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1)  Pharmaceutical wastewater of V C production
VC制药废水
2)  Vc wastewater
Vc废水
1.
The experimental investigation of high strength Vc wastewater treatment by UASB technology was reported in this paper.
试验结果表明:Vc废水的厌氧处理运行性能因水质不同而存在很大差异。
3)  medicine wastewater
制药废水
1.
Treatment of ribavirin medicine wastewater by UBF system
UBF厌氧反应器处理病毒唑制药废水的研究
2.
The high strength medicine wastewater was treated by combined process of the biological contacting oxidation-air floatation-multi-stage biochemistry treatment.
采用接触氧化-气浮-多级生化处理组合工艺处理高浓度制药废水。
3.
The medicine wastewater have little capacity,composition complications,high concentration and salts,it also have high color degree and toxicity etc.
制药废水具有排放量小、成分复杂、浓度和盐分高、色度和毒性大等特点,属于难降解高浓度有机废水,特别是其中的“三致”有机污染物,易造成水环境污染,威胁人们的健康。
4)  pharmaceutical wastewater
制药废水
1.
Study on the treatment of pharmaceutical wastewater with microwave or ultrasonic;
微波和超声波处理制药废水初探
2.
Process investigation on activated sludge in-series system treating pharmaceutical wastewater;
串联活性污泥系统处理制药废水工艺研究
3.
Study on the treatment of nitrobenzene pharmaceutical wastewater by improved Fe-C inner electrolytic process;
增强型Fe-C内电解法处理硝基苯制药废水试验研究
5)  pharmacy wastewater
制药废水
1.
Study on internal electrolysis-MBR process for pharmacy wastewater treatment;
内电解—MBR工艺处理制药废水的研究
2.
Application of dispersing type cationic polyacrylamide synthesized in aqueous medium to the treatment of pharmacy wastewater;
水介质分散型阳离子聚丙烯酰胺在制药废水处理中的应用
3.
Pharmacy wastewater treatment by combined process of EGSB—CASS
EGSB-CASS工艺处理制药废水
6)  pharmaceutical waste water
制药废水
1.
A high performance liquid chromatographic (HPLC) method was established for the simultaneous determination of three main pollutants (josamycin, theophylline and paracetamol) in pharmaceutical waste water.
建立了同时测定制药废水中残留的交沙霉素、茶碱、扑热息痛等3种药物的高效液相色谱方法。
2.
The existing deficiency of traditional biological processes used in pharmaceutical waste water treatment are reviewed.
分析了制药废水传统生物处理工艺存在的问题 ,引入了以膜过滤代替原工艺二沉池的新反应器———膜生物反应器 (MBR) ,综述了各种MBR(包括分离式、一体式、萃取式三种 )处理制药废水的研究成果 ,并展望了MBR在制药废水处理领域中的发展前景。
补充资料:焦化厂含酚氰废水处理设计(见含酚氰废水处理设计)


焦化厂含酚氰废水处理设计(见含酚氰废水处理设计)
design of phenolic and cyanic waste water treatment for coking plant

J iaohuaehang honfenging feishui ehuli sheji焦化厂含酚氛废水处理设计(design of phe-nolie and eyanie waste water treatment foreoking plant)见含酚氛度水处理设计。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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