For the purification of nanopowders that dispersed target materials, catalysts and nonferrousmetals, traditional washing methods such as press filtration and centrifugation have shortcomingsof easy material leakage, high filtration resistance in the later stage, turbid filtrate, large washingwater volume, high labor intensity, and inability to achieve continuous production.
Application points and core technologies
Recycling and washing technology of powder by membrane;
Overall solution for treatment of washing wastewater;
Petrochemical catalyst separation-continuous ceramic membrane coupling technology.
Application product
New nanomaterials: lithium batteries, graphene, semiconductor materials, etc.
Catalyst: target materials, nickel, molecular sieve, etc.
Other ultrafine powders:zirconium oxide, indium oxide, silver oxide, aluminum hydroxide.
aluminum oxide, titanium oxide, ultra-pure nonferrous metals, etc.
Technicaladvantages
Extremely high-precision filtration, high rejection rate for nano-level ultrafine powders and no lossofvaluable powders;
Excellent cleaning effect, low im purity content, extremely high purity preparation ofultrafine powder;
Effective removal ofimpurity ions in the slumy, small washing volume, saving water and electidity by 30%;
Simple device, stable process, small footprint;
Continuous production, easy to achieve automation and intelligence;
Equipped with reverse osmosis equipment to prepare purified water, with low total operating cost.
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