Explore the words cloud of the BIONICO project. It provides you a very rough idea of what is the project "BIONICO" about.
The following table provides information about the project.
POLITECNICO DI MILANO
|Coordinator Country||Italy [IT]|
|Total cost||3˙396˙640 €|
|EC max contribution||3˙147˙640 € (93%)|
1. H2020-EU.188.8.131.52. (Increase the energy efficiency of production of hydrogen mainly from water electrolysis and renewable sources while reducing operating and capital costs, so that the combined system of the hydrogen production and the conversion using the fuel cell system...)
|Duration (year-month-day)||from 2015-09-01 to 2019-12-31|
Take a look of project's partnership.
|1||POLITECNICO DI MILANO||IT (MILANO)||coordinator||387˙172.00|
|2||I.C.I CALDAIE SPA||IT (CAMPAGNOLA DI ZEVIO)||participant||879˙547.00|
|3||FUNDACION TECNALIA RESEARCH & INNOVATION||ES (DERIO BIZKAIA)||participant||497˙000.00|
|4||TECHNISCHE UNIVERSITEIT EINDHOVEN||NL (EINDHOVEN)||participant||390˙173.00|
|5||ENC POWER LDA||PT (Vila Nova de Gaia)||participant||364˙471.00|
|6||RAUSCHERT KLOSTER VEILSDORF GMBH||DE (VEILSDORF)||participant||303˙462.00|
|7||JOHNSON MATTHEY PLC||UK (LONDON)||participant||255˙941.00|
|8||ABENGOA HIDROGENO SA||ES (SEVILLA)||participant||69˙872.00|
|9||QUANTIS||CH (ECUBLENS VD)||participant||0.00|
BIONICO will develop, build and demonstrate at a real biogas plant (TRL6) a novel reactor concept integrating H2 production and separation in a single vessel. The hydrogen production capacity will be of 100 kg/day. By using the novel intensified reactor, direct conversion of biogas to pure hydrogen is achieved in a single step, which results in an increase of the overall efficiency and strong decrease of volumes and auxiliary heat management units. The BIONICO process will demonstrate to achieve an overall efficiency up to 72% thanks to the process intensification. In particular, by integrating the separation of hydrogen in situ during the reforming reaction, the methane in the biogas will be converted to hydrogen at a much lower temperature compared with a conventional system, due to the shifting effect on the equilibrium conversion. The fluidization of the catalyst makes also possible to (i) overcome problems with temperature control (formation of hotspots or too low temperature), (ii) to operate with smaller particles while still maintaining very low pressure drops and (iii) to overcome any concentration polarization issue associated with more conventional fixed bed membrane reactors. Dedicated tests with different biogas composition will be carried out to show the flexibility of the process with respect to the feedstock type. Compared with any other membrane reactor project in the past, BIONICO will demonstrate the membrane reactor at a much larger scale, so that more than 100 membranes will be implemented in a single fluidized bed membrane reactor, making BIONICO’s In this way a more easy operation can be carried out so that a stable pure hydrogen production can be achieved. BIONICO project is based upon knowledge and experience directly gained in three granted projects: ReforCELL, FERRET and FluidCELL.
