Film based on magnesium impregnated biochar/cellulose acetate for phosphorus adsorption from aqueous solutionElectronic supplementary information (ESI) available. See DOI: 10.1039/c8ra06655h
Phosphorus (P) is a nutrient necessary for agricultural production and a potential originator for eutrophication in water bodies, resulting in qualitative changes; it may also affect the aquatic ecosystem and human health. In addition, as a finite resource, the importance of studying strategies to r...
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Format | Journal Article |
Language | English |
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14.02.2019
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Abstract | Phosphorus (P) is a nutrient necessary for agricultural production and a potential originator for eutrophication in water bodies, resulting in qualitative changes; it may also affect the aquatic ecosystem and human health. In addition, as a finite resource, the importance of studying strategies to remove it from water is evident, thus making possible its recycling. Many studies have used powdered materials, including biochars, for P water decontamination; however, the difficulty of separating and collecting these materials from water after adsorption may be difficult. Therefore, using hybrid materials in which the fine particles (powder) are impregnated into larger, solid particles by means of a polymeric host can facilitate collection and reuse after P adsorption. In this context, this study aimed the synthesis and characterization of a new hybrid film formed by the biopolymer cellulose acetate (CA) and biochar (FAC-B) for P adsorption in aqueous solution. We obtained biochar from the pyrolysis of carrot residue (
Daucus carota
L.) and doped it with magnesium. As a biodegradable polymer and the most abundant natural polysaccharide in the environment, using CA as a biochar support material is an environmentally friendly alternative. We prepared the CA film with the casting method, and the biochar was inserted into the filmogenic solution in the same amount as the CA. The film was characterized by X-ray diffraction (XRD), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), molecular absorption spectroscopy in the infrared region with an attenuated total reflectance (FTIR/ATR) accessory, and X-ray Photoelectron Spectroscopy (XPS). We evaluated the thickness, weight, density, H
2
O uptake and H
2
O solubility of the produced FAC-B. The maximum adsorption capacity of P by FAC-B was 21.57 mg g
−1
, in agreement with the Langmuir isotherm model. The adsorption value suggests that the film has the potential to be used as an efficient P adsorbent in water.
New hybrid film formed by biopolymer cellulose acetate and biochar for P adsorption in aqueous solution. |
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AbstractList | Phosphorus (P) is a nutrient necessary for agricultural production and a potential originator for eutrophication in water bodies, resulting in qualitative changes; it may also affect the aquatic ecosystem and human health. In addition, as a finite resource, the importance of studying strategies to remove it from water is evident, thus making possible its recycling. Many studies have used powdered materials, including biochars, for P water decontamination; however, the difficulty of separating and collecting these materials from water after adsorption may be difficult. Therefore, using hybrid materials in which the fine particles (powder) are impregnated into larger, solid particles by means of a polymeric host can facilitate collection and reuse after P adsorption. In this context, this study aimed the synthesis and characterization of a new hybrid film formed by the biopolymer cellulose acetate (CA) and biochar (FAC-B) for P adsorption in aqueous solution. We obtained biochar from the pyrolysis of carrot residue (
Daucus carota
L.) and doped it with magnesium. As a biodegradable polymer and the most abundant natural polysaccharide in the environment, using CA as a biochar support material is an environmentally friendly alternative. We prepared the CA film with the casting method, and the biochar was inserted into the filmogenic solution in the same amount as the CA. The film was characterized by X-ray diffraction (XRD), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), molecular absorption spectroscopy in the infrared region with an attenuated total reflectance (FTIR/ATR) accessory, and X-ray Photoelectron Spectroscopy (XPS). We evaluated the thickness, weight, density, H
2
O uptake and H
2
O solubility of the produced FAC-B. The maximum adsorption capacity of P by FAC-B was 21.57 mg g
−1
, in agreement with the Langmuir isotherm model. The adsorption value suggests that the film has the potential to be used as an efficient P adsorbent in water.
New hybrid film formed by biopolymer cellulose acetate and biochar for P adsorption in aqueous solution. |
Author | de Carvalho Eufrásio Pinto, Marina David da Silva, Demetrius Fialho e Moraes, Allan Robledo Tronto, Jairo Ferreira de Novais, Roberto Amorim Gomes, Ana Luiza Pinto, Frederico Garcia Leite, Victor dos Santos Azevedo |
AuthorAffiliation | Federal University of Viçosa Campus Universitário Department of Agricultural Engineering Institute of Exact Science Campus de Rio Paranaíba Institute of Agrarian Science |
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Author_xml | – sequence: 1 givenname: Marina surname: de Carvalho Eufrásio Pinto fullname: de Carvalho Eufrásio Pinto, Marina – sequence: 2 givenname: Demetrius surname: David da Silva fullname: David da Silva, Demetrius – sequence: 3 givenname: Ana Luiza surname: Amorim Gomes fullname: Amorim Gomes, Ana Luiza – sequence: 4 givenname: Victor dos Santos Azevedo surname: Leite fullname: Leite, Victor dos Santos Azevedo – sequence: 5 givenname: Allan Robledo surname: Fialho e Moraes fullname: Fialho e Moraes, Allan Robledo – sequence: 6 givenname: Roberto surname: Ferreira de Novais fullname: Ferreira de Novais, Roberto – sequence: 7 givenname: Jairo surname: Tronto fullname: Tronto, Jairo – sequence: 8 givenname: Frederico Garcia surname: Pinto fullname: Pinto, Frederico Garcia |
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Snippet | Phosphorus (P) is a nutrient necessary for agricultural production and a potential originator for eutrophication in water bodies, resulting in qualitative... |
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Title | Film based on magnesium impregnated biochar/cellulose acetate for phosphorus adsorption from aqueous solutionElectronic supplementary information (ESI) available. See DOI: 10.1039/c8ra06655h |
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