Zobrazeno 1 - 10
of 19
pro vyhledávání: '"Georges Kamgang-Youbi"'
Autor:
Fredy Harcel Kamgang Djioko, Cyrille Ghislain Fotsop, Georges Kamgang Youbi, Simeon Chukwudozie Nwanonenyi, Chinyere Ada Madu, Emeka Emmanuel Oguzie
Publikováno v:
Applied Surface Science Advances, Vol 19, Iss , Pp 100542- (2024)
The adsorption mechanism of ciprofloxacin (CIP) and its ionic form were investigated using density functional theory (DFT) and molecular dynamics (MD), with the goal of forecasting their adsorption behavior in terms of gap energy, global reactivity d
Externí odkaz:
https://doaj.org/article/d0a9b6ef720042c292e21906ab49c5ed
Autor:
Suzie, Voufouo Anne, Jean-Baptiste, Tarkwa, Elie, Acayanka, Natacha, Momeni, Serge, Nzali, Georges, Kamgang Youbi, Samuel, Laminsi
Publikováno v:
In Results in Engineering September 2022 15
Autor:
Jean Paul Kamseu Mogo, Joseph Djeugap Fovo, Berthelot Sop-Tamo, Hortense Nöelle Apala Mafouasson, Marcelline Carine Ngo Ngwem, Marie Jeanne Tebu, Georges Kamgang Youbi, Samuel Laminsi
Publikováno v:
Seeds; Volume 1; Issue 4; Pages: 230-243
This study investigates the effect of Gliding Arc Plasma Activated Water (GAPAW) technique on maize germination and growth variables. The effect of GAPAW was evaluated on corn texture, water absorption in Lab conditions, and the pathway Scanning elec
Autor:
Georges Kamgang-Youbi, Berthelot S. Tamo, Samuel Laminsi, Jean-Paul Kamseu-Mogo, Serge A. Djepang
Publikováno v:
IEEE Transactions on Plasma Science. 49:2318-2328
The gliding arc (Glidarc) electric discharge generates nonthermal plasma at atmospheric pressure. This work proposes to investigate the effect of humid air Glidarc plasma on maize seeds by studying the early germination and the effect on maize pathog
Publikováno v:
Journal of Chemical Technology & Biotechnology. 96:273-282
BACKGROUND: The discharge of liquid textile effluents remains a major concern for the ecosystem. The combination of glidarc plasma and biological treatment is an excellent technique that overcomes the disadvantages of each method used separately, but
Autor:
L.N. Tchadjié, J. Baenla, J. P. Kamseu Mogo, Thamer Alomayri, J. B. Tarkwa, B. Sop-Tamo, Georges Kamgang-Youbi, Hasan Assaedi
Cameroonian kaolin samples were used to produce geopolymer cements. Prior to its application, the raw kaolin samples were activated trough the gliding arc plasma treatment in both spatial post-discharge and direct mode. A mixture of sodium hydroxide
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::cc6ff45115a7549d85c23989dd3eb587
https://doi.org/10.21203/rs.3.rs-218862/v1
https://doi.org/10.21203/rs.3.rs-218862/v1
Publikováno v:
Journal of Chemical Technology & Biotechnology. 93:2544-2551
Autor:
L. Medjo Simo, Samuel Laminsi, Elie Acayanka, L.N. Tchadjié, Antoine Tiya-Djowe, B. Sop Tamo, D. Kuete-Saa, Georges Kamgang-Youbi
Publikováno v:
Plasma Chemistry and Plasma Processing. 36:1449-1469
A Cameroonian kaolinite powder was treated with gliding arc plasma in order to increase the amount of hydroxyl functional groups present on its external surfaces. The functional changes that occurred were monitored by Fourier transform infrared spect
Autor:
Serge Nzali, Elie Acayanka, B. Sop-Tamo, W. F. Boyom-Tatchemo, Georges Kamgang-Youbi, Samuel Laminsi
Publikováno v:
Water science and technology : a journal of the International Association on Water Pollution Research. 78(7)
This study investigates the ability of spatial post-discharge mode functionalized kaolin to remove textile dye Reactive Red 2 from aqueous solution compared to that of the raw kaolinite. To fulfill the aim, the removal conditions, including plasma ex
Autor:
Samuel Laminsi, G. Payom, Moïse Nola, C. D. Lontsi, A. Njiki, Emmanuel Ngameni, Georges Kamgang-Youbi
Publikováno v:
International Journal of Environmental Science and Technology. 13:263-274
The gliding arc discharge, which is a source of nonthermal plasma, was used to enhance the biodegradation of crystal violet (CV), a triphenylmethane non-biodegradable organic dye. The determination of the biodegradability index, i.e., biochemical oxy