Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical Investigation
Poly(acrylic acid/Kryptofix 23-Dimethacrylate) superabsorbent polymer [P (AA/Kry23-DM) SAP] was synthesized by solution polymerization to remove Co, Ni, Cu, Cd, Mn, Zn, Pb, Cr, and Fe ions in water and improve the quality of the water. Kry23-DM cross-linker (1,4,7,13,16-Pentaoxa-10,19 diazo cyclohex...
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doaj-fda95a2542e841c49bf1b44f748e07712020-11-25T03:57:27ZengMDPI AGMaterials1996-19442020-10-01134390439010.3390/ma13194390Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical InvestigationSevil Savaskan Yilmaz0Nuri Yildirim1Murat Misir2Yasin Misirlioglu3Emre Celik4Department of Chemistry, Faculty of Sciences, Karadeniz Technical University, University Avanue, 61080 Trabzon, TurkeyDepartment of Chemistry, Faculty of Sciences, Karadeniz Technical University, University Avanue, 61080 Trabzon, TurkeyFaculty of Engineering and Architecture, Ahi Evran University, 40100 Kırşehir, TurkeyFaculty of Engineering and Architecture, Ahi Evran University, 40100 Kırşehir, TurkeyDepartment of Chemistry, Faculty of Sciences, Karadeniz Technical University, University Avanue, 61080 Trabzon, TurkeyPoly(acrylic acid/Kryptofix 23-Dimethacrylate) superabsorbent polymer [P (AA/Kry23-DM) SAP] was synthesized by solution polymerization to remove Co, Ni, Cu, Cd, Mn, Zn, Pb, Cr, and Fe ions in water and improve the quality of the water. Kry23-DM cross-linker (1,4,7,13,16-Pentaoxa-10,19 diazo cyclohexene icosane di methacrylate) was synthesized using Kry23 and methacryloyl chloride. The characterization of the molecules was done by FTIR, TGA, DSC, and SEM techniques. The effects of parameters such as pH, concentration, and the metal ion interaction on the heavy metal ions uptaking of SAP was investigated. It was observed that P (AA/Kry23-DM) SAP has maximum water absorption, and the absorption increases with the pH increase. Adsorption rates and sorption capacity, desorption ratios, competitive sorption (q<sub>cs</sub>), and distribution coefficient (log D) of P(AA/Kry23-DM) SAP were studied as a function of time and pH with the heavy metal ion concentration. Langmuir and Freundlich isotherms of the P (AA/Kry23-DM) SAP were investigated to verify the metal uptake. Molecular mechanic (MM2), Assisted Model Building with Energy Refinement (AMBER), and optimized potentials for liquid simulations (OPLS) methods. were used in quantum chemical calculations for the conformational analysis of the cross-linker and the SAP. ΔH<sup>0</sup><sub>f</sub> calculations of the cross-linker and the superabsorbent were made using Austin Model 1(AM1) method.https://www.mdpi.com/1996-1944/13/19/4390polyacrylic acid superabsorbent polymer (PAA SAP)sorption capacityswelling ratiodistribution ratioLangmuir and Freundlich isothermsconformational analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sevil Savaskan Yilmaz Nuri Yildirim Murat Misir Yasin Misirlioglu Emre Celik |
spellingShingle |
Sevil Savaskan Yilmaz Nuri Yildirim Murat Misir Yasin Misirlioglu Emre Celik Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical Investigation Materials polyacrylic acid superabsorbent polymer (PAA SAP) sorption capacity swelling ratio distribution ratio Langmuir and Freundlich isotherms conformational analysis |
author_facet |
Sevil Savaskan Yilmaz Nuri Yildirim Murat Misir Yasin Misirlioglu Emre Celik |
author_sort |
Sevil Savaskan Yilmaz |
title |
Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical Investigation |
title_short |
Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical Investigation |
title_full |
Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical Investigation |
title_fullStr |
Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical Investigation |
title_full_unstemmed |
Synthesis, Characterization of a New Polyacrylic Acid Superabsorbent, Some Heavy Metal Ion Sorption, the Adsorption Isotherms, and Quantum Chemical Investigation |
title_sort |
synthesis, characterization of a new polyacrylic acid superabsorbent, some heavy metal ion sorption, the adsorption isotherms, and quantum chemical investigation |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2020-10-01 |
description |
Poly(acrylic acid/Kryptofix 23-Dimethacrylate) superabsorbent polymer [P (AA/Kry23-DM) SAP] was synthesized by solution polymerization to remove Co, Ni, Cu, Cd, Mn, Zn, Pb, Cr, and Fe ions in water and improve the quality of the water. Kry23-DM cross-linker (1,4,7,13,16-Pentaoxa-10,19 diazo cyclohexene icosane di methacrylate) was synthesized using Kry23 and methacryloyl chloride. The characterization of the molecules was done by FTIR, TGA, DSC, and SEM techniques. The effects of parameters such as pH, concentration, and the metal ion interaction on the heavy metal ions uptaking of SAP was investigated. It was observed that P (AA/Kry23-DM) SAP has maximum water absorption, and the absorption increases with the pH increase. Adsorption rates and sorption capacity, desorption ratios, competitive sorption (q<sub>cs</sub>), and distribution coefficient (log D) of P(AA/Kry23-DM) SAP were studied as a function of time and pH with the heavy metal ion concentration. Langmuir and Freundlich isotherms of the P (AA/Kry23-DM) SAP were investigated to verify the metal uptake. Molecular mechanic (MM2), Assisted Model Building with Energy Refinement (AMBER), and optimized potentials for liquid simulations (OPLS) methods. were used in quantum chemical calculations for the conformational analysis of the cross-linker and the SAP. ΔH<sup>0</sup><sub>f</sub> calculations of the cross-linker and the superabsorbent were made using Austin Model 1(AM1) method. |
topic |
polyacrylic acid superabsorbent polymer (PAA SAP) sorption capacity swelling ratio distribution ratio Langmuir and Freundlich isotherms conformational analysis |
url |
https://www.mdpi.com/1996-1944/13/19/4390 |
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