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1)  electroplating rinse-wastewater
电镀清洗废水
2)  electroplating rinsewater
电镀漂洗废水
1.
The great significance of developing an electrodeionization(EDI) process for electroplating rinsewater recovery is briefly introduced.
介绍了开发电去离子(EDI)回收电镀漂洗废水技术的重要意义;综述了目前国内外以阳床EDI和混床EDI回收电镀漂洗废水的研究新进展;分析了存在的主要问题,并对进一步的研究进行了展望。
3)  cleaning wastewater
清洗废水
1.
The wastewater treatment method of wet oxidation is taken into deep research in terms of the tank container cleaning wastewater which has more kinds and higher concentration.
针对罐式集装箱清洗废水种类多、浓度大的特点,采用湿式催化氧化法进行了处理效果的研究。
4)  electroplate wastewater
电镀废水
1.
Research on the treatment method of electroplate wastewatercontaining cyanogen and chromium compound;
含氰含铬电镀废水处理技术的研究
2.
Advanced treatment efficiency of electroplate wastewater by vertical-horizontal subsurface flow combined constructed wetland;
垂直流-水平潜流复合人工湿地深度处理电镀废水的效果
3.
The Analysis and Treatment of Electroplate Wastewater Containing Chromium and Nickel;
电镀废水镍、铬的分析及处理方法的研究
5)  plating wastewater
电镀废水
1.
Nowadays,there are 4 billion cubic meters plating wastewater containing a lot of copper ions were released in China.
目前中国每年排放约40亿m3电镀废水,其中含有大量的铜离子,若不进行回收,不仅浪费资源,而且污染环境。
2.
In this article,the plating wastewater containing heavy metal ions was electrolyzed in a novel organic glass reactor which was first designed by the author.
采用自行设计的有机玻璃电解槽用电化学方法处理含重金属离子电镀废水,讨论了电极材料选择的重要性,及pH值、电极间距和电极联结方式对于去除效果的影响,确定了电解过程的最佳工艺条件。
3.
Membrane separation technology has wide application in electroplating wastewater treatment.
膜分离技术在电镀废水处理领域有着良好的应用前景。
6)  plating waste water
电镀废水
1.
The sources of organic pollutant in plating waste water include three facts: pre-plating process, plating process and post-plating process.
电镀废水中的有机污染物来源主要有3个方面:镀前处理、电镀过程和镀后处理。
2.
Oxidize plating waste water by using hypochlorous acid sodium as well study its techical conditions and disposal effect.
采用次氯酸钠氧化处理含CN电镀废水,并对其主要工艺条件、处理效果等进行了试验研究。
3.
Na2S selected deposition was used in the separation of Cu2+and Ni2+ in plating waste water of given chemical plant.
用硫化钠选择沉淀法分离电镀废水中的Cu2+和N i2+离子,根据热力学理论阐述Cu2+和Ni2+分离的原理,确定分离的适宜条件。
补充资料:革漂洗
分子式:
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性质:植物鞣重革加工的一个工序。使革面清洁并起轻度漂白作用,并使革色浅淡均匀,减少裂面缺陷的发生。方法是先用弱碱性溶液浸渍植鞣重革,溶化沉积于革面的鞣质和非鞣质,继以清水洗去,然后用弱酸性溶液浸泡中和,最后用温水清洗。

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