Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry
A latent heat storage system based on Phase Change Materials (PCMs) is proposed to increase the energy and environmental efficiency by recovering and storing waste heat from combustion gases or other surplus sources at in the energy-intensive industries (EII), currently unused. The final configurati...
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doaj-b25c415c46e54f36852ec7d36d54d0e02020-11-25T02:17:54ZengElsevierMaterials & Design0264-12752020-01-01186Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industryPatricia Royo0Victor J. Ferreira1Zafer Ure2Sam Gledhill3Ana M. López-Sabirón4Germán Ferreira5Research Centre for Energy Resources and Consumption (CIRCE), Parque Empresaria Dinamiza, Avenida Ranillas 63, Building 3D, 1st Floor, 50018, Zaragoza, Spain; CIRCE Institute – Campus Río Ebro, Mariano Esquillor Gómez, 15, 50018, Zaragoza, Spain; Corresponding author.Research Centre for Energy Resources and Consumption (CIRCE), Parque Empresaria Dinamiza, Avenida Ranillas 63, Building 3D, 1st Floor, 50018, Zaragoza, Spain; CIRCE Institute – Campus Río Ebro, Mariano Esquillor Gómez, 15, 50018, Zaragoza, SpainPhase Change Material Products Limited (PCMP) - Unit 32, Mere View Industrial Estate, Yaxley, Cambridgeshire, PE7 3HS, United KingdomPhase Change Material Products Limited (PCMP) - Unit 32, Mere View Industrial Estate, Yaxley, Cambridgeshire, PE7 3HS, United KingdomResearch Centre for Energy Resources and Consumption (CIRCE), Parque Empresaria Dinamiza, Avenida Ranillas 63, Building 3D, 1st Floor, 50018, Zaragoza, Spain; CIRCE Institute – Campus Río Ebro, Mariano Esquillor Gómez, 15, 50018, Zaragoza, SpainResearch Centre for Energy Resources and Consumption (CIRCE), Parque Empresaria Dinamiza, Avenida Ranillas 63, Building 3D, 1st Floor, 50018, Zaragoza, Spain; CIRCE Institute – Campus Río Ebro, Mariano Esquillor Gómez, 15, 50018, Zaragoza, Spain; Corresponding author.A latent heat storage system based on Phase Change Materials (PCMs) is proposed to increase the energy and environmental efficiency by recovering and storing waste heat from combustion gases or other surplus sources at in the energy-intensive industries (EII), currently unused. The final configuration design is specifically adapted to the plant operational requirements, by means of a methodology combining the search of the best conceptual design and a proper selection of core PCMs. To that end, a selection of suitable PCM is carried out by using characterisation techniques and thermal stability testing. Furthermore, relevant key factors are weighted by an in-house Multiple-Criteria Decision Analysis (MCDA) to define the most promising design options to be implemented in two plants belonging to the EII sector. For the ceramic sector, the design resulted in a shell-and-tube system with 1188 kg of a PCM melting at 885 °C and encapsulated in double concentric tubes, involving a storage capacity of 227 MJ. Similarly, 1606 kg of PCM, whose phase-change temperature is 509 °C, is selected for the steel sector providing a PCM-TES system capable to store 420 MJ. Keywords: Phase change materials (PCM), High temperature thermal energy storage (TES), Multiple-Criteria Decision Analysis (MCDA), Waste heat recovery (WHR), Energy intensive industry (EII)http://www.sciencedirect.com/science/article/pii/S0264127519306537 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Patricia Royo Victor J. Ferreira Zafer Ure Sam Gledhill Ana M. López-Sabirón Germán Ferreira |
spellingShingle |
Patricia Royo Victor J. Ferreira Zafer Ure Sam Gledhill Ana M. López-Sabirón Germán Ferreira Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry Materials & Design |
author_facet |
Patricia Royo Victor J. Ferreira Zafer Ure Sam Gledhill Ana M. López-Sabirón Germán Ferreira |
author_sort |
Patricia Royo |
title |
Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry |
title_short |
Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry |
title_full |
Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry |
title_fullStr |
Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry |
title_full_unstemmed |
Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry |
title_sort |
multiple-criteria decision analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry |
publisher |
Elsevier |
series |
Materials & Design |
issn |
0264-1275 |
publishDate |
2020-01-01 |
description |
A latent heat storage system based on Phase Change Materials (PCMs) is proposed to increase the energy and environmental efficiency by recovering and storing waste heat from combustion gases or other surplus sources at in the energy-intensive industries (EII), currently unused. The final configuration design is specifically adapted to the plant operational requirements, by means of a methodology combining the search of the best conceptual design and a proper selection of core PCMs. To that end, a selection of suitable PCM is carried out by using characterisation techniques and thermal stability testing. Furthermore, relevant key factors are weighted by an in-house Multiple-Criteria Decision Analysis (MCDA) to define the most promising design options to be implemented in two plants belonging to the EII sector. For the ceramic sector, the design resulted in a shell-and-tube system with 1188 kg of a PCM melting at 885 °C and encapsulated in double concentric tubes, involving a storage capacity of 227 MJ. Similarly, 1606 kg of PCM, whose phase-change temperature is 509 °C, is selected for the steel sector providing a PCM-TES system capable to store 420 MJ. Keywords: Phase change materials (PCM), High temperature thermal energy storage (TES), Multiple-Criteria Decision Analysis (MCDA), Waste heat recovery (WHR), Energy intensive industry (EII) |
url |
http://www.sciencedirect.com/science/article/pii/S0264127519306537 |
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