2016
DOI: 10.1016/j.molliq.2016.05.011
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1-butyl-3-methylimidazolium tetrafluoroborate functionalized ZnO nanoparticles for removal of toxic organic dyes

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Cited by 34 publications
(14 citation statements)
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“…These data can be referred to the higher amine contents and porosity of both SiO 2 -5-5 and SiO 2 -10-10 more than SiO 2 -10 adsorbents to enhance the chemical bonding of CB-R250. Finally, it can be concluded that the prepared SiO 2 -5-5, SiO 2 -10-10, and SiO 2 -10 were adsorbed and reused as effective adsorbents for CB-R250 than the reported data in the literature [41][42][43][44][45][46].…”
Section: Adsorbents Langmuir Isotherm Parametersmentioning
confidence: 71%
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“…These data can be referred to the higher amine contents and porosity of both SiO 2 -5-5 and SiO 2 -10-10 more than SiO 2 -10 adsorbents to enhance the chemical bonding of CB-R250. Finally, it can be concluded that the prepared SiO 2 -5-5, SiO 2 -10-10, and SiO 2 -10 were adsorbed and reused as effective adsorbents for CB-R250 than the reported data in the literature [41][42][43][44][45][46].…”
Section: Adsorbents Langmuir Isotherm Parametersmentioning
confidence: 71%
“…These data confirm the excellent adsorption characteristics of the prepared SiO 2 NPs, which can be used as nano-adsorbent for organic dye water pollutants. In this respect, CB-R250 is one of the non-biodegradable anionic toxic reactive dyes that cannot be easily removed by several adsorbents having adsorption capacities more than 120 mg•g −1 [41][42][43][44][45][46]. The goal of the present work is using mesoporous SiO 2 -10, SiO 2 -5-5, and SiO 2 -10-10 NPs under optimization conditions for nano-adsorbents to remove CB-R250 dye from aqueous solution.…”
Section: Sequestration and Optimization Of Cb-r250 Dye Adsorptionmentioning
confidence: 99%
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“…Zinc oxide is a known catalyst and can be used in environmental remediation processes due to its high chemical stability, low toxicity, biocompatibility, high catalytic activity in catalytic ozonation [17], very low solubility, and low price. ZnO powder, as a catalyst, has been used in different particle sizes and shapes for the removal of organic materials [18][19][20]. ZnO has been synthesized by different methods: using a precursor [21], hydrothermal [22], sonochemical [23], and modified sol-gel [24].…”
Section: Introductionmentioning
confidence: 99%
“…Among the most common photocatalysts (e.g. ZnO, ZnS, CdS, Fe2O3, TiO2 and WO3), ZnO has been widely used for the removal of organic compounds [13]. The electrons of nano-ZnO are excited as a result of exposure to UV radiation, which generates electron (e -) hole (h + ) pair, because of the high energy level of the UV lamp.…”
Section: Introductionmentioning
confidence: 99%