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Research Article

Reusable electrospun carbon nanofiber composite for selective removal of inorganic arsenic species in water

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Pages 184-193 | Received 05 Apr 2021, Accepted 18 Jun 2021, Published online: 21 Jul 2021

References

  • Zhang S, Bai J, Wang W, et al. Heavy metal contents and transfer capacities of phragmites australis and Suaeda salsa in the Yellow River Delta, China. Phys Chem Earth. 2018;104:3–8.
  • Antón MAL, Somoano MD, Fierro JLG, et al. Retention of arsenic and selenium compounds present in coal combustion and gasification flue gases using activated carbons. Fuel Process Technol. 2007;88:799–805.
  • Masue Y, Loeppert RH, Kramer TA. Arsenate and arsenite adsorption and desorption behavior on coprecipitated aluminum: ironhydroxides. Environ Sci Technol. 2007;41:837–842.
  • Moe B, Peng H, Lu X, et al. Comparative cytotoxicity of fourteen trivalent and pentavalent arsenic species determined using real-time cell sensing. J Environ Sci. 2016;49:113–124.
  • Lian F, Liu X, Gao M, et al. Effects of Fe-Mn-Ce oxide-modified biochar on As accumulation, morphology, and quality of rice (Oryza sativa L.). Environ Sci Pollut Res. 2020;27:18196–18207.
  • Zhang M, Zhao Q, Xue P, et al. Do Si/As ratios in growth medium affect arsenic uptake, arsenite efflux and translocation of arsenite in rice (Oryza sativa)? Environ Pollut. 2017;229:647–654.
  • Asere TG, Verbeken K, Tessema DA, et al. Adsorption of As(III) versus As(V) from aqueous solutions by cerium-loaded volcanic rocks. Environ Sci Pollut R. 2017;24:20446–20458.
  • Tong S, Deng H, Wang L, et al. Multi-functional nanohybrid of ultrathin molybdenum disulfide nanosheets decorated with cerium oxide nanoparticles for preferential uptake of lead (II) ions. Chem Eng J. 2018;335:22–31.
  • Wang Y, Du Y, Yan J, et al. TiO2 pillared montmorillonite in-situ growth of CeOx/MnOy nanoparticles for effective arsenic (III) adsorption in wastewater. Environ Sci Pollut R. 2020;27:17986–17996.
  • Zhang S, Niu H, Cai Y, et al. Arsenite and arsenate adsorption on coprecipitated bimetal oxide magnetic nanomaterials: MnFe2O4 and CoFe2O4. Chem Eng J. 2010;158:599–607.
  • Gupta K, Bhattacharya S, Nandi D, et al. Arsenic(III) sorption on nanostructured cerium incorporated manganese oxide (NCMO): a physical insight into the mechanistic pathway. J Colloid Interf Sci. 2012;377:269–276.
  • Sun W, Li Q, Gao S, et al. Exceptional arsenic adsorption performance of hydrous cerium oxide nanoparticles: part B. Integration with silica monoliths and dynamic treatment. Chem Eng J. 2012;185–186:136–143.
  • Zhang D, Niu H, Zhang X, et al. Strong adsorption of chlorotetracycline on magnetite nanoparticles. J Hazard Mater. 2011;192:1088–1093.
  • Singh K, Travlou NA, Bashkova S, et al. Nanoporous carbons as gas sensors: exploring the surface sensitivity. Carbon. 2014;80:183–192.
  • Zhang Y, Shang Z, Shen M, et al. Cellulose nanofibers/reduced graphene oxide/polypyrrole aerogel electrodes for high-capacitance flexible all-solid-state supercapacitors. Acs Sustain Chem Eng. 2019;7:11175–11185.
  • Zhang J, Rao Q, Jin B, et al. Cerium oxide embedded bilayer separator enabling fast polysulfide conversion for high-performance lithium-sulfur batteries. Chem Eng J. 2020;388:124120.
  • Lu P, Qiao B, Lu N, et al. Photochemical deposition of highly dispersed Pt nanoparticles on porous CeO2 nanofibers for the water- gas shift reaction. Adv Funct Mater. 2015;25:4153–4162.
  • Zhang Z, Gao D, Xue D, et al. Co and CeO2 co-decorated N-doping carbon nanofibers for rechargeable Zn–air batteries. Nanotechnology. 2019;30:395401–395408.
  • Sordello F, Berruti I, Gionco C, et al. Photocatalytic performances of rare earth element-doped zinc oxide toward pollutant abatement in water and wastewater. Appl Catal B-environ. 2018;18:31206–2.
  • Chen B, Zhu Z, Ma J, et al. Surfactant assisted Ce–Fe mixed oxide decorated multiwalled carbon nanotubes and their arsenic adsorption performance. J Mater Chem A. 2013;1:11355.
