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Sand washing wastewater slurry treatment filter press

NegotiableUpdate on 04/06
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Overview
The process flow of the sand washing wastewater slurry treatment filter press is to collect the slurry through pipelines and ditches into a large collection tank, and then send it into a special collection tank through a high-pressure mud pump. The pre configured drugs are diluted and evenly added through a diversion channel to fully react with the slurry, achieving mud water isolation. Under the action of drug reaction and specific gravity, the slurry enters the preset pipeline step by step, and then is sent into the separation equipment through a specially designed high-pressure feeding pump. Under the action of ultra-high pressure, a specially designed filtering medium is used to turn the wastewater into a clear spring, which can be utilized. The slurry forms a filter cake that can be buried or transported away, turning waste into treasure and saving resources
Product Details

Sand washing wastewater slurry treatment filter press

After treatment, the moisture content of the sludge is 30% -40%, which greatly reduces the discharge volume, facilitates transportation, avoids environmental pollution caused by mud discharge problems, is conducive to environmental protection, and benefits humanity! The sand field mud treatment filter press is a new generation of solid-liquid separation equipment carefully improved by the company based on more than 20 years of on-site experience. It is more energy-efficient and safer on the basis of the original equipment!

Its components: 1 PLC+PC automatic electrical control system

2. Sludge feeding system

3. Organic polymer flocculant preparation system

4. Dehydrated sludge conveying system.

Sand washing wastewater slurry treatment filter press

This equipment is widely used in sand washing plants, sand and gravel factories, stone factories, sand mining sites for mud treatment, mud dewatering, and sewage treatment. The characteristics of this mud wastewater treatment equipment are: large processing capacity, long wear resistance and service life, reasonable structure, low noise, small footprint, wide application range, simple operation, convenient maintenance, high degree of automation, stable operation, low equipment cost, and low infrastructure cost.