Les Inscriptions à la Bibliothèque sont ouvertes en
ligne via le site: https://biblio.enp.edu.dz
Les Réinscriptions se font à :
• La Bibliothèque Annexe pour les étudiants en
2ème Année CPST
• La Bibliothèque Centrale pour les étudiants en Spécialités
A partir de cette page vous pouvez :
Retourner au premier écran avec les recherches... |
Détail de l'auteur
Auteur X.H. Zhao
Documents disponibles écrits par cet auteur
Affiner la rechercheTransformation of beneficially reused aluminium sludge to potential P and Al resource after employing as P - trapping material for wastewater treatment in constructed wetland / X.H. Zhao in Chemical engineering journal, Vol. 174 N° 1 (Octobre 2011)
[article]
in Chemical engineering journal > Vol. 174 N° 1 (Octobre 2011) . - pp. 206–212
Titre : Transformation of beneficially reused aluminium sludge to potential P and Al resource after employing as P - trapping material for wastewater treatment in constructed wetland Type de document : texte imprimé Auteurs : X.H. Zhao, Auteur ; Y.Q. Zhao, Auteur ; P. Kearney, Auteur Année de publication : 2012 Article en page(s) : pp. 206–212 Note générale : Génie chimique Langues : Anglais (eng) Mots-clés : P resource Aluminium sludge P recovery Chemical precipitation Résumé : The phosphorus (P)-saturated aluminium sludge used as substrate in constructed wetland (CW) for P-rich wastewater treatment was investigated to recover P and Al through chemical precipitations of the P-extraction leachate of the used aluminium sludge. pH plays a key role in such the precipitation processes. The obtained compounds were identified with XRD, FTIR and SEM analyses. The results showed that over 99% PO43− could be recovered as hydroxyapatite by adding calcium chloride at pH of 13. The remaining Al could be fully recovered as amorphous aluminium hydroxide at pH of 7.0 or alternatively as tris(8-hydroxyquinolino)aluminium (Alq3) by adding suitable quantity of 8-hydroxyquinoline. Although the purity, structure, characteristics and production control of the compounds are worthy for further investigation, this study successfully developed a post-treatment methodology for beneficially reused aluminium sludge. The significance of this study is not only transferring aluminium sludge from “waste” to potential P and Al resources but also reducing the environmental risk of final disposal of used aluminium sludge. ISSN : 1385-8947 En ligne : http://www.sciencedirect.com/science/article/pii/S138589471101059X [article] Transformation of beneficially reused aluminium sludge to potential P and Al resource after employing as P - trapping material for wastewater treatment in constructed wetland [texte imprimé] / X.H. Zhao, Auteur ; Y.Q. Zhao, Auteur ; P. Kearney, Auteur . - 2012 . - pp. 206–212.
Génie chimique
Langues : Anglais (eng)
in Chemical engineering journal > Vol. 174 N° 1 (Octobre 2011) . - pp. 206–212
Mots-clés : P resource Aluminium sludge P recovery Chemical precipitation Résumé : The phosphorus (P)-saturated aluminium sludge used as substrate in constructed wetland (CW) for P-rich wastewater treatment was investigated to recover P and Al through chemical precipitations of the P-extraction leachate of the used aluminium sludge. pH plays a key role in such the precipitation processes. The obtained compounds were identified with XRD, FTIR and SEM analyses. The results showed that over 99% PO43− could be recovered as hydroxyapatite by adding calcium chloride at pH of 13. The remaining Al could be fully recovered as amorphous aluminium hydroxide at pH of 7.0 or alternatively as tris(8-hydroxyquinolino)aluminium (Alq3) by adding suitable quantity of 8-hydroxyquinoline. Although the purity, structure, characteristics and production control of the compounds are worthy for further investigation, this study successfully developed a post-treatment methodology for beneficially reused aluminium sludge. The significance of this study is not only transferring aluminium sludge from “waste” to potential P and Al resources but also reducing the environmental risk of final disposal of used aluminium sludge. ISSN : 1385-8947 En ligne : http://www.sciencedirect.com/science/article/pii/S138589471101059X