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Overview of the development and status of carbon dioxide (R-744) refrigeration systems onboard fishing vessels

Abstract

Globally, most fishing vessels still use the ozone-depleting and climate-harmful R-22 in their freezing and refrigerated seawater (RSW) systems. However, in some regions, the natural refrigerant ammonia is the preferred refrigerant. Another natural refrigerant, carbon dioxide (R-744), is becoming a viable option and is increasingly used onboard. This option will not exclude ammonia, but rather will be a good alternative to it to meet the demand for different cooling/freezing needs in post-R-22 systems. There are currently major developments in R-744 refrigeration technology that are widening the potential applications of R-744. These include compressors with larger capacities, more energy-efficient components, system designs with lower freezing temperatures and integration of heat recovery and thermal storage. This paper provides a review of the development of refrigeration systems with R-744 onboard fishing vessels. It includes a description of the commonly used cooling and freezing methods and of the development in R-744 refrigeration technology, especially within the system and component design, capacity and performance. It also includes the current status of R-744 refrigeration technologies in fishing vessels. Although there are limited publications on R-744 systems for fishing vessel applications, the review shows positive prospects of utilizing R-744 and further research and innovation within this topic is recommended. © 2022 The Author(s)

Author keywords
Energy-efficient; Fishing vessel; Natural refrigerants; R-744/CO2; Refrigeration; Transcritical
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Category

Academic article

Client

  • Research Council of Norway (RCN) / 294662

Language

English

Author(s)

Affiliation

  • Norwegian University of Science and Technology
  • SINTEF Ocean / Fisheries and New Biomarine Industry
  • SINTEF Energy Research / Termisk energi
  • Diverse norske bedrifter og organisasjoner
  • Danfoss Drives AS

Year

2022

Published in

International journal of refrigeration

ISSN

0140-7007

Publisher

Elsevier

Volume

140

Page(s)

198 - 212

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