Ouafae Achak
Abdelmalek Essaâdi University
24 Papers
27 Citations
Ouafae Achak is an academic researcher from Abdelmalek Essaâdi University. The author has contributed to research in topics: Adsorption & Molybdenum disulfide. The author has an hindex of 7, co-authored 19 publications.
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Papers
A comparative study of the adsorption and desorption of o-xylene onto bentonite clay and alumina.
TL;DR: The results shows the interest of a local clay natural of bentonite type for treatment of VOCs emitted in working places regarding its performances and lower cost.
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CO2 capture using N-containing nanoporous activated carbon obtained from argan fruit shells
TL;DR: In this article, the authors investigated the CO2 capture by activated carbons prepared from Argan fruits shells, which consist on carbonization followed by activation using wet impregnation or dry physical mixing with activating agents such as KOH or NaOH.
110
Activated carbon with exceptionally high surface area and tailored nanoporosity obtained from natural anthracite and its use in supercapacitors
TL;DR: In this article, the pore size distribution was controlled by using a combination of bigger micropores and smaller mesopores, which resulted in very high specific surface area of 2934.60m2/g with a total pore volume of 1.33m3/g.
65
Development of nickel supported La and Ce-natural illite clay for autothermal dry reforming of methane: Toward a better resistance to deactivation
Mohcin Akri,Stéphane Pronier,Tarik Chafik,Ouafae Achak,Pascal Granger,Pardis Simon,Martine Trentesaux,Catherine Batiot-Dupeyrat +7 more
TL;DR: In this paper, an autothermal dry reforming of methane was performed using natural illite clay as catalyst support, which was attributed to the formation of a britholite phase during the reaction resulting from the migration of lanthanum into the bulk.
61
Autothermal reforming of model purified biogas using an extruded honeycomb monolith: A new catalyst based on nickel incorporated illite clay promoted with MgO
Mohcin Akri,Mohcin Akri,Ouafae Achak,Pascal Granger,Sheng Wang,Catherine Batiot-Dupeyrat,Tarik Chafik +6 more
TL;DR: In this paper, a novel catalyst based on natural illite clay to which nickel and magnesium has been added into moldable paste easily extrudated into honeycomb monolith was investigated.
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