  • Gao X, Liu S, Zhang Y, et al. Physicochemical properties of metal-doped activated carbons and relationship with their performance in the removal of SO2 and NO. J Hazard Mater. 2011;188:58–66.
  • Yu Y, Zhang C, Yang L, et al. Cerium oxide modified activated carbon as an efficient and effective adsorbent for rapid uptake of arsenate and arsenite: material development and study of performance and mechanisms. Chem Eng J. 2017a;315:630–638.
  • Liu Y, Sun X, Zhou Z, et al. Electrospun Ce–Ni–O composite nanofibers for highly selective propane detection at high temperature based on its rapid reaction kinetics. J Mater Chem A. 2014;2:14038.
  • Jing M, Zhang X, Fan X, et al. CeO2 embedded electrospun carbon nanofibers as the advanced electrode with high effective surface area for vanadium flow battery. Electrochim Acta. 2016;16:31819–9.
  • Cui Q, Dong X, Wang J, et al. Direct fabrication of cerium oxide hollow nanofibers by electrospinning. J Rare Earth. 2008;26:664–669.
  • Shan C, Dong H, Huang P, et al. Dual-functional millisphere of anion-exchanger-supported nanoceria for synergistic As(III) removal with stoichiometric H2O2: catalytic oxidation and sorption. Chem Eng J. 2018;18:31284–1.
  • Guo H, Li W, Wang H, et al. A study of phosphate adsorption by different temperature treated hydrous cerium oxides. Rare Met. 2011;30:58–62.
  • Li R, Li Q, Gao S, et al. Exceptional arsenic adsorption performance of hydrous cerium oxide nanoparticles: part A. Adsorption capacity and mechanism. Chem Eng J. 2012;185–186:127–135.
  • Wen Z, Lu J, Zhang Y, et al. Facile inverse micelle fabrication of magnetic ordered mesoporous iron cerium bimetal oxides with excellent performance for arsenic removal from water. J Hazard Mater. 2019;383:121172.
  • Li Z, Deng S, Yu G, et al. As(V) and As(III) removal from water by a Ce–Ti oxide adsorbent: behavior and mechanism. Chem Eng J. 2010;161:106–113.
  • Wu B, Lo IMC. Surface functional group engineering of CeO2 particles for enhanced phosphate adsorption. Environ Sci Technol. 2020;54:4601–4608.
  • Yu Y, Zhang C, Yang L, et al. Cerium oxide modified activated carbon as an efficient and effective adsorbent for rapid uptake of arsenate and arsenite: material development and study of performance and mechanisms. Chem Eng J. 2017b;315:630–638.
  • Sharma R, Singh N, Gupta A, et al. Electrospun chitosan – polyvinyl alcohol composite nanofibers loaded with cerium for efficient removal of arsenic from contaminated water. J Mater Chem A. 2014;2:16669–16677.
  • Olivera S, Chaitra K, Venkatesh K, et al. Cerium dioxide and composites for the removal of toxic metal ions. Environ Chem Lett. 2018;16:1233–1246.
  • Bi X, Zeng C, Westerhoff P. Adsorption of arsenic ions transforms surface reactivity of engineered cerium oxide nanoparticles. Environ Sci Technol. 2020;54:9437–9444.
  • Liu X, Gao M, Qiu W, et al. Fe-Mn-Ce oxide-modified biochar composites as efficient adsorbents for removing As(III) from water: adsorption performance and mechanisms. Environ Sci Pollut R. 2019;26:17373–17382.
  • Feng Y, Lu H, Liu Y, et al. Nano-cerium oxide functionalized biochar for phosphate retention: preparation, optimization and rice paddy application. Chemosphere. 2017;185:816–825.
  • Yin Y, Yang X, Zhou X, et al. Water chemistry controlled aggregation and photo-transformation of silver nanoparticles in environmental waters. J Environ Sci. 2015;34:116–125.
  • Zhou Y, Jin Q, Zhu T, et al. Adsorption of chromium (VI) from aqueous solutions by cellulose modified with-CD and quaternary ammonium groups. J Hazard Mater. 2011;187:303–310.
  • Zhou H, Gao B, Zhou Y, et al. Facile preparation of 3D GO/CNCs composite with adsorption performance towards [BMIM][Cl] from aqueous solution. J Hazard Mater. 2017;337:27–33.
  • Zhou Y, Wang X, Zhang M, et al. Removal of Pb(II) and malachite green from aqueous solution by modified cellulose. Cellulose. 2014;21:2797–2809.