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1)  SBR reactor
SBR反应器
1.
Heat balance of SBR reactor;
SBR反应器的热效应研究
2.
Advances on SBR reactor for treating organic wastewater;
有机废水SBR反应器研究进展
3.
Cultivation of aerobic granular sludge in SBR reactor and its decontamination capability
SBR反应器中好氧颗粒污泥培养及其除污性能
2)  SBR
SBR反应器
1.
In two identical SBR reactor,the denitrification and phosphorous removal was investigated in denitrifying phosphorous removal process,which separately took nitrate nitrogen and nitrite nitrogen as the electron acceptor.
方法在传统SBR反应器中,考察了分别以NO3--N和NO2--N为电子受体的反硝化除磷过程中的脱氮吸磷现象。
2.
The treatment effect of municipal wastewater by engineering bacteria Bacta-Pur XLG was investigated using SBR reactor.
利用SBR反应器,探讨了XLG型生物工程菌Bacta-Pur~对城市污水的处理效果。
3.
Enhancement effect of ultrasound(US) on the bio-treatment of domestic wastewater was studied through contrast experiments between two sequence batch reactors(SBR) with and without US.
通过设置超声波(ultrasound,US)的SBR反应器(sequence batch reactor,SBR)与对照反应器的对比试验,研究了超声波对SBR处理生活污水的强化效果。
3)  sequencing batch reactor
SBR反应器
1.
Inoculated with enriched activated sludge,in which denitrifying phosphorus-accumulating organisms were predominant,granular sludge was cultivated under anaerobic/aerobic/anoxic modes in a sequencing batch reactor(SBR).
借助SBR反应器,采用厌氧/好氧/缺氧的运行方式,对富集的以反硝化聚磷菌(DNPAOs)为优势菌的活性污泥进行颗粒化培养,约35d后得到了较成熟的颗粒污泥。
2.
Experimental study about the effects of DO and pH on nitrosofication and half-nitrosofication was carried out in a laboratory-scale sequencing batch reactor(SBR).
SBR反应器中对DO和pH值在短程硝化和半亚硝化过程中的作用进行试验研究,结果表明,控制低DO和适宜的pH值在短程硝化过程中起着重要的作用。
3.
Therefore,a new kind of biological fluidized media were utilized to enhance the original sequencing batch reactor(SBR)process.
结果显示:投加了新型生物流化填料后,SBR反应器内的生物量和微生物种类均得到了较大幅度的增加,传质条件也得到了明显改善;对BOD5、COD、NH4+-N、TN的去除率分别由未投加填料时的92%、88。
4)  EM-SBR reactor
EM-SBR反应器
5)  sequencing batch reactor(ESBR)
填料式SBR反应器
6)  small sized sequencing batch reactor
小型SBR反应器
补充资料:超滤反应器
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性质:用超滤膜把酶或微生物限制在一定范围内并实现生化反应过程的设备,分间歇式和连续搅拌式超滤膜反应器,从结构和操作方式上连续式膜反应器又可分为死端池型反应器;循环流动型反应器及活塞流式中空纤维膜反应器。较多应用于酶反应的研究、杂交瘤细胞培养制取单克隆抗体等方面。

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