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1)  O3/BAC
臭氧/生物活性炭
1.
Aimed at the microbial safety of ozone/biological activated carbon(O3/BAC) process,through the pilot-scale and productive experiments,a systematic evaluation was carried out considering the aspects of pathogenic microorganisms,microbial population,turbidity,particle number and AOC.
针对臭氧/生物活性炭工艺在应用过程中可能存在的微生物安全性问题,通过中试和生产性试验从病原微生物、微生物群落、浊度和颗粒数、AOC等四个方面进行了系统评价。
2.
The O3/BAC process was applied in the pilot-scale advanced treatment of Miyun Re-(servoir) water.
采用臭氧/生物活性炭工艺(O3/BAC)对密云水库水进行深度处理中试研究,试验结果表明:臭氧/生物活性炭工艺的处理效果优于单独活性炭工艺(GAC),在最佳臭氧投加量(2。
3.
However,the removal rate of DON by O3/BAC can reach 60%.
与DOC相似,常规处理工艺对DON的去除率维持在20%左右,增加混凝剂投量对DON的控制效果不明显,而臭氧/生物活性炭深度处理工艺对DON的去除率可达60%。
2)  O_3-BAC
臭氧-生物活性炭
1.
Determination for Optimal Ozone Dose in O_3-BAC;
臭氧-生物活性炭组合工艺中最佳臭氧投加剂量的确定
2.
Application of ozone-biological activated carbon(O_3-BAC)process in drinking water plant;
臭氧-生物活性炭工艺在直饮水厂中的应用
3)  O3-BAC
臭氧-生物活性炭
1.
The experimental data from the treatment of micro-polluted water by O3-BAC process of a pilot test showed that the effluent could reach the standard of drinking water stipulated by our country;the average value of CODMn in BAC filtration effluent was 1.
本文以中试实验为基础,以枯水期的水质实验数据为依据,证明了采用臭氧-生物活性炭治理微污染水源能达到国家规定的生活饮用水水质标准,炭滤出水CODMn平均值为1。
4)  ozone-biological active carbon
臭氧-生物活性炭
5)  Ozone Biologically Actived Carbon
臭氧生物活性炭
1.
Optimization and Control of Ozone Biologically Actived Carbon Method in Drinking Water Treatment;
臭氧生物活性炭净水工艺的优化与控制
6)  Ozone-biological activated carbon
臭氧-生物活性炭
1.
The products of relative molecular weight(M_r) distribution,bromate(BrO~-_3) and trihalomethanes(THMs) were studied by ozone-biological activated carbon(O_3-BAC) process for treating organic matters and bromide(Br~-) in water source of southern brooky regions of China.
以我国南方河网原水中有机物和季节性溴化物(Br-)为对象,研究臭氧-生物活性炭(BAC)工艺净化过程中有机物相对分子质量(Mr)分布变化及溴酸盐(BrO-3)和消毒副产物(THMs)的形成规律。
补充资料:活性炭生物处理过程
分子式:
CAS号:

性质:又称活性炭生物处理过程。在曝气池中投加粉状活性炭所形成的活性炭吸附与活性污泥生物氧化的综合处理方法。可以提高活性污泥法的净化功能,改善污泥的沉淀性能和出水水质,提高对有毒物质和重金属等冲击负荷的稳定性,还具有脱色、除臭、消泡等效能。此法已在合成纤维、化工、印染、炼油、炼焦等工业废水处理中应用。

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