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Removal of organic matter and nitrogen from distillery wastewater by a combination of methane fermentation and denitrificationitrification processes

机译:甲烷发酵和反硝化/反硝化工艺相结合,去除酒厂废水中的有机物和氮

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The distillery wastewater of Guangdong Jiujiang Distillery, which is characteristic of containing high organic matters and rich total nitrogen, was treated by a combination of methane fermentation and denitrificationitrification processes. 80 percent of COD in the raw wastewater was removed by methane fermentation at the COD volumetric loading rate of 20 kg COD/(m~3 centre dot d) using the expanded granule sludge bed (EGSB) process. However, almost all the organic nitrogen in the raw wastewater was converted into ammonia by ammonification there. Ammonia and volatile fatty acids (VFA) remaining in the anaerobically treated wastewater were simultaneously removed utilizing VFA as an electron donor by denitrification occurring in the other EGSB reactor and nitrification using PEG-immobilized nitrifying bacteria with recirculation process. An aerobic biological contact oxidization reactor was designed between denitrificationitrification reactor for further COD removal. With the above treatment system, 18000-28000 mg/L of COD in raw wastewater was reduced to less than 100 mg/L. Also, ammonia in the effluent of the system was not detected and the system had a high removal rate for 900-1200 mg/L of TN in the raw wastewater, only leaving 400 mg/L of nitrate nitrogen.
机译:通过将甲烷发酵与反硝化/反硝化工艺相结合,对广东九江酒厂的酒厂废水进行了处理,该废水的有机物含量高,总氮含量高。采用膨胀颗粒污泥床(EGSB)工艺,以20 kg COD /(m〜3中心点d)的COD容积负载率,通过甲烷发酵去除原废水中80%的COD。但是,原废水中几乎所有的有机氮都通过氨化而转化为氨。厌氧处理过的废水中残留的氨和挥发性脂肪酸(VFA)通过VFA作为电子供体同时通过另一个EGSB反应器中发生的反硝化和使用PEG固定化硝化细菌的硝化与再循环过程同时去除。在反硝化/反硝化反应器之间设计了一个好氧生物接触氧化反应器,以进一步去除COD。使用上述处理系统,原废水中的COD降至18000-28000 mg / L,降至100 mg / L以下。另外,未检测到系统废水中的氨,并且该系统对原废水中900-1200 mg / L的TN的去除率很高,仅留下400 mg / L的硝酸盐氮。

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