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利用酸处理过的镁渣颗粒增强除磷效果。

Enhanced phosphorus removal using acid-treated magnesium slag particles.

机构信息

Basin Water Environmental Research Department, Changjiang River Scientific Research Institute, Wuhan, 430010, China.

Key Laboratory of Basin Water Resource and Eco-Environmental Science in Hubei Province, Wuhan, 430010, China.

出版信息

Environ Sci Pollut Res Int. 2018 Feb;25(4):3860-3871. doi: 10.1007/s11356-017-0781-9. Epub 2017 Nov 25.

Abstract

Magnesium-enriched magnesium slag particles (MSPs) can be used as an adsorption substrate as well as the magnesium source for struvite precipitation. In this study, an HCl treatment was used to enhance MSPs for phosphorus removal. After soaking in 1 mol/L HCl, an 11.27% decrease in median diameter (D50) and a 6.73% increase in specific surface area were observed when compared with the original MSPs. The improvement of the MSP surface properties resulted in 188.96 mg/kg increase in the PO adsorption capacity. Irrespective of HCl treatment, the phosphorus adsorption process followed the Dubinin-Radushkevich (D-R) model much more accurately than the Langmuir and Freundlich equations with correlation coefficients higher than 0.94. The adsorption free energy obtained through the D-R model revealed a 9.75% decrease after HCl treatment. Sequential fraction extraction results indicated that 96% of the Mg released from the HCl-treated MSPs came from acid-soluble magnesium (exchangeable and carbonate-bound). Mg obtained from HCl-treated solutions provided a reliable magnesium source for struvite precipitation. The PO removal rate can reach 53.63% with the optimal pH value of 10.0 and molar ratio of NH to PO of 1:1. Struvite precipitation and adsorption can simultaneously occur in HCl-treated MSP solution. It contributed 63.19% to the overall PO removal and is a major contributor compared with adsorption. Thus, HCl treatment greatly enhanced the potential of MSPs for phosphorus removal due to an improved adsorption capacity and is a reliable Mg source for struvite precipitation.

摘要

富含镁的镁渣颗粒 (MSPs) 可用作吸附基质以及鸟粪石沉淀的镁源。在这项研究中,采用 HCl 处理来增强 MSPs 以去除磷。与原始 MSPs 相比,在 1 mol/L HCl 中浸泡后,中值粒径 (D50) 降低了 11.27%,比表面积增加了 6.73%。MSP 表面性质的改善导致 PO 吸附容量增加了 188.96 mg/kg。无论是否经过 HCl 处理,磷吸附过程都更符合 Dubinin-Radushkevich (D-R) 模型,与 Langmuir 和 Freundlich 方程相比,相关系数均高于 0.94。通过 D-R 模型获得的吸附自由能在 HCl 处理后降低了 9.75%。连续分级提取结果表明,HCl 处理后的 MSP 中释放的镁有 96%来自酸溶性镁(可交换和碳酸盐结合)。从 HCl 处理的溶液中获得的镁为鸟粪石沉淀提供了可靠的镁源。在最佳 pH 值为 10.0 和 NH 4 +与 PO 4 3-的摩尔比为 1:1 时,PO 4 3-去除率可达 53.63%。在 HCl 处理的 MSP 溶液中可以同时发生鸟粪石沉淀和吸附。它对总 PO 4 3-去除率的贡献为 63.19%,与吸附相比是一个主要贡献因素。因此,HCl 处理由于吸附能力的提高极大地增强了 MSPs 去除磷的潜力,并且是鸟粪石沉淀的可靠镁源。

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