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Date de publicationTitreAuteur(s)
2018-09-01Spatial analysis of groundwater quality using self-organizing mapsMouni, Lotfi
2020-08Spatial distribution of the groundwater quality using kriging and Co-kriging interpolationsBelkhiri, Lazhar; Ammar, Tiria; Mouni, Lotfi
2011-01-02Statistical categorization geochemical modeling of groundwater in Ain Azel plain (AlgeriaMouni, Lotfi
2014Studies on the removal of Pb (II) from wastewater by activated carbon developed from Apricot stone activated with sulphuric acid Authors L Mouni, L Belkhiri, M Tafer, F Zouggaghe, Y Kadmi Publication date 2014 Journal Moroccan Journal of Chemistry Volume 2 Issue 5 Pages 2-5 (2014) 452-456 Description Studies on the utilization of low cost adsorbents for removal of heavy metals from wastewaters are gaining attention. Activated carbons were developed from Apricot stone, by chemically treating with sulfuric acid. Batch adsorption experiments were performed to find out the effective lead removal at different metal ion concentrations, adsorbent size and dosage. Operational parameters such as pH, agitation time and adsorbent concentration, initial ion concentration and particle size were also studied. Adsorption data fitted well with the Langmuir and Freundlich models. However, Freundlich isotherm displayed a better fitting model than Langmuir isotherm because of the higher correlation coefficient that the former exhibited. Apricot Adsorption kinetics data were modeled using the pseudo-first and pseudo-second-order models. The results indicate that the second-order model best describes adsorption kinetic data. The estimated maximum capacities of lead ions adsorbed by Apricot stone activated with sulphuric acid were 21.38 mg g-1. In addition, the thermodynamic parameters, standard free energy (ΔG 0), standard enthalpy (ΔH 0), standard entropy (ΔS 0) of the adsorption process were calculatedMouni, Lotfi
2023-09-08Study and Characterization of H3PO4 Activated Carbons Prepared from Jujube Stones for the Treatment of Industrial Textile EffluentsBouchelkia, Nasma; Benazouz, Kheira; Mameri, Amal; Belkhiri, Lazhar; Hamri, Nadia; Belkacemi, Hayet; Zoukel, Abdelhalim; Amrane, Abdeltif; Aoulmi, Fodil; Mouni, Lotfi
2020-02-05Suitability and Assessment of Surface Water for Irrigation PurposeMouni, Lotfi
2023Synthesis and Characterization of the Carbonate Hydrotalcites (NiAl-HT, CoAl-HT, and NiCoAl-HT), and Its Application for Removal of the Anionic Azo Dye Titan Yellow from Aqueous SolutionChouikh, Samira; Cheikh, Sabrina; Imessaoudene, Ali; Mouni, Lotfi; Amrane, Abdeltif; Benahmed, Amine; Bettahar, Noureddine
2013-03-07Traitement des eaux uséesMouni, Lotfi
2013Traitement des eaux usées: traitement des eaux usées par coagulation, floculation, modélisation par les plans d'expériencesMouni, Lotfi
2012Transfert des métaux dans les solsMouni, Lotfi
2012-12-27Transfert des métaux dans les solsMouni, Lotfi; Merabet, Djoudi
2015Ultrasound assisted extraction of phenolic compounds from P. lentiscus L. leaves: Comparative study of artificial neural network (ANN) versus degree of experiment for prediction ability of phenolic compounds recoveryDahmoune, Farid; Remini, Hocine; Dairi, Sofiane; Aoun, Omar; Moussi, Kamal; Bouaoudia-Madi, Nadia; Adjeroud, Nawel; Kadri, Nabil; Lefsih, Khalef; Boughan, Lhadi; Mouni, Lotfi; Nayak, Balunkeswar; Madan, Khodir
2015-08-29Ultrasound assisted extraction of phenolic compounds from P. lentiscus L. leaves: Comparative study of artificial neural network (ANN) versus degree of experiment for prediction ability of phenolic compounds recoveryRemini, Hocine; Dahmoune, Farid; Madani, Khodir; Mouni, Lotfi; Nayake, Balunkeswar; Kadrib, Nabil; Boughani, Lhadi; Bouaoudia-Madia, Nadia; Adjerouda, Nawel
2010-03Water–rock interaction and geochemistry of groundwater from the Ain Azel aquifer, AlgeriaMouni, Lotfi
2011-02-19Water–rock interaction and geochemistry of groundwater from the Ain Azel aquifer,AlgeriaMouni, Lotfi
2012-01-02YDROCHEMICAL CHARACTERISTICS OF AIN AZEL PLAIN, ALGERIA CARACTERISATIONS HYDROCHIMIQUES DE LA PLAINE DE AIN AZEL, ALGERIEMouni, Lotfi