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Sorption enhanced steam methane reforming byNi/CaO/mayenite combined systems: Overview of experimental results fromEuropean research projectASCENT Di Giuliano A, Gallucci K, Di Carlo A, Stendardo S, Courson C, Foscolo PU Canadian Journal of Chemical Engineering, 98(9), 1907, 2020 |
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An integrated methodology for the economic and environmental assessment of a biorefinery supply chain Galanopoulos C, Giuliano A, Barletta D, Zondervan E Chemical Engineering Research & Design, 160, 199, 2020 |
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Determination of Kinetic and Diffusion Parameters Needed to Predict the Behavior of CaO-Based CO2 Sorbent and Sorbent-Catalyst Materials Di Giuliano A, Gallucci K, Foscolo PU Industrial & Engineering Chemistry Research, 59(15), 6840, 2020 |
4 |
Effect of Ni precursor salts on Ni-mayenite catalysts for steam methane reforming and on Ni-CaO-mayenite materials for sorption enhanced steam methane reforming Di Giuliano A, Gallucci K, Foscolo PU, Courson C International Journal of Hydrogen Energy, 44(13), 6461, 2019 |
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Sorption enhanced steam methane reforming based on nickel and calcium looping: a review Di Giuliano A, Gallucci K Chemical Engineering and Processing, 130, 240, 2018 |
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Development of a Ni-CaO-mayenite combined sorbent-catalyst material for multicycle sorption enhanced steam methane reforming Di Giuliano A, Giancaterino F, Courson C, Foscolo PU, Gallucci K Fuel, 234, 687, 2018 |
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Pure hydrogen co-production by membrane technology in an IGCC power plant with carbon capture Giuliano A, Poletto M, Barletta D International Journal of Hydrogen Energy, 43(41), 19279, 2018 |
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Catalytic and sorbent materials based on mayenite for sorption enhanced steam methane reforming with different packed-bed configurations Di Giuliano A, Giancaterino F, Gallucci K, Foscolo PU, Courson C International Journal of Hydrogen Energy, 43(46), 21279, 2018 |
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Sorption enhanced catalytic Steam Methane Reforming: Experimental data and simulations describing the behaviour of bi-functional particles Aloisi I, Di Giuliano A, Di Carlo A, Foscolo PU, Courson C, Gallucci K Chemical Engineering Journal, 314, 570, 2017 |
10 |
Characterisation of La0.6Sr0.4CO0.2Fe0.8O3-delta - Ba0.5Sr0.5CO0.8Fe0.2O3-delta composite as cathode for solid oxide fuel cells Giuliano A, Carpanese MP, Panizza M, Cerisola G, Clematis D, Barbucci A Electrochimica Acta, 240, 258, 2017 |