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鸟粪石结晶过程中废水中钙磷和镁磷产物对重金属的竞争吸附

Competitive adsorption of heavy metals between Ca-P and Mg-P products from wastewater during struvite crystallization.

作者信息

Wang Yazhou, Da Jinrong, Deng Yuxuan, Wang Rui, Liu Xiaoning, Chang Jianbo

机构信息

State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan, 430072, China; School of Water Resources and Hydropower Engineering, Wuhan University, Wuhan, 430072, China.

China Railway SiYuan Survey and Design Group Corporation Limited, Wuhan, 430070, China.

出版信息

J Environ Manage. 2023 Jun 1;335:117552. doi: 10.1016/j.jenvman.2023.117552. Epub 2023 Feb 26.

Abstract

Wastewater usually contains high concentration of calcium (Ca), posing a competitive reaction with magnesium (Mg) on phosphorus (P) recovery during the struvite crystallization. The differences in the adsorption of heavy metals by Ca-P and Mg-P (struvite) generated are still unclear. Herein, we analyzed the residues of four kinds of common heavy metals (Cu, Zn, Cd, Pb) in Ca-P and Mg-P (struvite) under varying conditions (solution pH, N/P ratio, Mg/Ca ratio) in the swine wastewater and explored their possible competitive adsorption mechanisms. The experiments using synthetic wastewater and real wastewater have similar experimental patterns. However, under the same conditions, the metal (Pb) content of struvite recovered from the synthetic wastewater (16.58 mg/g) was higher than that of the real wastewater (11.02 mg/g), as predicted by the Box-Behnken Design of Response Surface Methodology (BBD-RSM). The results demonstrated that Cu was the least abundant in the precipitates compared to Zn, Cd, and Pb of almost all experimental groups with an N/P ratio greater than or equal to 10. The fact might be mainly attributed to the its stronger binding capacity of Cu ion with NH and other ligands. Compared with struvite, the Ca-P product had a higher adsorption capacity for heavy metals and a lower P recovery rate. In addition, the higher solution pH and N/P ratio were favorable to obtain qualified struvite with lower heavy metal content. It can be applied to reduce the incorporation of heavy metals by modulating pH and N/P ratio through RSM, which is suitable for different Mg/Ca ratios. It is anticipated that the results obtained would offer support for the safe utility of struvite from wastewater containing Ca and heavy metals.

摘要

废水通常含有高浓度的钙(Ca),在鸟粪石结晶过程中,钙会与镁(Mg)在磷(P)回收方面发生竞争反应。钙磷(Ca-P)和镁磷(鸟粪石)对重金属的吸附差异仍不明确。在此,我们分析了猪废水中不同条件(溶液pH值、氮磷比、镁钙比)下钙磷(Ca-P)和镁磷(鸟粪石)中四种常见重金属(铜、锌、镉、铅)的残留情况,并探讨了它们可能的竞争吸附机制。使用合成废水和实际废水进行的实验具有相似的实验模式。然而,在相同条件下,根据响应曲面法的Box-Behnken设计(BBD-RSM)预测,从合成废水中回收的鸟粪石的金属(铅)含量(16.58毫克/克)高于实际废水(11.02毫克/克)。结果表明,在几乎所有氮磷比大于或等于10的实验组中,与锌、镉和铅相比,沉淀物中铜的含量最少。这一事实可能主要归因于铜离子与氨及其他配体的结合能力更强。与鸟粪石相比,钙磷产物对重金属的吸附能力更高,磷回收率更低。此外,较高的溶液pH值和氮磷比有利于获得重金属含量较低的合格鸟粪石。通过响应曲面法调节pH值和氮磷比可用于减少重金属的掺入,这适用于不同的镁钙比。预计所获得的结果将为含Ca和重金属废水的鸟粪石安全利用提供支持。

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