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厌氧发酵结合硫酸盐还原同步释放废活性污泥中的多磷酸盐和铁磷酸盐。

Simultaneous release of polyphosphate and iron-phosphate from waste activated sludge by anaerobic fermentation combined with sulfate reduction.

机构信息

School of Environmental and Chemical Engineering, Shanghai University, 333 Nanchen Road, Shanghai 200444, China.

School of Environmental and Chemical Engineering, Shanghai University, 333 Nanchen Road, Shanghai 200444, China.

出版信息

Bioresour Technol. 2019 Jan;271:182-189. doi: 10.1016/j.biortech.2018.09.117. Epub 2018 Sep 22.

Abstract

Iron is widely used in sewage treatment systems and enriched into waste activated sludge (WAS), which is difficult and challenging to phosphorus (P) release and recovery. This study investigated simultaneous release performance of polyphosphate and iron-phosphate from iron-rich sludge via anaerobic fermentation combined with sulfate reduction (AF-SR) system. Batch tests were performed, with results showing that AF-SR system conducted a positive effect due to the relatively low solubility of ferrous sulfide in comparison with ferric phosphate precipitates. Simulation study was performed to investigate the total P release potential from actual waste activated sludge, finding that about 70% of the total P could release with the optimized pH of 7.0-8.0 and the theoretical S/Fe molar ratio of 1.0. A potential new blueprint of a wastewater treatment plant based on AF-SR system, towards P, N recovery and Fe, S, C recycle, was finally proposed.

摘要

铁广泛应用于污水处理系统,并富集到废活性污泥(WAS)中,这使得磷(P)的释放和回收变得困难和具有挑战性。本研究通过厌氧发酵结合硫酸盐还原(AF-SR)系统,考察了富铁污泥中多磷酸盐和铁磷酸盐的同时释放性能。进行了批量测试,结果表明,由于二价铁硫化物的溶解度相对较低,与铁磷酸盐沉淀相比,AF-SR 系统具有积极的效果。还进行了模拟研究,以研究实际废活性污泥中总磷释放的潜力,发现优化的 pH 值为 7.0-8.0 和理论 S/Fe 摩尔比为 1.0 时,约 70%的总磷可以释放。最后,提出了一种基于 AF-SR 系统的、针对磷、氮回收以及铁、硫、碳循环的新型废水处理厂蓝图。

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