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- The application of the self-designed new oxide-flocculation reactor(OFR) to the treatment of pharmaceutical wastewater was studied. 利用自行研制的氧化絮凝复合床(OFR)处理了医药废水。
- Author designed two equipment (UCASS and CASS) with the same of dimension, and compared with their efficiency by dealing with domestic wastewater and pharmaceutical wastewater. 脱氮除磷UCASS工艺则主要适用于脱氮除磷要求严格的场合。 并设计加工了尺寸相同的两套装置(好氧UCASS工艺和CASS工艺),对生活污水和某制药废水进行了对比试验研究。
- Cliciazide pharmaceutical wastewater contains a mixture of refractory organism as well as easily biode-gradable organism and its concentration is often high. 格列奇特制药废水既含有难降解有机物,又含有易生物降解的有机物,成分复杂、浓度高。
- Generally,pharmaceutical wastewater has such characteristics as complicated element,intricate species of organic pollutant,and low ratio of BOD and COD. 制药废水通常具有组成复杂,有机污染物种类多、浓度高、B/C比值低的特点。
- Because of high COD and recalcitrant organic compounds in pharmaceutical wastewater and effectiveness and ease in operation of electrolysis, an schemes of electrolysis-biochemistry was established. 考虑到制药废水成分复杂、COD高且难降解的特点和电解法处理废水的高效、易操作且能提高废水可生化性等优点,自行设计了以电解法为预处理联合生物接触氧化法处理制药废水方案。
- The engineering design and parameters of CASS process in treatment of pharmaceutical wastewater were introduced. The concrete operation parameters were put forward on the basis of the engineering operation and commissioning. 介绍了CASS工艺处理制药废水的工程设计以及工艺参数,并结合工程的运行调试工作提出了具体的运行参数。
- An experiment was made on the pharmaceutical wastewater treatment with the contact oxidation process by adding effective microorganisms(EM) to remove the chemical oxygen demand(COD). 应用生物接触氧化法投加有效微生物菌群(EM)对制药废水中化学需氧量的去除效果进行试验研究和分析。
- The article is subject to the laboratory research about processing technology of wastewater from manufacturing acetylspiramycin with the concideration to characterictics of pharmaceutical wastewater. 针对制药废水的水质特点,以乙酰螺旋霉素生产废水为例进行试验研究。
- The application examples of this technology are introduced emphatically in treatment of printing and dyeing wastewater,electroplate wastewater,pharmaceutical wastewater and anionic surface wastewater. 分析了用该法处理各类废水的优点及存在的问题,并提出了相应的措施;
- Ciprofloxacin pharmaceutical wastewater 环丙沙星制药废水
- chemical synthesis pharmaceutical wastewater 化学合成制药废水
- vitamin pharmaceutical wastewater 维生素类制药废水
- pharmaceutical wastewater treatment 制药废水处理
- complex pharmaceutical wastewater 医药综合废水
- xylose and xylitol pharmaceutical wastewater 糖醇制药废水
- refractory biodegradation pharmaceutical wastewater 难降解制药废水
- After aerobic biological treatment of pharmaceutical wastewater with high concentration nitrogen, effluent COD and BOD 5 could meet the discharge standards specific for pharmaceutic industry, but effluent TN was still as high as 170mg/L. 含高浓度氮的制药废水经好氧生化处理后,虽然出水的COD、BOD5均可达到行业排放标准,但TN仍高达约170mg/L。
- Two Phase Anaerobic-Aerobic Treatment of Pharmaceutical Wastewater 两相厌氧-好氧法处理医药原料废水工程实践
- CONTACT OXIDATION-FLOATATION TO TREAT PHARMACEUTICAL WASTEWATER 接触氧化-气浮处理制药废水
- Two Phase Anaerobic Aerobic Treatment of Pharmaceutical Wastewater 两相厌氧-好氧法处理医药原料废水工程实践