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Impact of fine mesh sieve primary treatment on nitrogen removal in moving bed biofilm reactors

机译:细孔筛初级处理对移动床生物膜反应器中脱氮的影响

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The purpose of this project was to investigate the effect of selective particle removal during primary treatment on nitrogen removal in moving bed biofilm reactors (MBBRs). Two small MBBR pilot plants were operated in parallel, where one train treated 2 mm screened municipal wastewater and the other train treated wastewater that had passed through a Salsnes Filter SF1000 rotating belt sieve (RBS) with a 33 mu s sieve cloth. The SF1000 was operated without a filter mat on the belt. The tests confirmed that, for the wastewater characteristics at the test plant, Salsnes Filter primary treatment with a 33 mu s RBS and no filter mat produced a primary effluent that was close to optimum. Removal of organic matter with the 33 mu s sieve had no negative effect on the denitrification process. Nitrification rates improved by 10-15% in the train with 33 mu s RBS primary treatment. Mass balance calculations showed that without RBS primary treatment, the oxygen demand in the biological system was 36% higher. Other studies have shown that the sludge produced by RBS primary treatment is beneficial for biogas production and will also significantly improve sludge dewatering of the combined primary and biological sludge.
机译:该项目的目的是研究在初级处理过程中选择性去除颗粒对移动床生物膜反应器(MBBR)中氮的去除效果。两个小型MBBR试点工厂并行运行,其中一列火车处理过2毫米筛分的市政废水,另一列火车处理过的废水经过了Salsnes Filter SF1000旋转带筛(RBS),并用33微米的筛布进行了过滤。 SF1000在皮带上没有过滤垫的情况下运行。测试证实,对于测试工厂的废水特性,Salsnes Filter初处理采用33 s s RBS且没有滤垫的情况下产生的初级污水接近最佳水平。用33微米筛子去除有机物对反硝化过程没有负面影响。经过33 s s RBS初步处理,火车中的硝化率提高了10-15%。质量平衡计算表明,如果不使用RBS进行预处理,则生物系统中的氧气需求量会增加36%。其他研究表明,RBS初级处理产生的污泥对沼气生产有利,并且还将显着改善初级和生物污泥混合后的污泥脱水。

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