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使用 KMnOFe(II) 调理促进废活性污泥脱水的催化热解耦合,用于制备多功能材料以处理含有复合污染物的地下水。

Catalytic pyrolysis coupling to enhanced dewatering of waste activated sludge using KMnOFe(II) conditioning for preparing multi-functional material to treat groundwater containing combined pollutants.

机构信息

Faculty Materials Science and Chemistry, China University of Geosciences, Wuhan, 430074, Hubei, China.

School of Environment Studies, China University of Geosciences, Wuhan, 430074, Hubei, China.

出版信息

Water Res. 2019 Jul 1;158:424-437. doi: 10.1016/j.watres.2019.04.044. Epub 2019 Apr 25.

DOI:10.1016/j.watres.2019.04.044
PMID:31059937
Abstract

Sewage sludge, the major by-product during the primary treatment and subsequent biotreatment of wastewater, is increasingly generated around the world. KMnOFe(II) consists both oxidation properties of KMnO and flocculation ability by in-situ formed Fe(III) and is widely used in water treatment. In this study, KMnOFe(II) was used as chemical conditioners to synchronously improve sludge dewatering performance and catalyze the biomass pyrolysis of waste activated sludge for preparing multi-functional material to remedy arsenic containing groundwater. The results showed that the sludge dewaterability was significantly improved due to the moderate pre-oxidation of extracellular polymeric substances by KMnO, and then the sludge particles were re-flocculated by Fe(III) generated from KMnOFe(II). The conditioned sludge cake was then utilized for preparing sludge-based carbon (Fe-Mn-SBC) which was systematically characterized. The surface area of Fe-Mn-SBC was characteristic of high surface area (100.08 m/g) which had a great adsorption capacity on arsenic. Besides, Fe-Mn-SBC could effectively oxidize As(III) to As(V), and addition of low dose of HO can further improve total arsenic removal due to catalytic peroxidation of Fe-Mn-SBC. Besides, it was found that the presence of humic acid could inhibit the hydroxy iron formation and compete for the active adsorption sites and then resulted in the decrease in arsenic removal, and the co-existing humic acid could also be removed by adsorption of Fe-Mn-SBC. This work proposed a novel sludge treatment process by combining enhanced sludge dewatering with catalytic pyrolysis for preparing multi-functional materials, and they are promising in treatment of water containing combined pollutants.

摘要

污水污泥是废水一级处理和后续生物处理过程中的主要副产品,在全球范围内日益增多。KMnOFe(II) 同时具有 KMnO 的氧化性能和通过原位生成的 Fe(III) 的絮凝能力,广泛应用于水处理中。在本研究中,KMnOFe(II) 被用作化学调节剂,以同步提高污泥脱水性能并催化废活性污泥的生物质热解,以制备多功能材料来修复含砷地下水。结果表明,由于 KMnO 对细胞外聚合物的适度预氧化,污泥脱水性能得到显著改善,然后由 KMnOFe(II 生成的 Fe(III) 重新絮凝污泥颗粒。然后将调理后的污泥饼用于制备污泥基碳(Fe-Mn-SBC),并对其进行了系统的表征。Fe-Mn-SBC 的比表面积具有高表面积(100.08 m/g)的特点,对砷具有很强的吸附能力。此外,Fe-Mn-SBC 可以有效地将 As(III)氧化为 As(V),并且添加低剂量的 HO 可以通过 Fe-Mn-SBC 的催化过氧化物进一步提高总砷去除率。此外,还发现腐殖酸的存在会抑制羟基铁的形成并与活性吸附位竞争,从而导致砷去除率降低,而共存的腐殖酸也可以通过 Fe-Mn-SBC 的吸附去除。本工作提出了一种通过结合强化污泥脱水和催化热解制备多功能材料来处理污泥的新工艺,它们在处理含有复合污染物的水中具有广阔的应用前景。

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