Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2

Glyphosate is a typical dissolved organic phosphorus that can cause adverse effects on plants, animals, and humans. Modified shell powder/Ce-N-TiO2 was synthesized by high-temperature doping, and the prepared modified shell powder/Ce-N-TiO2 was characterized and used response surface methodology to...

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Main Authors: Zhang Wei, Liang Zhe, Lin Hai, Shu Jinkai, Wang Aihe
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/17/e3sconf_eregce2022_01016.pdf
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author Zhang Wei
Liang Zhe
Lin Hai
Shu Jinkai
Wang Aihe
author_facet Zhang Wei
Liang Zhe
Lin Hai
Shu Jinkai
Wang Aihe
author_sort Zhang Wei
collection DOAJ
description Glyphosate is a typical dissolved organic phosphorus that can cause adverse effects on plants, animals, and humans. Modified shell powder/Ce-N-TiO2 was synthesized by high-temperature doping, and the prepared modified shell powder/Ce-N-TiO2 was characterized and used response surface methodology to find out the optimum condition for adsorption removal rate. The zeta characterization indicates that the doping of Ce shifts the isotropic potential of the material to the right. The FT-IR and XPS characterization indicated that glyphosate was successfully adsorbed, and the two-two interactions of pH, contact time and dosing amount had a more obvious effect on adsorption by response surface analysis. The process of glyphosate adsorption by modified shell powder/Ce-N-TiO2 was consistent with the quasi-secondary kinetic model and Langmuir model, and the maximum adsorption amount was 66.98 mg/g. The above results may be useful for the study of other systems of glyphosate wastewater treatment.
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spelling doaj.art-0e82cb5aac65447bba1f794d96a52c4c2022-12-22T02:52:53ZengEDP SciencesE3S Web of Conferences2267-12422022-01-013500101610.1051/e3sconf/202235001016e3sconf_eregce2022_01016Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2Zhang Wei0Liang Zhe1Lin Hai2Shu Jinkai3Wang Aihe4Hunan City University, College of Municipal and Geomatics EngineeringShenyang Jianzhu University, College of Municipal and Environmental EngineeringYiyang Commodity Quality Supervision and Inspection InstituteHunan City University, College of Municipal and Geomatics EngineeringHunan City University, College of Municipal and Geomatics EngineeringGlyphosate is a typical dissolved organic phosphorus that can cause adverse effects on plants, animals, and humans. Modified shell powder/Ce-N-TiO2 was synthesized by high-temperature doping, and the prepared modified shell powder/Ce-N-TiO2 was characterized and used response surface methodology to find out the optimum condition for adsorption removal rate. The zeta characterization indicates that the doping of Ce shifts the isotropic potential of the material to the right. The FT-IR and XPS characterization indicated that glyphosate was successfully adsorbed, and the two-two interactions of pH, contact time and dosing amount had a more obvious effect on adsorption by response surface analysis. The process of glyphosate adsorption by modified shell powder/Ce-N-TiO2 was consistent with the quasi-secondary kinetic model and Langmuir model, and the maximum adsorption amount was 66.98 mg/g. The above results may be useful for the study of other systems of glyphosate wastewater treatment.https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/17/e3sconf_eregce2022_01016.pdf
spellingShingle Zhang Wei
Liang Zhe
Lin Hai
Shu Jinkai
Wang Aihe
Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2
E3S Web of Conferences
title Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2
title_full Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2
title_fullStr Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2
title_full_unstemmed Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2
title_short Adsorption Performance of Glyphosate on Modified Shell Powder/Ce-N-Tio2
title_sort adsorption performance of glyphosate on modified shell powder ce n tio2
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/17/e3sconf_eregce2022_01016.pdf
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