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      An Overview of the Recent Advances in Composite Materials and Artificial Intelligence for Hydrogen Storage Vessels Design

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          Abstract

          The environmental impact of CO2 emissions is widely acknowledged, making the development of alternative propulsion systems a priority. Hydrogen is a potential candidate to replace fossil fuels for transport applications, with three technologies considered for the onboard storage of hydrogen: storage in the form of a compressed gas, storage as a cryogenic liquid, and storage as a solid. These technologies are now competing to meet the requirements of vehicle manufacturers; each has its own unique challenges that must be understood to direct future research and development efforts. This paper reviews technological developments for Hydrogen Storage Vessel (HSV) designs, including their technical performance, manufacturing costs, safety, and environmental impact. More specifically, an up-to-date review of fiber-reinforced polymer composite HSVs was explored, including the end-of-life recycling options. A review of current numerical models for HSVs was conducted, including the use of artificial intelligence techniques to assess the performance of composite HSVs, leading to more sophisticated designs for achieving a more sustainable future.

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          Most cited references119

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          Hydrogen energy systems: A critical review of technologies, applications, trends and challenges

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            Underground hydrogen storage: Characteristics and prospects

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              Hydrogen storage and delivery: Review of the state of the art technologies and risk and reliability analysis

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                Author and article information

                Contributors
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                Journal
                JCSOGF
                Journal of Composites Science
                J. Compos. Sci.
                MDPI AG
                2504-477X
                March 2023
                March 14 2023
                : 7
                : 3
                : 119
                Article
                10.3390/jcs7030119
                d3fb657d-2325-4725-8767-5ae58f8dea27
                © 2023

                https://creativecommons.org/licenses/by/4.0/

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