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Journal Abstract Search
114 related items for PubMed ID: 39259367
1. Valorization of polyurethane foam waste through the decoration with nano-polyaniline for dye decontamination from polluted water. Ibrahim A, Noby H, Elkady M. Environ Monit Assess; 2024 Sep 11; 196(10):923. PubMed ID: 39259367 [Abstract] [Full Text] [Related]
2. The performance of UiO-66-NH2/graphene oxide (GO) composite membrane for removal of differently charged mixed dyes. Li J, Gong JL, Zeng GM, Zhang P, Song B, Cao WC, Fang SY, Huan SY, Ye J. Chemosphere; 2019 Dec 11; 237():124517. PubMed ID: 31549644 [Abstract] [Full Text] [Related]
4. Synthesis of malachite@clay nanocomposite for rapid scavenging of cationic and anionic dyes from synthetic wastewater. Srivastava V, Sillanpää M. J Environ Sci (China); 2017 Jan 11; 51():97-110. PubMed ID: 28115155 [Abstract] [Full Text] [Related]
9. Polymeric nanocomposites for the removal of Acid red 52 dye from aqueous solutions: Synthesis, characterization, kinetic and isotherm studies. Gouthaman A, Azarudeen RS, Gnanaprakasam A, Sivakumar VM, Thirumarimurugan M. Ecotoxicol Environ Saf; 2018 Sep 30; 160():42-51. PubMed ID: 29783111 [Abstract] [Full Text] [Related]
11. Graphene oxide/ferroferric oxide/polyethylenimine nanocomposites for Congo red adsorption from water. Wang L, Mao C, Sui N, Liu M, Yu WW. Environ Technol; 2017 Apr 30; 38(8):996-1004. PubMed ID: 27485912 [Abstract] [Full Text] [Related]
13. Magnetic nanocomposite of maize offal biomass for effective sequestration of Congo red and methyl orange dyes from contaminated water: modeling, kinetics and reusability. Tariq MS, Imran M, Ud Din S, Murtaza B, Naeem MA, Amjad M, Shah NS, Khalid MS, Abdel-Maksoud MA, Alfuraydi AA, AbdElgawad H. Int J Phytoremediation; 2024 Apr 30; 26(6):975-992. PubMed ID: 37968930 [Abstract] [Full Text] [Related]
15. Ultrafast and simultaneous removal of anionic and cationic dyes by nanodiamond/UiO-66 hybrid nanocomposite. Molavi H, Neshastehgar M, Shojaei A, Ghashghaeinejad H. Chemosphere; 2020 May 30; 247():125882. PubMed ID: 32069713 [Abstract] [Full Text] [Related]
16. Adsorption characteristics of Congo Red onto the chitosan/montmorillonite nanocomposite. Wang L, Wang A. J Hazard Mater; 2007 Aug 25; 147(3):979-85. PubMed ID: 17349744 [Abstract] [Full Text] [Related]
17. Appraisal of the adsorption potential of novel modified gellan gum nanocomposite for the confiscation of methylene blue and malachite green. Abbasi A, Ahmad I, Abd El-Gawad HH, Alshahrani WA, Alqarni ND, El-Bahy ZM, Ikram S. Int J Biol Macromol; 2024 Feb 25; 259(Pt 1):129221. PubMed ID: 38191115 [Abstract] [Full Text] [Related]
18. Computational and experimental assessment of efficient dye adsorption method from aqueous effluents by halloysite and palygorskite clay minerals. Câmara ABF, Silva MRL, de Longe C, Moura HOMA, Silva SRB, de Souza MAF, Rodríguez-Castellón E, de Carvalho LS. Environ Sci Pollut Res Int; 2024 Sep 25; 31(41):53671-53690. PubMed ID: 38158527 [Abstract] [Full Text] [Related]
19. Mesoporous crosslinked chitosan-activated clinoptilolite biocomposite for the removal of anionic and cationic dyes. Miao JL, Ren JQ, Li HJ, Wu DG, Wu YC. Colloids Surf B Biointerfaces; 2022 Aug 25; 216():112579. PubMed ID: 35598510 [Abstract] [Full Text] [Related]
20. Graphene oxide edge grafting of polyaniline nanocomposite: an efficient adsorbent for methylene blue and methyl orange. Wang H, Duan M, Guo Y, Wang C, Shi Z, Liu J, Lv J. Water Sci Technol; 2018 Jul 25; 77(11-12):2751-2760. PubMed ID: 30065127 [Abstract] [Full Text] [Related] Page: [Next] [New Search]