Co-adsorption of tetracycline and copper by the thiourea-modified porous sodium alginate microspheres
The gradual increase of antibiotics and heavy metals in aquatic environments poses a serious threat to human health and ecosystems, and finding effective methods for simultaneous removal of antibiotics and heavy metals has attracted increasing concern. In this study, a novel porous structure of thio...
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Published in | Desalination and water treatment Vol. 317; p. 100096 |
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Format | Journal Article |
Language | English |
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01.01.2024
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Abstract | The gradual increase of antibiotics and heavy metals in aquatic environments poses a serious threat to human health and ecosystems, and finding effective methods for simultaneous removal of antibiotics and heavy metals has attracted increasing concern. In this study, a novel porous structure of thiourea-modified sodium alginate microspheres (UA-Ca) was synthesized by modification with thiourea, epichlorohydrin, and calcium chloride, and was applied for the simultaneous removal of tetracycline (TC) and Cu(II) from water. The results indicated that the UA-Ca material with 1:2 mass ratio of thiourea and sodium alginate showed the highest removal of TC and Cu(II) under the reaction condition of pH= 7. The removal process of both TC and Cu(II) follows the pseudo-second-order adsorption model and Langmuir isotherm model. UA-Ca had a high adsorption capacity toward TC and Cu(II) with the maximum value of 1.099 mmol/g and 2.793 mmol/g based on the Langmuir model at 298 K, respectively. Thermodynamical parameters revealed that TC and Cu(II) adsorption is spontaneous with endothermic nature. Competing ionic cations (Ca2+、Mg2+、NH4+) and organics (sulfamethoxazole, hygromycin) had a certain inhibitory effect on the removal of TC and Cu(II) by UA-Ca, whereas the anionic ions (CO32-、PO43-、SO42-) all had little effect on its removal. Fourier transform infrared spectra and X-ray photoelectron spectroscopy analyses showed that the removal of TC and Cu(II) by UA-Ca was mainly due to electrostatic adsorption and surface complexation. This work provides a promising UA-Ca material for the effective removal of TC and Cu(II) in contaminated water. |
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AbstractList | The gradual increase of antibiotics and heavy metals in aquatic environments poses a serious threat to human health and ecosystems, and finding effective methods for simultaneous removal of antibiotics and heavy metals has attracted increasing concern. In this study, a novel porous structure of thiourea-modified sodium alginate microspheres (UA-Ca) was synthesized by modification with thiourea, epichlorohydrin, and calcium chloride, and was applied for the simultaneous removal of tetracycline (TC) and Cu(II) from water. The results indicated that the UA-Ca material with 1:2 mass ratio of thiourea and sodium alginate showed the highest removal of TC and Cu(II) under the reaction condition of pH= 7. The removal process of both TC and Cu(II) follows the pseudo-second-order adsorption model and Langmuir isotherm model. UA-Ca had a high adsorption capacity toward TC and Cu(II) with the maximum value of 1.099 mmol/g and 2.793 mmol/g based on the Langmuir model at 298 K, respectively. Thermodynamical parameters revealed that TC and Cu(II) adsorption is spontaneous with endothermic nature. Competing ionic cations (Ca2+、Mg2+、NH4+) and organics (sulfamethoxazole, hygromycin) had a certain inhibitory effect on the removal of TC and Cu(II) by UA-Ca, whereas the anionic ions (CO32-、PO43-、SO42-) all had little effect on its removal. Fourier transform infrared spectra and X-ray photoelectron spectroscopy analyses showed that the removal of TC and Cu(II) by UA-Ca was mainly due to electrostatic adsorption and surface complexation. This work provides a promising UA-Ca material for the effective removal of TC and Cu(II) in contaminated water. |
ArticleNumber | 100096 |
Author | Wu, Wen-kai Wu, Hong-yan Kong, Qiao-ping Chen, Bo Lian, Jian-jun |
Author_xml | – sequence: 1 givenname: Hong-yan surname: Wu fullname: Wu, Hong-yan organization: College of Hydraulic Engineering, Wanjiang University of Technology, Maanshan 243031, PR China – sequence: 2 givenname: Wen-kai surname: Wu fullname: Wu, Wen-kai organization: College of Energy and Environment, Anhui University of Technology, Maanshan 243002, PR China – sequence: 3 givenname: Bo surname: Chen fullname: Chen, Bo organization: College of Energy and Environment, Anhui University of Technology, Maanshan 243002, PR China – sequence: 4 givenname: Qiao-ping surname: Kong fullname: Kong, Qiao-ping organization: School of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266033, PR China – sequence: 5 givenname: Jian-jun surname: Lian fullname: Lian, Jian-jun email: jjlian85@126.com organization: College of Energy and Environment, Anhui University of Technology, Maanshan 243002, PR China |
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Keywords | Antibiotic Adsorption Influence factor Heavy metals Mechanism |
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