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An integrated approach in a municipal WWTP: anaerobic codigestion of sludge with organic waste and nutrient removal from supernatant

机译:市政污水处理厂的综合方法:污泥与有机废物的厌氧共消化和上清液的营养去除

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Co-digestion appears to be an interesting solution to increase the biogas production of poorly performing under-loaded digesters of waste activated sludge. In the Florence WWTP anaerobic codigestion could increase nitrogen and phosphorus loading rates and thus lower the nutrient removal efficiency. In order to develop an integrated solution to upgrade the Florence WWTP, the different process units were tested in experimental plants. Anaerobic codigestion with source-collected organic solid waste in a pilot-scale bioreactor showed an increase of GPR from 0.15 to 0.45 NI biogas/I/d with 23% of organic waste loaded. Autotrophic nitrogen removal was carried out in two lab-scale pilot plants which were fed with a real anaerobic supernatant after phosphate removal via struvite formation. The nitritation MBBR has been working for one year at steady-state conditions with a perfect nitrite/ammonium ratio equal to 1:1. Anammox biomass enrichment was performed in a suspended biomass SBR and the specific nitrogen removal rate increased from 1.7 to 58gN/kgVSS/d in 375 days.
机译:共消化似乎是增加效率低下的废活性污泥消化器沼气产量的有趣解决方案。在佛罗伦萨的污水处理厂,厌氧共消化会增加氮和磷的负载率,从而降低营养物的去除效率。为了开发升级佛罗伦萨污水处理厂的集成解决方案,在实验工厂中对不同的处理单元进行了测试。在中试规模的生物反应器中,与源收集的有机固体废物进行厌氧共消化表明,载有23%的有机废物时,GPR从0.15 NI / d / d增加到了0.15 NI / gas / I / d。在两个实验室规模的中试工厂中进行自养氮的去除,在通过鸟粪石形成去除磷酸盐后,给它们提供了真正的厌氧上清液。亚硝化MBBR在稳态条件下工作了一年,亚硝酸盐/铵的最佳比例等于1:1。在悬浮的生物质SBR中进行了厌氧生物质的富集,在375天内比氮去除率从1.7增加到58gN / kgVSS / d。

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