Search Results - Stack, W. A*

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  1. 1

    Efficient W and Mo deposition and separation with simultaneous hydrogen production in stacked bioelectrochemical systems by Liping Huang, Ming Li, Yuzhen Pan, Yong Shi, Xie Quan, Gianluca Li-Puma

    Published 2017
    “…Reuse of the catholyte after acidification achieved complete separation of W and Mo from one another. …”
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    Studies on anode mass composition and cathode flow field design for small-scale to large-scale direct methanol fuel cell stack systems by Thanarajan Kumaresan, Karthikeyan Palaniswamy, Ashley Fly, Senthilarasu Sundaram

    Published 2022
    “…A three-cell stack is fabricated with the best performing combination with the 100 cm2 active area that delivered a peak power output of 5.8 W, which resulted in 19.4% lower performance than 100 cm2. …”
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    Supplementary information files for Studies on anode mass composition and cathode flow field design for small-scale to large-scale direct methanol fuel cell stack systems by Thanarajan Kumaresan, Karthikeyan Palaniswamy, Ashley Fly, Senthilarasu Sundaram

    Published 2023
    “…A three-cell stack is fabricated with the best performing combination with the 100 cm2 active area that delivered a peak power output of 5.8 W, which resulted in 19.4% lower performance than 100 cm2. …”
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    Optimal energy management strategy for a fuel cell hybrid electric vehicle by Thomas P. Fletcher

    Published 2017
    “…It has a top speed of approximately 30mph, and is fitted with a 1.2kW fuel cell and a 2kWh battery pack.…”
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    Analysis of a 50 kWe indirect methanol proton exchange membrane fuel cell (PEMFC) system for transportation application by Maheboob B.V. Virji, R.H. Thring

    Published 2005
    “…Steady state and dynamic models of proton exchange membrane fuel cell (PEMFC) or solid polymer fuel cell (SPFC) systems have been developed for transport and stationary applications. This paper reports the results of a steady state analysis of a methanol-fuelled PEMFC vehicle with a maximum (electrical) power output of 50 kW. …”
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  13. 13

    Systems study for fuel cell powered more electric aircraft by Alex Thirkell

    Published 2021
    “…In response to the increased demand for aircraft electrification and growing interest in fuel cell technology, a comprehensive study has been carried out to assess the suitability of fuel cells for a range of aircraft. …”
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  14. 14

    Adiabatic Compressed Air Energy Storage: Fundamental efficiency limits based on exergy analysis, key technology outstanding challenges and application oriented axial-flow compresso... by Daniel Pottie

    Published 2023
    “…Adiabatic Compressed Air Energy Storage (ACAES) is a theoretically appraised solution that populates most of the technical literature on large-scale energy storage. …”
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    A validated multiscale modelling approach to solid oxide fuel cell system design by Rajan Thandi

    Published 2024
    “…Fuel cells play a crucial role in the energy sector's efforts to mitigate greenhouse gas emissions by efficiently generating electricity from H2 and O2 through electrochemical reactions for a diverse range of applications. …”
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  16. 16

    Polymeric bipolar plates for PEM fuel cells: experimental and modeling approach to assess factors influencing performance by Paul S. Greenwood

    Published 2010
    “…Fuel cells are widely researched and have applications in residential, automotive, marine craft and space. …”
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  17. 17

    Advanced reliability analysis of polymer electrolyte membrane fuel cells in automotive applications by Michael Whiteley

    Published 2016
    “…The results of which are a qualitative and quantitative analysis of a PEMFC. …”
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    High rate deposition of CdSe thin films by pulsed DC magnetron sputtering by Rachael Greenhalgh, Vladislav Kornienko, Kerrie Morris, Ali Abbas, Jake Bowers, Michael Walls

    Published 2021
    “…The efficiency of cadmium telluride solar cells has recently been increased by adding selenium as a CdSeTe alloy at the front of the device. …”
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    High rate deposition processes for thin film CdTe solar cells by Fabiana Lisco

    Published 2015
    “…PDCMS at 150 kHz, 500 W, 2.5 μs, 2 s, results in a highly stable process with no plasma arcing. …”
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  21. 21

    Conductive materials for polymeric bipolar plates: electrical, thermal and mechanical properties of polyethylene-carbon black/graphite/magnetite blends by Rob Thring, Rui Chen, Paul S. Greenwood

    Published 2013
    “…In addition, the large numbers of bipolar plates required in automotive fuel cell stacks (on the order of 400 plates per vehicle) will demand mass production to meet future demands as well as reduce costs through cheap production processes. …”
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