Congo red recovery from water using green extraction solvents
Tài liệu tham khảo
Muthuraman, 2011, Extractive removal of astacryl blue BG and astacryl golden yellow dyes from aqueous solutions by liquid-liquid extraction, Desalination, 277, 308, 10.1016/j.desal.2011.04.047
Yaseen, 2019, Textile dye wastewater characteristics and constituents of synthetic effluents: a critical review, Int. J. Environ. Sci. Technol., 16, 1193, 10.1007/s13762-018-2130-z
Tkaczyk, 2020, Synthetic organic dyes as contaminants of the aquatic environment and their implications for ecosystems: a review, Sci. Total Environ., 717, 137222, 10.1016/j.scitotenv.2020.137222
Gharehbaghi, 2012, A novel method for dye removal: ionic liquid-based dispersive liquid-liquid extraction (IL-DLLE), Clean, 40, 290
Ananthashankar, 2013, Production, characterization and treatment of textile effluents: a critical review, J. Chem. Eng. Process Technol., 5, 1, 10.4172/2157-7048.1000182
Saratale, 2011, Bacterial decolorization and degradation of azo dyes: a review, J. Taiwan Inst. Chem. Eng., 42, 138, 10.1016/j.jtice.2010.06.006
Kabra, 2013, Development of a bioreactor for remediation of textile effluent and dye mixture: a plant-bacterial synergistic strategy, Water Res., 47, 1035, 10.1016/j.watres.2012.11.007
Benkhaya, 2017, Classifications , properties and applications of textile dyes : a review, Appl. J. Envir. Eng. Sci., 3, 311
Lu, 2009, Treatment of wastewater containing azo dye reactive brilliant red X-3B using sequential ozonation and upflow biological aerated filter process, J. Hazard Mater., 161, 241, 10.1016/j.jhazmat.2008.03.077
Chen, 2013, Extraction of soluble dyes from aqueous solutions with quaternary ammonium-based ionic liquids, Separ. Purif. Technol., 106, 105, 10.1016/j.seppur.2013.01.002
Shah, 2012, Microbial degradation of textile dye (remazol black B) by Bacillus spp. ETL-2012, J. Biorem. Biodegrad., 4, 6, 10.4172/2155-6199.1000180
Arslan, 2016, A review of state-of-the-art technologies in dye-containing wastewater – the textile industry case, 1
Wang, 2008, Degradation of reactive brilliant red in aqueous solution by ultrasonic cavitation, Ultrason. Sonochem., 15, 43, 10.1016/j.ultsonch.2007.01.008
Katsumata, 2010, Degradation of Reactive Yellow 86 with photo-Fenton process driven by solar light, J. Environ. Sci., 22, 1455, 10.1016/S1001-0742(09)60275-8
Navarro, 2017, Degradation of an azo dye by a fast and innovative pulsed light/H2O2 advanced oxidation process, Dyes Pigments, 136, 887, 10.1016/j.dyepig.2016.09.053
Sarayu, 2007, Assessment of degradation of eight commercial reactive azo dyes individually and in mixture in aqueous solution by ozonation, Dyes Pigments, 75, 362, 10.1016/j.dyepig.2006.06.011
Bilińska, 2021, Novel trends in AOPs for textile wastewater treatment. Enhanced dye by-products removal by catalytic and synergistic actions, Water Resour. Ind, 26, 100160, 10.1016/j.wri.2021.100160
Januário, 2021, Advanced graphene oxide-based membranes as a potential alternative for dyes removal: a review, Sci. Total Environ., 789, 147957, 10.1016/j.scitotenv.2021.147957
Shirmardi, 2013, The adsorption of malachite green (MG) as a cationic dye onto functionalized multi walled carbon nanotubes, Kor. J. Chem. Eng., 30, 1603, 10.1007/s11814-013-0080-1
Zaharia, 2013, Coal fly ash as adsorptive material for treatment of a real textile effluent: operating parameters and treatment efficiency, Environ. Sci. Pollut. Res., 20, 2226, 10.1007/s11356-012-1065-z
Acisli, 2020, Preparation of a fly ash-based geopolymer for removal of a cationic dye: isothermal, kinetic and thermodynamic studies, J. Ind. Eng. Chem., 83, 53, 10.1016/j.jiec.2019.11.012
Almazán-Sánchez, 2016, Textile wastewater treatment using iron-modified clay and copper-modified carbon in batch and column systems, Water Air Soil Pollut., 227, 10.1007/s11270-016-2801-7
Qi, 2021, Recent advances in polysaccharide-based adsorbents for wastewater treatment, J. Clean. Prod., 315, 128221, 10.1016/j.jclepro.2021.128221
Gouveia, 2020, Liquid-liquid extraction as a simple tool to quickly quantify fourteen cytostatics in urban wastewaters and access their impact in aquatic biota, Sci. Total Environ., 740, 139995, 10.1016/j.scitotenv.2020.139995
