An artificial aging study of novel heat absorbers based on phase change materials (PCMs) prepared from recycled high-density polyethylene (HDPE), paraffin wax (PW), and expanded graphite (EG) was investigated. The optimal composition of PCMs contained 40 wt% HDPE, whereas the paraffin wax content ranged from 40 to 60 wt% and the expanded graphite content ranged from 5 to 15 wt%. PCMs were artificially aged through exposure to UV irradiation, enhanced temperature, and humidity. It was clearly demonstrated that the addition of EG to PCMs led to the suppression of PW leakage and improved the photooxidation stability of the PCMs during the aging process. The best performance was achieved by adding 15 wt% of EG to the PCMs. The sample shows a le...
In recent years, Thermal Energy Storage (TES) is becoming more and more important in different engin...
Foamed phase-change materials (FPCMs) were prepared using recycled linear low-density polyethylene (...
Microcapsules consisting of paraffin wax cores with a melting point of approximately 42 °C and a mel...
An artificial aging study of novel heat absorbers based on phase change materials (PCMs) prepared fr...
The building sector is one of the main sectors in Qatar; however, it consumes a huge portion of prim...
Natural aging of shape-stabilized phase change materials containing linear low density polyethylene ...
Artificial aging of Shape Stabilized Phase Change Materials (SSPCM) based on linear low density poly...
The preparation of Phase Change Materials (PCM) with improved thermal conductivity, based on linear ...
Thermal energy storage systems (TES) based on shape-stabilized phase change materials (SSPCM) design...
This project involved the development and design of a hybrid thermal energy storage using paraffin ...
The latent heat thermal storage using Phase Change Materials (PCMs) is one of the essential aspects ...
The present work is specifically focused on the form stability of paraffin as a phase change materia...
Thermal energy storage systems are crucial for reducing dependency on fossil fuels and minimizing CO...
Thermal characterization of phase change materials (PCMs) compose of linear low-density polyethylene...
Phase change material (PCM) composites based on low-density polyethylene (LDPE) with paraffin waxes ...
In recent years, Thermal Energy Storage (TES) is becoming more and more important in different engin...
Foamed phase-change materials (FPCMs) were prepared using recycled linear low-density polyethylene (...
Microcapsules consisting of paraffin wax cores with a melting point of approximately 42 °C and a mel...
An artificial aging study of novel heat absorbers based on phase change materials (PCMs) prepared fr...
The building sector is one of the main sectors in Qatar; however, it consumes a huge portion of prim...
Natural aging of shape-stabilized phase change materials containing linear low density polyethylene ...
Artificial aging of Shape Stabilized Phase Change Materials (SSPCM) based on linear low density poly...
The preparation of Phase Change Materials (PCM) with improved thermal conductivity, based on linear ...
Thermal energy storage systems (TES) based on shape-stabilized phase change materials (SSPCM) design...
This project involved the development and design of a hybrid thermal energy storage using paraffin ...
The latent heat thermal storage using Phase Change Materials (PCMs) is one of the essential aspects ...
The present work is specifically focused on the form stability of paraffin as a phase change materia...
Thermal energy storage systems are crucial for reducing dependency on fossil fuels and minimizing CO...
Thermal characterization of phase change materials (PCMs) compose of linear low-density polyethylene...
Phase change material (PCM) composites based on low-density polyethylene (LDPE) with paraffin waxes ...
In recent years, Thermal Energy Storage (TES) is becoming more and more important in different engin...
Foamed phase-change materials (FPCMs) were prepared using recycled linear low-density polyethylene (...
Microcapsules consisting of paraffin wax cores with a melting point of approximately 42 °C and a mel...