针对城市污水处理厂尾水生产高品质再生水过程中产生的反渗透浓水N H 4 + -N浓度高、盐度高等特点,采用亚硝化-反硝化二级移动床生物膜反应器(二级MBBR)中试装置进行深度脱氮,比较填料填充率(filling ratio,FR)分别为51%、42%和32%情况下,二级MBBR对N H 4 + -N、N O 3 - -N和CODCr等污染物的去除效果。结果表明:亚硝化MBBR中填料FR分别为51%、42%和32%时,N H 4 + -N平均去除率分别为67.0%±4.0%、71.3%±8.9%和73.2%±6.1%,FR优选32%;反硝化MBBR填料FR分别为51%、42%和32%时,N O 3 - -N平均去除率分别为73.1%±4.2%、63.7%±9.4%和64.9%±10.4%。考虑到经济性,优选填料FR为32%。 相似文献
The performance of UV/H2O2, UV/O3 and UV/H2O2/O3 oxidation systems for treating spent caustic from an ethylene plant was investigated, in UV/H2O2 system, with the increase of H202 dosage, removal efficiencies of COD and the ratio of biochemical oxygen demand(BOD) to chemical oxygen demand(COD) of the effluent were increased and a better performance was obtained than the H2O2 system alone. In UV/H2O2 system, removal efficiency of COD reach 68% under the optimum condition, and BOD/COD ratio was significantly increased from 0.22 to 0.52. In UV/O3 system, with the increase of O3 dosage, removal efficiency of COD and BOD/COD ratio were increased, and a better performance was obtained than the O3 system alone. Under the optimum condition, removal efficiency of COD was 54%, and BOD/COD ratio was significantly increased from 0.22 to 0.48. In UV/H2O2/O3 system, COD removal efficiency was found to be 22.0% higher than UV/O3 system. 相似文献