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首页> 外文期刊>Biochemical Engineering Journal >Performance of a successive hydrolysis, denitrifkation and nitrification system for simultaneous removal of COD and nitrogen from terramycin production wastewater
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Performance of a successive hydrolysis, denitrifkation and nitrification system for simultaneous removal of COD and nitrogen from terramycin production wastewater

机译:连续水解,反硝化和硝化系统可同时从土霉素生产废水中去除COD和氮的性能

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摘要

A bench-scale continuous flow system, consisting successively of an anaerobic hydrolysis column (column A), an anoxic column (column D) and two aerobic columns (columns B and F), was constructed to remove nitrogen and carbon simultaneously from terramycin crystallization mother solution (TCMS). Columns A and D were sludge-bed reactors, and columns B and F were biofilm reactors packed with polyethylene balls and soft fibers hung on plastic rings, respectively. Approximately 82% of the chemical oxygen demand (COD) and 81% total nitrogen were removed by the system when tap water diluted TCMS was continuously fed (dilution ratio, 1:4). Sulfide which was produced during anaerobic hydrolysis was used as part of electron donors for denitrifkation in column D. Comparison results show that porous polyethylene balls had a better COD and NH_4~+-N removal performance than the fiber type biocar-rier.
机译:建立了一个台式连续流系统,该系统依次由厌氧水解塔(A列),缺氧塔(D列)和两个好氧塔(B和F列)组成,以同时从土霉素结晶母体中除去氮和碳。解决方案(TCMS)。 A列和D列是污泥床反应器,B列和F列分别是装有聚乙烯球和悬挂在塑料环上的软纤维的生物膜反应器。当连续注入自来水稀释的TCMS(稀释比为1:4)时,系统除去了约82%的化学需氧量(COD)和81%的总氮。厌氧水解过程中产生的硫化物被用作D列中反硝化的电子供体。比较结果表明,多孔聚乙烯球比纤维型生物载体具有更好的COD和NH_4〜+ -N去除性能。

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