Cladera, 2000, Multicomponent sequential injection analysis determination of nitro-phenols in waters by on-line liquid-liquid extraction and preconcentration, Anal. Chim. Acta, 421, 155, 10.1016/S0003-2670(00)01035-7
Wang, 2017, Liquid-liquid equilibria of ionic liquids-water-acetic acid mixtures, J. Chem. Eng. Data, 62, 653, 10.1021/acs.jced.6b00692
Fan, 2017, Enhanced extraction of antioxidants from aqueous solutions by ionic liquids, Separ. Purif. Technol., 172, 480, 10.1016/j.seppur.2016.09.001
Boudesocque, 2016, Use of dicyanamide ionic liquids for extraction of metal ions, RSC Adv., 6, 107894, 10.1039/C6RA18991A
Baba, 2011, Recent advances in extraction and separation of rare-earth metals using ionic liquids, J. Chem. Eng. Jpn., 44, 679, 10.1252/jcej.10we279
Boudesocque, 2014, Efficient extraction of gold from water by liquid-liquid extraction or precipitation using hydrophobic ionic liquids, New J. Chem., 38, 5573, 10.1039/C4NJ01115E
Kermanioryani, 2016, Using tunability of ionic liquids to remove methylene blue from aqueous solution, J. Environ. Chem. Eng., 4, 2327, 10.1016/j.jece.2016.04.008
Martins, 2018, Tunable hydrophobic eutectic solvents based on terpenes and monocarboxylic acids, ACS Sustain. Chem. Eng., 6, 8836, 10.1021/acssuschemeng.8b01203
Florindo, 2018, From phase change materials to green solvents: hydrophobic low viscous fatty acid-based deep eutectic solvents, ACS Sustain. Chem. Eng., 6, 3888, 10.1021/acssuschemeng.7b04235
Turgis, 2018, Ketone functionalized task specific ionic liquids for selective tantalum extraction, Separ. Purif. Technol., 196, 174, 10.1016/j.seppur.2017.08.009
Philippi, 2020, Conformational design concepts for anions in ionic liquids, Chem. Sci., 11, 6405, 10.1039/D0SC01379J
Verma, 2018, Liquid-liquid extraction of lower alcohols using menthol-based hydrophobic deep eutectic solvent: experiments and COSMO-SAC predictions, Ind. Eng. Chem. Res., 57, 3371, 10.1021/acs.iecr.7b05270
Dietz, 2019, Thermodynamic properties of hydrophobic deep eutectic solvents and solubility of water and HMF in them: measurements and PC-SAFT modeling, Fluid Phase Equil., 489, 75, 10.1016/j.fluid.2019.02.010
Van Osch, 2019, A search for natural hydrophobic deep eutectic solvents based on natural components, ACS Sustain. Chem. Eng., 7, 2933, 10.1021/acssuschemeng.8b03520
Zainal-Abidin, 2021, Hydrophobic deep eutectic solvents: current progress and future directions, J. Ind. Eng. Chem., 97, 142, 10.1016/j.jiec.2021.03.011
Riveiro, 2020, Extraction of adipic, levulinic and succinic acids from water using TOPO-based deep eutectic solvents, Separ. Purif. Technol., 241, 116692, 10.1016/j.seppur.2020.116692
Dwamena, 2019, Recent advances in hydrophobic deep eutectic solvents for extraction, Separations, 6, 1, 10.3390/separations6010009
Lee, 2019, Hydrophobic deep eutectic solvents for the extraction of organic and inorganic analytes from aqueous environments, TrAC Trends Anal. Chem. (Reference Ed.), 118, 853, 10.1016/j.trac.2019.07.008
Kaur, 2018, Performance and mechanism of dye extraction from aqueous solution using synthesized deep eutectic solvents, Colloids Surfaces A Physicochem. Eng. Asp., 539, 85, 10.1016/j.colsurfa.2017.12.013
Kaur, 2018, Performance and mechanism of dye extraction from aqueous solution using synthesized deep eutectic solvents, Colloids Surfaces A Physicochem. Eng. Asp., 539, 85, 10.1016/j.colsurfa.2017.12.013
Martins, 2018, Tunable hydrophobic eutectic solvents based on terpenes and monocarboxylic acids, ACS Sustain. Chem. Eng., 6, 8836, 10.1021/acssuschemeng.8b01203
Othman, 2011, Liquid-liquid extraction of black b dye from liquid waste solution using tridodecylamine, J. Environ. Sci. Technol., 4, 324, 10.3923/jest.2011.324.331
Kumar, 2019, A comprehensive insight on H-type aggregation in Congo red-surfactant systems revealed through spectroscopic and electrochemical study unified with a simulation framework, Phys. Chem. Chem. Phys., 21, 15584, 10.1039/C9CP00482C
Al-Thabaiti, 2016, Aggregation of Congo red with surfactants and Ag-nanoparticles in an aqueous solution, Spectrochim. Acta Part A Mol. Biomol. Spectrosc., 156, 28, 10.1016/j.saa.2015.11.015