Mapeando pesquisas sobre aplicação de partículas magnéticas na remoção de óleo em água: análise de pesquisas entre 2000 e 2018

Autores

  • Willbrynner Pereira Marques Universidade Federal do Espírito Santo campus São Mateus
  • Eduardo Perini Muniz Universidade Federal do Espírito Santo campus São Mateus

DOI:

https://doi.org/10.33448/rsd-v8i1.513

Palavras-chave:

bibliometria; óxido de ferro; remoção de óleo.

Resumo

A demanda por tecnologias que visam tratar efluentes que possuem óleo emulsionado ou acidentes com derramamento de óleo é crescente. Por isso, o uso de nanotecnologias tem sido constantemente abordado a fim de solucionar tais problemas. A magnetita tem sido geralmente usada como substrato magnético devido seu baixo custo e citotoxicidade. A fim de avaliar o andamento das pesquisas que visam utilizar Fe3O4 para remoção de óleo emulsionado, foi realizado uma revisão bibliométrica usando a plataforma Web of Science. Com base nos dados obtidos após o refinamento da pesquisa, observou-se que estudos voltados para essa área são poucos, mas os resultados têm se mostrado promissores.

Referências

CALCAGNILE, Paola et al. Magnetically driven floating foams for the removal of oil contaminants from water. ACS nano, v. 6, n. 6, p. 5413-5419, 2012.

FARD, Ahmad Kayvani et al. Enhancing oil removal from water using ferric oxide nanoparticles doped carbon nanotubes adsorbents. Chemical Engineering Journal, v. 293, p. 90-101, 2016.

FRANCO, Camilo A.; CORTÉS, Farid B.; NASSAR, Nashaat N. Adsorptive removal of oil spill from oil-in-fresh water emulsions by hydrophobic alumina nanoparticles functionalized with petroleum vacuum residue. Journal of colloid and interface science, v. 425, p. 168-177, 2014.

GHOBASHY, Mohamed Mohamady; ELHADY, M. A. Radiation crosslinked magnetized wax (PE/Fe3O4) nano composite for selective oil adsorption. Composites Communications, v. 3, p. 18-22, 2017.

JIANG, Zhe et al. Removal of oil from water using magnetic bicomponent composite nanofibers fabricated by electrospinning. Composites Part B: Engineering, v. 77, p. 311-318, 2015.

KUMAR, Amit et al. SPION/β-cyclodextrin core–shell nanostructures for oil spill remediation and organic pollutant removal from waste water. Chemical Engineering Journal, v. 280, p. 175-187, 2015.

LÜ, Ting et al. Thermosensitive poly (N-isopropylacrylamide)-grafted magnetic nanoparticles for efficient treatment of emulsified oily wastewater. Journal of Alloys and Compounds, v. 688, p. 513-520, 2016.

MIRSHAHGHASSEMI, Seyyedali et al. Application of high gradient magnetic separation for oil remediation using polymer-coated magnetic nanoparticles. Separation and Purification Technology, v. 179, p. 328-334, 2017.

PAVÍA-SANDERS, Adriana et al. Robust magnetic/polymer hybrid nanoparticles designed for crude oil entrapment and recovery in aqueous environments. ACS nano, v. 7, n. 9, p. 7552-7561, 2013.

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REDDY, P. Madhusudhana et al. Robust polymer grafted Fe3O4 nanospheres for benign removal of oil from water. Applied Surface Science, v. 368, p. 27-35, 2016.

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VENGSARKAR, Pranav S.; ROBERTS, Christopher B. Solid-stabilized emulsion formation using stearoyl lactylate coated iron oxide nanoparticles. Journal of Nanoparticle Research, v. 16, n. 10, p. 2627, 2014.

WANG, Haitao et al. Removal of oil droplets from contaminated water using magnetic carbon nanotubes. Water research, v. 47, n. 12, p. 4198-4205, 2013.

YOON, Ki Youl et al. Effect of adsorbed amphiphilic copolymers on the interfacial activity of superparamagnetic nanoclusters and the emulsification of oil in water. Macromolecules, v. 45, n. 12, p. 5157-5166, 2012.

ZADRAŽIL, Aleš; TOKÁROVÁ, Viola; ŠTĚPÁNEK, František. Remotely triggered release from composite hydrogel sponges. Soft Matter, v. 8, n. 6, p. 1811-1816, 2012.

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Publicado

01/01/2019

Como Citar

PEREIRA MARQUES, W.; PERINI MUNIZ, E. Mapeando pesquisas sobre aplicação de partículas magnéticas na remoção de óleo em água: análise de pesquisas entre 2000 e 2018. Research, Society and Development, [S. l.], v. 8, n. 1, p. e781513, 2019. DOI: 10.33448/rsd-v8i1.513. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/513. Acesso em: 24 nov. 2024.

Edição

Seção

Artigos de Revisão