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由于电镀废水中含有多种重金属离子,通常采用氧化-还原等方法处理含氰、六价铬离子废水,采用中和、沉淀、絮凝的方法处理废水中的酸碱、重金属离子,最终达到污泥收集和污水回用的目的,提高水的循环利用率,排放废水达到国家污水综合排放标准。
Due to electroplating waste water containing a Varity of heavy metal ions, we usually use oxidation-reducing method to treat cyanide, hexavalent chromium ion waste water, use neutralization, sediment tation, flocculation approach to treat PH and heavy metal ions in waste water to ultimately achieve sludge collection and sewage reuse, improving water recycling, making waste water meet National wastewater discharge standards.
适用范围:含铬、镍、铜、锌、铁等重金属的电镀综合废水的处理
Application area: treatment of the electroplating wastewater mixed with chromium, nickel, copper, zinc, iron and other heavy metals.
电镀废水处理设备自动化操作系统:
Electroplating wastewater treatment equipment automation operating systerm
设备参考数据 equipment reference
电镀废水排量(吨/小时) Electroplating wastewater displacements (T/H) |
部分设备改为土建结构,占地面积以厂房具体而定 Equipment area (determined by specific plant) |
适用对象 Application object |
小于10T/H Less than 10T/H |
约60~150m2 |
小型电镀厂、电镀车间 Small electroplating factory, workshop etc. |
10~30T/H |
约150~350m2 |
大型电镀厂、电镀车间 Medium-sized electroplating factory, workshop, etc. |
30~50T/H |
约350~500m2 |
大中型电镀厂、电镀车间 Medium-sized electroplating factory, workshop, etc. |
50T/H以上 More than 50T/H |
部分设备改为土建结构,占地面积以厂房具体而定 Part of the equipment charge into civil engineering, the area Will determined by specific plant |
大型电镀厂、电镀车间 Large electroplating factory, workshop, etc. |
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