Adsorption Characteristics of Phosphate Based on Al-Doped Waste Ceramsite: Batch and Column Experiments

Phosphorus widely existing in rainfall and wastewater impacts the water environment. In this study, sludge, cement block, and coal fly ash were employed as ceramsite material to synthesize Al-doped waste ceramsite (Al-ceramsite) for removing phosphate (PO -P) from aqueous solutions. Batch static ads...

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Veröffentlicht in:International journal of environmental research and public health 2022-12, Vol.20 (1), p.671
Hauptverfasser: Ma, Yameng, Zhu, Jia, Yu, Jianghua, Fu, Yicheng, Gong, Chao, Huang, Xiao
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Sprache:eng
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Zusammenfassung:Phosphorus widely existing in rainfall and wastewater impacts the water environment. In this study, sludge, cement block, and coal fly ash were employed as ceramsite material to synthesize Al-doped waste ceramsite (Al-ceramsite) for removing phosphate (PO -P) from aqueous solutions. Batch static adsorption-desorption experiments were designed to investigate the effect of various parameters such as Al-ceramsite dosage, PO -P concentration, temperature, initial pH, coexisting ions, and desorbents on the removal of PO -P. Also, the fate of PO -P removal efficiency in actual rainwater was studied through dynamic adsorption column experiments using Al-ceramsite. Results showed that Al-ceramsite could remove PO -P efficiently under the optimum parameters as follows: Al-ceramsite dosage of 40 g/L, initial PO -P concentration of 10 mg/L, temperature of 25 °C, and pH of 5. Besides that, the Al-ceramsite could completely remove PO -P in actual rainwater, and the effluent PO -P concentration was lower than the environmental quality standards for surface water Class Ⅰ (0.02 mg/L). The adsorption characteristics of Al-ceramsite on PO -P by X-ray photoelectron spectroscopy (XPS) were further explained. As a result, ligand exchange and complexation were confirmed as the main PO -P removal mechanism of Al-ceramsite. Thus, Al-ceramsite was prepared from industrial waste and has shown excellent potential for phosphorus removal in practical applications.
ISSN:1660-4601
1661-7827
1660-4601
DOI:10.3390/ijerph20010671