首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Enhanced Simultaneous Nitrogen and Phosphorus Removal in A Denitrifying Biological Filter Using Waterworks Sludge Ceramsite Coupled with Iron-Carbon
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Enhanced Simultaneous Nitrogen and Phosphorus Removal in A Denitrifying Biological Filter Using Waterworks Sludge Ceramsite Coupled with Iron-Carbon

机译:自来水厂污泥陶粒与铁-碳联用提高反硝化生物滤池中氮和磷的同时去除率

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摘要

In this study, waterworks sludge ceramsite (WSC) was combined with 3% iron-carbon matrix in a denitrifying biological filter (ICWSC-DNBF) to enhance the simultaneous removal of carbon, nitrogen and phosphorus in secondary effluent of wastewater treatment plant (SE-WTP). The chemical oxygen demand (COD) and nitrogen removal, as well as phosphorus removal and the adsorbed forms of phosphorus were measured and the removal mechanism of these pollutants by the ICWSC-DNBF system for treating SE-WTP were investigated. The results showed that the ICWSC-DNBF achieved good removals of COD, NH4+-N, NO3-N, total N and total P; effluent concentrations were 17.23 mg/L, 3.72 mg/L, 14.32 mg/L, 17.38 mg/L and 0.82 mg/L, respectively. WSC enhanced the P removal due to its high specific surface area and the high number of adsorption sites. Fe-P and Al-P were the main forms of P adsorbed by WSC, accounting for 78.53% of the total adsorbed P. WSC coupled with Fe and C improved the biodegradability of SE-WTP and promoted the removal of organic matter. The removal of N was attributed to the abundant denitrifying microorganisms in the system and the electrochemical effect produced by the internal electrolysis of Fe and C.
机译:在这项研究中,将水厂污泥陶粒(WSC)与3%铁-碳基质结合在反硝化生物滤池(ICWSC-DNBF)中,以增强污水处理厂(SE- WTP)。测量了化学需氧量(COD)和氮的去除量,以及磷的去除量和磷的吸附形式,并研究了ICWSC-DNBF系统处理SE-WTP去除这些污染物的机理。结果表明,ICWSC-DNBF对COD,NH4 + -N,NO3 - -N,总氮和总磷的去除效果良好。废水浓度分别为17.23 mg / L,3.72 mg / L,14.32 mg / L,17.38 mg / L和0.82 mg / L。 WSC由于其高的比表面积和大量的吸附位而提高了P的去除率。 Fe-P和Al-P是WSC吸附P的主要形式,占吸附P的78.53%。WSC与Fe和C的结合提高了SE-WTP的生物降解能力,促进了有机物的去除。 N的去除归因于系统中大量的反硝化微生物以及Fe和C的内部电解产生的电化学效应。

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