Improvements to increase the efficiency of solar dryers for different waste sludge management

BACKGROUND AND OBJECTIVES: In this study, an integrated phase change material drying system was designed to evaluate the efficiency of the system with the use of renewable solar energy for different types of sludge with different moisture content. METHODS: This study was performed on the wastewater...

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Main Authors: Z. Amin, N.K. Salihoglu
Format: Article
Language:English
Published: Tehran Muncipality 2020-10-01
Series:International Journal of Human Capital in Urban Management
Subjects:
Online Access:http://www.ijhcum.net/article_44348_620fcbcc47279b507f3c65b3c46738f3.pdf
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spelling doaj-894de2bfebab460ea21f78b3bb8f300c2020-11-25T03:37:45ZengTehran MuncipalityInternational Journal of Human Capital in Urban Management2476-46982476-47012020-10-015427729010.22034/IJHCUM.2020.04.0144348Improvements to increase the efficiency of solar dryers for different waste sludge managementZ. Amin0N.K. Salihoglu1Department of Environmental Engineering, Faculty of Engineering, Uludag University, 16059, Bursa, TurkeyDepartment of Environmental Engineering, Faculty of Engineering, Uludag University, 16059, Bursa, TurkeyBACKGROUND AND OBJECTIVES: In this study, an integrated phase change material drying system was designed to evaluate the efficiency of the system with the use of renewable solar energy for different types of sludge with different moisture content. METHODS: This study was performed on the wastewater treatment plant sludge, paint, and marble sludge. By distributing the screws on the sludge tray, covering the system floor with a black trash bag, and mounting the reflector around the absorber tubes has increased the efficiency of the system. FINDING: All the types of equipment used in the construction of the system are used as heat storage material and increase the internal air temperature, and the sludge temperature of the system. Temperature is transferred sequentially through air and objects. This research was conducted in winter by 1156 Wh/m2 mean internal cumulative solar radiation. Due to the reduction of solar radiation, as the system was upgraded, more water was released from the sludge surfaces. By Scanning Electron Microscopy imaging, the porous surface was observed after sludge drying. CONCLUSION: In this study, the waste sludge moisture decreased from 80% to 52.2% during three improvement stages. The paint sludge moisture content reduced from 56% to 25%, and marble sludge moisture in the final stage reached from 26% to 5.2%. The proposed solar dryer system is an economical way to reduce the sludge volume in the transportation process.http://www.ijhcum.net/article_44348_620fcbcc47279b507f3c65b3c46738f3.pdfabsorber tubescumulative solar radiationreflectorrenewable solar energyscanning electron microscopy
collection DOAJ
language English
format Article
sources DOAJ
author Z. Amin
N.K. Salihoglu
spellingShingle Z. Amin
N.K. Salihoglu
Improvements to increase the efficiency of solar dryers for different waste sludge management
International Journal of Human Capital in Urban Management
absorber tubes
cumulative solar radiation
reflector
renewable solar energy
scanning electron microscopy
author_facet Z. Amin
N.K. Salihoglu
author_sort Z. Amin
title Improvements to increase the efficiency of solar dryers for different waste sludge management
title_short Improvements to increase the efficiency of solar dryers for different waste sludge management
title_full Improvements to increase the efficiency of solar dryers for different waste sludge management
title_fullStr Improvements to increase the efficiency of solar dryers for different waste sludge management
title_full_unstemmed Improvements to increase the efficiency of solar dryers for different waste sludge management
title_sort improvements to increase the efficiency of solar dryers for different waste sludge management
publisher Tehran Muncipality
series International Journal of Human Capital in Urban Management
issn 2476-4698
2476-4701
publishDate 2020-10-01
description BACKGROUND AND OBJECTIVES: In this study, an integrated phase change material drying system was designed to evaluate the efficiency of the system with the use of renewable solar energy for different types of sludge with different moisture content. METHODS: This study was performed on the wastewater treatment plant sludge, paint, and marble sludge. By distributing the screws on the sludge tray, covering the system floor with a black trash bag, and mounting the reflector around the absorber tubes has increased the efficiency of the system. FINDING: All the types of equipment used in the construction of the system are used as heat storage material and increase the internal air temperature, and the sludge temperature of the system. Temperature is transferred sequentially through air and objects. This research was conducted in winter by 1156 Wh/m2 mean internal cumulative solar radiation. Due to the reduction of solar radiation, as the system was upgraded, more water was released from the sludge surfaces. By Scanning Electron Microscopy imaging, the porous surface was observed after sludge drying. CONCLUSION: In this study, the waste sludge moisture decreased from 80% to 52.2% during three improvement stages. The paint sludge moisture content reduced from 56% to 25%, and marble sludge moisture in the final stage reached from 26% to 5.2%. The proposed solar dryer system is an economical way to reduce the sludge volume in the transportation process.
topic absorber tubes
cumulative solar radiation
reflector
renewable solar energy
scanning electron microscopy
url http://www.ijhcum.net/article_44348_620fcbcc47279b507f3c65b3c46738f3.pdf
work_keys_str_mv AT zamin improvementstoincreasetheefficiencyofsolardryersfordifferentwastesludgemanagement
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