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采用柱式过滤系统的含氧化铁钢渣去除废水中磷酸盐的效率和机理。

Efficiencies and mechanisms of steel slag with ferric oxides for removing phosphate from wastewater using a column filter system.

机构信息

Micro-pollutant Research Centre (MPRC), Department of Civil Engineering, Faculty of Civil Engineering and Built Environment, Universiti Tun Hussein Onn Malaysia, 86400 Parit Raja, Batu Pahat, Johor, Malaysia.

出版信息

Environ Sci Pollut Res Int. 2020 Oct;27(28):35184-35194. doi: 10.1007/s11356-020-09582-7. Epub 2020 Jun 25.

Abstract

The current study aimed to investigate the efficiencies and mechanisms of slag filter media for removing phosphorus from synthetic wastewater. The steel slag with high ferric oxides (FeO) was subjected for the electric arc furnace (EAF) and selected as the filter media (HFe). The chemical characteristics of HFe were determined using pH, point of zero charge (PZC) and XRF. The phosphorus removal efficiency was studied in a designed vertical steel slag column rock filters in unaerated HFe (UEF) and aerated HFe (AEF) system. The microstructure of HFe was analyzed by FTIR, XRD and SEM-EDX analysis. The results of XRF revealed that ferric oxide (FeO) ranged from 26.1 to 38.2%. PZC for Filter HFe was recorded at pH 10.55 ± 0.27. The highest efficiencies were recorded by UEF and AEF systems at pH 3 and pH 5 (89.97 ± 4.02% and 79.95 ± 6.25% at pH 3 and 72.97 ± 8.38% and 66.00 ± 12.85% at pH 5 for UEF and AEF, respectively). These findings indicated that AEF exhibiting higher removal than UEF systems might be due to presence high Fe concentration in AEF which play important role in the phosphorus removal. The main elements available on the surface of HFe included carbon, oxygen, iron, calcium, magnesium, silicon, platinum, sulphur, manganese, titanium and aluminium. The XRD analysis indicated that the precipitation of orthophosphate as calcium and iron-phosphates was the removal mechanism as confirmed using FT-IR analysis. These findings demonstrated the efficiency of HFe in removing of phosphorus from wastewater.

摘要

本研究旨在探讨炉渣过滤介质去除合成废水中磷的效率和机制。采用高氧化铁(FeO)的炼钢炉渣进行电弧炉(EAF)处理,并选择作为过滤介质(HFe)。使用 pH 值、零电荷点(PZC)和 XRF 确定 HFe 的化学特性。在未充气 HFe(UEF)和充气 HFe(AEF)系统中设计的垂直钢渣柱岩滤器中研究了磷的去除效率。通过 FTIR、XRD 和 SEM-EDX 分析对 HFe 的微观结构进行了分析。XRF 的结果表明,氧化铁(FeO)的范围为 26.1 至 38.2%。过滤 HFe 的 PZC 记录在 pH 10.55 ± 0.27。UEF 和 AEF 系统在 pH 3 和 pH 5 时记录到最高效率(pH 3 时分别为 89.97 ± 4.02%和 79.95 ± 6.25%,pH 5 时分别为 72.97 ± 8.38%和 66.00 ± 12.85%)。这些发现表明,AEF 系统的去除率高于 UEF 系统,可能是由于 AEF 中存在高浓度的铁,铁在磷的去除中发挥了重要作用。HFe 表面上的主要元素包括碳、氧、铁、钙、镁、硅、铂、硫、锰、钛和铝。XRD 分析表明,正磷酸盐作为钙和铁磷酸盐的沉淀是去除机制,这一结论通过 FT-IR 分析得到了证实。这些发现证明了 HFe 从废水中去除磷的效率。

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