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1)  activated sludge tank
活性污泥槽
2)  activated sludge
活性污泥
1.
Effect of activated sludge on poly-β-hydroxybutyrate(PHB) accumulation;
活性污泥对聚-β-羟基丁酸酯(PHB)积累能力的影响
2.
Study on measurement of inhibition kinetic constant based on respiration rate in activated sludge process;
以呼吸速率为基础活性污泥抑制动力学常数的测定研究
3.
Development in research methods of activated sludge bacterial community;
活性污泥微生物菌群研究方法进展
3)  Sludge activity
污泥活性
1.
A study on the relationship between EPS and sludge activity in MBR;
EPS与MBR中污泥活性关系研究
2.
Study on sludge activity in cross-flow dynamic membrane bioreactor;
错流式动态膜-生物反应器中污泥活性的研究
3.
The determination of sludge activity by pH value method was studied through determining the trend of pH changing at different sludge concentration.
pH值法通过监测微生物的呼吸作用检测污泥活性,受外界因素影响小,结论可靠,且方便快捷,为现场工程中测定污泥活性提供了一种简单、实用的新方法。
4)  active sludge
活性污泥
1.
Researching process of the influence of metallic ion on active sludge microbe;
金属离子对活性污泥微生物影响研究进展
2.
Primary discussion on application of active sludge mathematic model ASM1 in engineering design;
活性污泥数学模型ASM1在工程设计中的应用(上)
3.
Application of active sludge mathematic model ASM1 in design project(Ⅱ);
活性污泥数学模型ASM1在工程设计中的应用(中)
5)  actived sludge
活性污泥
1.
The treatment adopts aerobe anaerobe actived sludge system, which has high effect, low consume of energy, good environmental benefit, society benefit and economic benefit.
该方案采用了新的好氧生物—厌氧生物—改进后活性污泥处理方法 ,具有效率高 ;能耗低 ;良好的环境效益、社会效益和经济效
2.
The results showed that the optimum flocculation condition of chitosan are: pH in actived sludge is 5-8; the concentration of chitosan is equivalence to that of PAM, better than the PAC in the flocculation of actived sludge.
对壳聚糖用于活性污泥絮凝沉降的pH值适用范围、投加浓度进行了研究,并与常规絮凝剂聚丙烯酰胺(PAM)和聚合氯化铝(PAC)进行了比较。
6)  activated sludge process
活性污泥
1.
In the experimental condition, Bioaugmentation technology was used to treat coking-plant wastewater in the activated sludge process.
在实验室条件下,将生物强化技术运用于活性污泥处理焦化废水中。
2.
Activated sludge process with plug flow has better treatment efficiency.
介绍了混凝气浮-推流式活性污泥-深度处理法在染色废水工程中的应用,分析了工程的设计及运行的情况。
补充资料:厌氧污泥消化槽
分子式:
CAS号:

性质:利用厌氧性的微生物分解有机物,往密闭池、槽中投入污泥或浓有机废水在与大气隔绝的状态下处理。被加热的厌氧池、槽,使污泥消化过程维持在30~35℃之间,也有时需维持在50℃左右。在初级阶段中,可收集到用作燃料的甲烷。一级槽常常带有泡沫破碎装置和浮动或固定的顶盖,看顶盖是浮动的,即可形成一个贮气罐以收集甲烷气。一级消化槽是通过污水或气体或两者混合物的再循环来达到混合目的。污水循环流经一外换热器而被加热。厌氧污泥消化槽一般是圆形的,中心处深度不小于7.5m,直径不小于6m。最大可达直径35m,深14m。如果采用浮动顶盖,则其与槽壁接触的边缘处必须加以密封,冷污泥消化槽不适于大量处理。

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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