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Wyszukujesz frazę "hydrogen production" wg kryterium: Temat


Wyświetlanie 1-4 z 4
Tytuł:
Investigation of membrane performance in the separation of carbon dioxide
Autorzy:
Tanczyk, M.
Warmuziński, K.
Janusz-Cygan, A.
Jaschik, M.
Powiązania:
https://bibliotekanauki.pl/articles/185597.pdf
Data publikacji:
2011
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
produkcja wodoru
proces hybrydowy
proces membranowy
hydrogen production
hybrid process
pressure swing adsorption
membrane process
Opis:
HY2SEPS was an EU-funded project directed at the reduction of C02 emissions. The principal objective of the project was to develop a hybrid membrane-adsorptive H2/C02 separation technique that would form an integral element of the pre-combustion process. Specific tasks included the derivation of simplified mathematical models for the membrane separation of H2/C02 mixtures. In the present study one of the developed models is discussed in detail, namely that with the countercurrent plug flow of the feed and the permeate. A number of simulations were carried out concerning the separation of binary mixtures that may appear following steam conversion of methane. The numerical results were then compared with the experimental data obtained by FORTH/ICEHT. The estimated fluxes of pure C02, H2, CH4 and N2 are shown alongside those measured experimentally as a function of temperature and C02 partial pressure in Figs 2 - 7. It is concluded that, in general, C02 flux increases monotonically with both temperature and C02 partial pressure. It is also found that the fluxes of hydrogen, methane and nitrogen reach a minimum at a temperature slightly above 323 K. Overall, a good agreement was obtained between the simulations and experiments.
Źródło:
Chemical and Process Engineering; 2011, 32, 4; 291-298
0208-6425
2300-1925
Pojawia się w:
Chemical and Process Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Methanol as a High Purity Hydrogen Source for Fuel Cells: A Brief Review of Catalysts and Rate Expressions
Autorzy:
Madej-Lachowska, M.
Kulawska, M.
Słoczyński, J.
Powiązania:
https://bibliotekanauki.pl/articles/185394.pdf
Data publikacji:
2017
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
copper catalysts
noble metal catalysts
fuel cell
hydrogen production
CO-PROX
katalizatory miedziowe
katalizatory z metalu szlachetnego
ogniwo paliwowe
produkcja wodoru
Opis:
Hydrogen is the fuel of the future, therefore many hydrogen production methods are developed. At present, fuel cells are of great interest due to their energy efficiency and environmental benefits. A brief review of effective formation methods of hydrogen was conducted. It seems that hydrogen from steam reforming of methanol process is the best fuel source to be applied in fuel cells. In this process Cu-based complex catalysts proved to be the best. In presented work kinetic equations from available literature and catalysts are reported. However, hydrogen produced even in the presence of the most selective catalysts in this process is not pure enough for fuel cells and should be purified from CO. Currently, catalysts for hydrogen production are not sufficiently active in oxidation of carbon monoxide. A simple and effective method to lower CO level and obtain clean H2 is the preferential oxidation of monoxide carbon (CO-PROX). Over new CO-PROX catalysts the level of carbon monoxide can be lowered to a sufficient level of 10 ppm.
Źródło:
Chemical and Process Engineering; 2017, 38, 1; 147-162
0208-6425
2300-1925
Pojawia się w:
Chemical and Process Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Methane and hydrogen production from potato wastes and wheat straw under dark fermentation
Autorzy:
Sołowski, Gaweł
Konkol, Izabela
Shalaby, Marwa
Cenian, Adam
Powiązania:
https://bibliotekanauki.pl/articles/2034049.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
dark fermentation
hydrogen production
wheat straw
boiled potato wastes
microaeration
inoculum stressing
ciemna fermentacja
produkcja wodoru
słoma pszenna
gotowane odpady ziemniaczane
mikronapowietrzanie
Opis:
Batch dark fermentation of wheat straw and boiled potato wastes at volatile suspended solids (VSS) 5 g VSS/L are examined and compared. Investigations on dark fermentation of potatowastes and wheat straw were carried out at different pH and OFR (oxygen flow rate) values and inoculum pretreatment. The obtained hydrogen yield from waste potato was 70 mL/g VSS, while for hydrolysed wheat straw it amounted to 80 mL/g VSS. The optimum conditions for potato dark fermentation are acidic pH 6.0 and OFR 1.0 mL/h, while for the wheat straw, optimal conditions are pH 6.4 and OFR 4.6 mL/h. The comparison revealed a significant difference in hydrogen production due to the type of substrate, inoculum stressing and DF conditions applied.
Źródło:
Chemical and Process Engineering; 2021, 42, 1; 3-13
0208-6425
2300-1925
Pojawia się w:
Chemical and Process Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Fermentative hydrogen production - process design and bioreactors
Autorzy:
Waligórska, M.
Powiązania:
https://bibliotekanauki.pl/articles/185493.pdf
Data publikacji:
2012
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
biohydrogen production
fermentation
bioreactor
operational parameter
hydrogen yields
produkcja biowodoru
fermentacja
bioreaktor
parametr operacyjny
rentowności wodoru
Opis:
Substitution of fossil fuels with alternative energy carriers has become necessary due to climate change and fossil fuel shortages. Fermentation as a way of producing biohydrogen, an attractive and environmentally friendly future energy carrier, has captured received increasing attention in recent years because of its high H2 production rate and a variety of readily available waste substrates used in the process. This paper discusses the state-of-the-art of fermentative biohydrogen production, factors affecting this process, as well as various bioreactor configurations and performance parameters, including H2 yield and H2 production rate.
Źródło:
Chemical and Process Engineering; 2012, 33, 4; 585-594
0208-6425
2300-1925
Pojawia się w:
Chemical and Process Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-4 z 4

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