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一种新颖的过氧化钙/凹凸棒石-Fe(II)工艺用于高浓度磷酸盐的去除和回收:效率和机制。

A novel calcium peroxide/attapulgite-Fe(II) process for high concentration phosphate removal and recovery: Efficiency and mechanism.

机构信息

School of Environmental Engineering, Wuhan Textile University, Wuhan 430200, China.

School of Environmental Engineering, Wuhan Textile University, Wuhan 430200, China; State Key Laboratory of New Textile Materials and Advanced Processing Technologies, Wuhan Textile University, Wuhan 430200, China; Engineering Research Center of Ministry of Education for Clean Production of Textile Dyeing and Printing, Wuhan Textile University, Wuhan 430200, China.

出版信息

J Environ Manage. 2023 Oct 1;343:118166. doi: 10.1016/j.jenvman.2023.118166. Epub 2023 May 23.

Abstract

Phosphorus (P) has been overused in livestock farming, which inevitably results in high-concentration P-containing wastewater. Managing total phosphorus discharge is important to prevent eutrophication in aquatic environments, thus it is critical to develop new technologies for the removal and recovery of high-concentration phosphate. In this study, a novel calcium peroxide/attapulgite (CP/ATP) composite was developed and coupled with Fe(II) for high-concentration phosphate removal and recovery. The results demonstrated that the optimal dosage of the CP/ATP-Fe(II) process was CP/ATP = 0.25 g/L and Fe(II) = 2 mM. The pH effect on phosphate removal was minimal, while phosphate removal efficiency rose by 16.7% with the temperature increased from 10 °C to 25 °C. The co-existing ions exhibited little effect on phosphate removal, and the CP/ATP-Fe(II) process showed effective phosphate removal from the real piggery wastewater. The P content of the precipitates after phosphate removal by this process was as high as 25.82%, indicating its good potential for P recycling. A significant synergistic effect existed in CP/ATP and Fe(II) for phosphate removal, and the SEM-EDS, XRD, Raman and XPS characterization exhibited that the phosphate removal mainly relied on the in-situ-formed Fe(III) and the participation of calcium (Ca) species. Co-precipitation was the predominant mechanism for phosphate removal, and the proportions of Fe(III)-P, Ca-P and Ca-Fe(III)-P in the precipitates were 51.5%, 31.2% and 17.3%, respectively. This study provides a highly efficient process for phosphate removal and recovery from wastewater, and insights into interactions among phosphorus, iron and calcium.

摘要

磷(P)在畜牧业中被过度使用,这不可避免地导致了高浓度含磷废水的产生。管理总磷排放量对于防止水环境污染的富营养化至关重要,因此开发新的技术来去除和回收高浓度磷酸盐是至关重要的。在本研究中,开发了一种新型的过氧化钙/凹凸棒石(CP/ATP)复合材料,并与 Fe(II) 结合用于高浓度磷酸盐的去除和回收。结果表明,CP/ATP-Fe(II) 工艺的最佳投加量为 CP/ATP=0.25g/L 和 Fe(II)=2mM。pH 值对磷酸盐去除的影响最小,而当温度从 10°C 升高到 25°C 时,磷酸盐去除效率提高了 16.7%。共存离子对磷酸盐去除的影响很小,CP/ATP-Fe(II) 工艺对实际猪场废水中的磷酸盐具有有效的去除效果。该工艺去除磷酸盐后沉淀中的 P 含量高达 25.82%,表明其具有良好的磷回收潜力。CP/ATP 和 Fe(II) 对磷酸盐去除具有显著的协同作用,SEM-EDS、XRD、拉曼和 XPS 表征表明,磷酸盐去除主要依赖于原位形成的 Fe(III)和钙(Ca)物质的参与。共沉淀是磷酸盐去除的主要机制,沉淀中 Fe(III)-P、Ca-P 和 Ca-Fe(III)-P 的比例分别为 51.5%、31.2%和 17.3%。本研究为从废水中高效去除和回收磷酸盐提供了一种工艺,并深入了解了磷、铁和钙之间的相互作用。

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