|Membrane development||Documents, reports||2020-01-24 10:41:17|
|Report on characterization and validation of the lab scale reactor||Documents, reports||2020-01-24 10:41:15|
|First model of novel reforming membrane reactor system||Other||2020-01-24 10:41:15|
|Six monthly newsletter on the BIONICO project nr.3||Websites, patent fillings, videos etc.||2020-01-24 10:41:16|
|Six monthly newsletter on the BIONICO project nr.2||Websites, patent fillings, videos etc.||2020-01-24 10:41:16|
|Definition of the BIONICO operating conditions and performances||Documents, reports||2020-01-24 10:41:16|
|Six monthly newsletter on the BIONICO project nr.4||Websites, patent fillings, videos etc.||2020-01-24 10:41:16|
|Definition of the reference case||Documents, reports||2020-01-24 10:41:15|
|Project Internet Platform (Public wbesite)||Websites, patent fillings, videos etc.||2020-01-24 10:41:15|
|Non-confidential project presentation nr.2||Websites, patent fillings, videos etc.||2020-01-24 10:41:16|
|Integrated catalysts, membrane and sealing in lab scale membrane reactor||Demonstrators, pilots, prototypes||2020-01-24 10:41:15|
|Preliminary environmental LCA of the developed technology||Documents, reports||2020-01-24 10:41:16|
|Preliminary design of the lab scale membrane reactor||Demonstrators, pilots, prototypes||2020-01-24 10:41:15|
|Industrial specifications||Documents, reports||2020-01-24 10:41:17|
|Six monthly newsletter on the BIONICO project nr.1||Websites, patent fillings, videos etc.||2020-01-24 10:41:16|
|Non-confidential project presentation nr.3||Websites, patent fillings, videos etc.||2020-01-24 10:41:16|
|Annual Data Report, year 1||Documents, reports||2020-01-24 10:41:17|
|Non-confidential project presentation nr.1||Websites, patent fillings, videos etc.||2020-01-24 10:41:16|
|Development of a fluidisable biogas reforming catalyst||Documents, reports||2020-01-24 10:41:17|
|Annual Data Report, year 2||Documents, reports||2020-01-24 10:41:17|
|Final model of novel reforming reactor system||Other||2020-01-24 10:41:15|
|Six monthly newsletter on the BIONICO project nr.6||Websites, patent fillings, videos etc.||2020-01-24 10:41:17|
|Six monthly newsletter on the BIONICO project nr.7||Websites, patent fillings, videos etc.||2020-01-24 10:41:18|
|Annual Data Report, year 4||Documents, reports||2020-01-24 10:41:18|
|Non-confidential project presentation nr.4||Websites, patent fillings, videos etc.||2020-01-24 10:41:17|
|Annual Data Report, year 3||Documents, reports||2020-01-24 10:41:17|
|Six monthly newsletter on the BIONICO project nr.5||Websites, patent fillings, videos etc.||2020-01-24 10:41:17|
Take a look to the deliverables list in detail: detailed list of BIONICO deliverables.
|year||authors and title||journal||last update|
Di Marcoberardino, Knijff, Binotti, Gallucci, Manzolini
Techno-Economic Assessment in a Fluidized Bed Membrane Reactor for Small-Scale H2 Production: Effect of Membrane Support Thickness
published pages: 116, ISSN: 2077-0375, DOI: 10.3390/membranes9090116
Niek Nooijer, Alba Arratibel Plazaola, Jon MelÃ©ndez Rey, Ekain Fernandez, David Pacheco Tanaka, Martin Sint Annaland, Fausto Gallucci
Long-Term Stability of Thin-Film Pd-Based Supported Membranes
published pages: 106, ISSN: 2227-9717, DOI: 10.3390/pr7020106
Gioele Di Marcoberardino, Xun Liao, Arnaud Dauriat, Marco Binotti, Giampaolo Manzolini
Life Cycle Assessment and Economic Analysis of an Innovative Biogas Membrane Reformer for Hydrogen Production
published pages: 86, ISSN: 2227-9717, DOI: 10.3390/pr7020086
Gioele Di Marcoberardino, Dario Vitali, Francesco Spinelli, Marco Binotti, Giampaolo Manzolini
Green Hydrogen Production from Raw Biogas: A Techno-Economic Investigation of Conventional Processes Using Pressure Swing Adsorption Unit
published pages: 19, ISSN: 2227-9717, DOI: 10.3390/pr6030019
Niek de Nooijer, Fausto Gallucci, Emma Pellizzari, Jon Melendez, David Alfredo Pacheco Tanaka, Giampaolo Manzolini, Martin van Sint Annaland
On concentration polarisation in a fluidized bed membrane reactor for biogas steam reforming: Modelling and experimental validation
published pages: 232-243, ISSN: 1385-8947, DOI: 10.1016/j.cej.2018.04.205
|Chemical Engineering Journal 348||2020-01-24|
Gioele Di Marcoberardino, Stefano Foresti, Marco Binotti, Giampaolo Manzolini
Potentiality of a biogas membrane reformer for decentralized hydrogen production
published pages: 131-141, ISSN: 0255-2701, DOI: 10.1016/j.cep.2018.04.023
|Chemical Engineering and Processing - Process Intensification 129||2020-01-24|
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