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1)  refinery wastewater
炼油废水
1.
Discussion on UV_(254) as a predictive index of advance treatment effect for refinery wastewater;
UV_(254)在炼油废水深度处理中的效果预测
2.
Exploratory test for advanced treatment of refinery wastewater;
炼油废水深度处理探索性试验研究
3.
Photocatolytic degradation of refinery wastewater with nanometer TiO_2;
纳米TiO_2光催化法处理炼油废水的研究
2)  oil refinery wastewater
炼油废水
1.
Study on treatment of oil refinery wastewater by polysilic aluminium sulphate flocculant;
聚硅硫酸铝絮凝剂处理炼油废水的研究
2.
The physicochemical pretreatment process for oil refinery wastewater was studied.
炼油废水的物化预处理工艺进行了研究,比较了分别投加5种不同混凝剂的混凝沉淀效果。
3)  refinery sewage
炼油废水
1.
Aiming at serious pollution and no good biochemical quality in refinery sewage,hydrolytic acidification was used to treat it.
针对炼油废水可生化性差的特点,采用水解—好氧接触氧化工艺进行处理。
2.
Simulating the refinery sewage treatment system, the improved system can not only separate the sludge from the stream ,but also improve the denitrification by secondary sedimentation and adding soften package fiber in secondary sedimentation of the pilot sewage treatment plant in H-O-R process( hydrolysis-acidifying - aerobic- denitrogen ).
模拟茂石化炼油废水生化处理系统 ,在二沉池中加入软性纤维添料 ,使之具有反硝化脱氮的功能后 ,用H -O -R工艺 (即水解酸化 -好氧 -脱氮 )的方式运行 ,不但使泥水分离效果更好 ,而且改进了传统的脱氮工艺 ,弥补由于原工艺中构筑物的原因造成废水无法回流脱氮的缺陷。
3.
The degradation of ammonical nitrogen in the refinery sewage by means of the activated sludge A/O procese is studied through experiments.
采用活性污泥A/O工艺对炼油废水中氨氮的去除进行了试验研究。
4)  oil-refining wastewater
炼油废水
1.
Study on oil-refining wastewater treatment by PFSS flocculation-membrane separation;
PFSS絮凝-膜分离法处理炼油废水
2.
The integrated hydrolytic acidification-biological aerobic filter was used to treat oil-refining wastewater.
采用水解酸化-好氧一体式生物滤池处理炼油废水
5)  Oil refining wastewater
炼油废水
1.
Experience of oil refining wastewater recovery by the process of combined ultrafiltration and reverse osmosis;
双膜工艺回用炼油废水长期稳定运行经验总结
6)  refinery wastewater
炼油厂废水
1.
This paper is to study the biochemical method used in the treatment of activated sludge in refinery wastewater under the activation conditions.
为探讨生化法处理炼油厂废水中活性污泥的活化条件,本文利用BP神经网络的数值逼近方法和实验检测方法,选择COD、硫化物、温度、DO为影响因素,针对活性污泥浓度和指数,得到了处理条件下的预测数值和实验数值,二者接近,说明BP神经网络预测的精确度较高。
2.
The removal effects of COD,NH_3-N and turbidity from refinery wastewater in the biofilter were investigated using activated carbon,zeolite,architectural ceramic particles and engineering ceramic particles as biofilter packing.
采用活性炭、沸石、建筑陶粒及工程陶粒等作为生物滤池填料,考察了生物滤池对炼油厂废水中COD、NH_3-N、浊度的去除效果。
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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