/12/22/4390/
id ftrepec:oai:RePEc:gam:jeners:v:12:y:2019:i:22:p:4390-:d:288420
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spelling ftrepec:oai:RePEc:gam:jeners:v:12:y:2019:i:22:p:4390-:d:288420 2024-04-14T08:18:51+00:00 Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass Md Tanvir Alam Jang-Soo Lee Sang-Yeop Lee Dhruba Bhatta Kunio Yoshikawa Yong-Chil Seo https://www.mdpi.com/1996-1073/12/22/4390/pdf https://www.mdpi.com/1996-1073/12/22/4390/ unknown https://www.mdpi.com/1996-1073/12/22/4390/pdf https://www.mdpi.com/1996-1073/12/22/4390/ article ftrepec 2024-03-19T10:27:44Z Thirteen types of fuel pellets were prepared from hydrothermally treated hospital solid waste, hydrothermally treated rice straw, pyrolytic plastic waste residue, rice straw, and Sakhalin fir residue using a flat die pellet machine. Different pellet properties such as pellet density, pellet durability, aspect ratio, physicochemical characteristics, and gross calorific value (GCV) were evaluated as well as compared concerning the European standard specification for residential/commercial densified fuels. In addition, the quality of pellets was compared with coal. The results showed that the pellets made only with hydrothermally treated hospital solid waste, hydrothermally treated rice straw, pyrolytic plastic waste residue, and rice straw failed to meet few individual criteria (<3 wt% ash content, <10 wt% moisture content, <0.03 wt% chlorine content, >96.5 wt% pellet durability, and >600 kg/m 3 pellet density) of the European standard specifications. However, most of the mixed fuel pellets satisfied the requirement of pellet properties according to the European standard specification. In particular, up to 16.70 wt% hydrothermally treated rice straw, 1.50 wt% hydrothermally treated hospital solid waste, and 4.76 wt% of pyrolytic plastic waste residue can be blended with Shakhalin fir residue to produce low-chlorine fuel pellets. The gross calorific value of pellets made from the mixture of hydrothermally treated wastes and pyrolytic plastic waste residue (around 22 MJ/kg) showed similar results to that of coal. In the case of mixed pellets, the presence of these hydrothermally treated wastes and pyrolytic plastic waste residue valorized the fuel pellet quality. The main outcome of this study was the production of low chlorine biomass fuel pellets of high gross calorific values blended with hydrothermally treated wastes and pyrolytic waste residues, which opens a new door for utilizing waste in a better way, especially hospital solid waste. hydrothermal treatment; pelletization; biomass; hospital ... Article in Journal/Newspaper Sakhalin RePEc (Research Papers in Economics)
institution Open Polar
collection RePEc (Research Papers in Economics)
op_collection_id ftrepec
language unknown
description Thirteen types of fuel pellets were prepared from hydrothermally treated hospital solid waste, hydrothermally treated rice straw, pyrolytic plastic waste residue, rice straw, and Sakhalin fir residue using a flat die pellet machine. Different pellet properties such as pellet density, pellet durability, aspect ratio, physicochemical characteristics, and gross calorific value (GCV) were evaluated as well as compared concerning the European standard specification for residential/commercial densified fuels. In addition, the quality of pellets was compared with coal. The results showed that the pellets made only with hydrothermally treated hospital solid waste, hydrothermally treated rice straw, pyrolytic plastic waste residue, and rice straw failed to meet few individual criteria (<3 wt% ash content, <10 wt% moisture content, <0.03 wt% chlorine content, >96.5 wt% pellet durability, and >600 kg/m 3 pellet density) of the European standard specifications. However, most of the mixed fuel pellets satisfied the requirement of pellet properties according to the European standard specification. In particular, up to 16.70 wt% hydrothermally treated rice straw, 1.50 wt% hydrothermally treated hospital solid waste, and 4.76 wt% of pyrolytic plastic waste residue can be blended with Shakhalin fir residue to produce low-chlorine fuel pellets. The gross calorific value of pellets made from the mixture of hydrothermally treated wastes and pyrolytic plastic waste residue (around 22 MJ/kg) showed similar results to that of coal. In the case of mixed pellets, the presence of these hydrothermally treated wastes and pyrolytic plastic waste residue valorized the fuel pellet quality. The main outcome of this study was the production of low chlorine biomass fuel pellets of high gross calorific values blended with hydrothermally treated wastes and pyrolytic waste residues, which opens a new door for utilizing waste in a better way, especially hospital solid waste. hydrothermal treatment; pelletization; biomass; hospital ...
format Article in Journal/Newspaper
author Md Tanvir Alam
Jang-Soo Lee
Sang-Yeop Lee
Dhruba Bhatta
Kunio Yoshikawa
Yong-Chil Seo
spellingShingle Md Tanvir Alam
Jang-Soo Lee
Sang-Yeop Lee
Dhruba Bhatta
Kunio Yoshikawa
Yong-Chil Seo
Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass
author_facet Md Tanvir Alam
Jang-Soo Lee
Sang-Yeop Lee
Dhruba Bhatta
Kunio Yoshikawa
Yong-Chil Seo
author_sort Md Tanvir Alam
title Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass
title_short Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass
title_full Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass
title_fullStr Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass
title_full_unstemmed Low Chlorine Fuel Pellets Production from the Mixture of Hydrothermally Treated Hospital Solid Waste, Pyrolytic Plastic Waste Residue and Biomass
title_sort low chlorine fuel pellets production from the mixture of hydrothermally treated hospital solid waste, pyrolytic plastic waste residue and biomass
url https://www.mdpi.com/1996-1073/12/22/4390/pdf
https://www.mdpi.com/1996-1073/12/22/4390/
genre Sakhalin
genre_facet Sakhalin
op_relation https://www.mdpi.com/1996-1073/12/22/4390/pdf
https://www.mdpi.com/1996-1073/12/22/4390/
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