High Quality Good Quality A2 size CO-UV4590 UV printer Flatbed to Florence Importers
We are convinced that with joint efforts, the business between us will bring us mutual benefits. We can assure you product quality and competitive price for High Quality Good Quality A2 size CO-UV4590 UV printer Flatbed to Florence Importers, Inspired by the rapid developing market of the fast food and beverage consumables all over the world , We are looking forward to working with partners /clients to make success together .
- Type: Digital Printer
- Condition: New
- Plate Type: Flatbed Printer
- Place of Origin: Anhui, China (Mainland)
- Brand Name: COLORIDO-Good Quality A2 size CO-UV4590 UV printer Flatbed
- Model Number: CO-UV4590
- Usage: Bill Printer, Card Printer, Label Printer, ACRYLIC,ALUMINUM,WOOD,CERAMIC, METAL,GLASS,CARD BOARD ETC
- Automatic Grade: Automatic
- Color & Page: Multicolor
- Voltage: 110~220v 50~60hz
- Gross Power: 700W
- Dimensions(L*W*H): 1100*1130*770mm
- Weight: 200KG
- Certification: CE Certification
- After-sales Service Provided: Engineers available to service machinery overseas
- Name: Good Quality A2 size CO-UV4590 UV printer Flatbed
- Ink: LED UV INK,ECO-SOLVENT INK,TEXTILE INK
- Ink system: CMYK, CMYKW
- Print speed: 45'/A2 SIZE FASTEST
- Print head: EPSON DX7
- Printing Material: ACRYLIC,ALUMINUM,WOOD,CERAMIC, METAL,GLASS,CARD BOARD ETC
- Printing size: 450*900mm
- Printing thickness: 160mm( or customize thickness)
- Printing resolution: 720*1440dpi
- Warranty: 12 Months
Packaging & Delivery
|Packaging Details:||INDIVIDUAL WOODEN BOX PACKAGE(EXPORT STANDARD)
L 1200 *W 1230* H 870 MM 350KG
|Delivery Detail:||Shipped in 15 days after payment|
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high speed, low shear mixing. Distributes chemical evenly to maximize floc. First run produces pin floc around 1:30 , solids drop around 2:20 (see clear water at top). Fine floc at 3:00 and good settling. Second shock by reverse around 3:55, then floc fattens 4:06 and solids drop VERY fast. Produced clean, polymer free reuse water.
I invented an impeller design that can mix 5x faster than a same diameter prop or turbine, using half the shaft horsepower. It also is a very low shear device. So low shear, that it can mix biologicals such as algae while they are being cultivated, or mix soap without an antifoamer. The design was adapted from my work in nano particle slurry suspensions for companies like Intel for CMP polishing of wafers. It was also used in inkjet ink development.
The key to the process is in the mixing. When adding the clay based chemicals enhanced with polymers, the reagent wants to agglomerate and react with the water right away. You have a window of 10 seconds or so to completely disperse the chemistry throughout the wastewater. If it takes any longer, the chemistry begins to react locally. The net result is a milky separated water, and excess polymer in the reuse. In order to get clear, bright water, and settled solids, you need a homogenous inflow (so you can use exact reagent %), and very high speed, but low shear (for polymers) mixing. The treatment of produced water is entirely a mixing process. The issue is that the mixing must be perfect, fast and scalable to allow for high volumes per day.
Mixing does not have to be a chaotic event, or involve significant turbulence to be effective. This is particularly true in shear sensitive nano particle slurries. Nano particles want to attract to each other and agglomerate. This is true not only of the produced water particles in some instances, but also of the chemical reagents. When wetted, these chemicals want to bind together almost immediately. In order to be effective they must be dispersed evenly in a very short period of time. High speed mixing with conventional technology would rip the polymers apart and potentially create more problems than solutions. A very high flow system can be developed that eliminates conventional baffles, uses very little power, and enhances chemistry efficiency. This gives you the cleanest reuse water, and the most robust solids creation possible. By solving the mixing component of the process, it becomes a very simple solution.