Municipal water supply UV sterilizer for water purification
Product name: UV water disinfection s
Municipal water supply UV sterilizer for water purification
Product name: UV water disinfection s
How does UV work?
UV does not kill micro organisms like chlorine does, but instead UV inactivates them. UV light at a
specific wavelength of 254 nm is readily absorbed by the genetic material of micro organisms. The
DNA strand is coded with a specific sequence of something called base pairs. The sequence of
these base pairs codes for certain characteristics. UV light at 254 nm is readily absorbed at the
point on the microorganism's DNA strand which codes for reproduction. A microorganism that
cannot reproduce, cannot make colonies and therefore cannot infect when consumed.
Features:
UV light does not add anything to the water ,such as ,undesirable color ,odor , taste , or flavor ,nor does it generate harmful byproducts. It adds only energy in the UV radiation. Also, UV disinfection requires only a fraction of the contact times required by other disinfection methods. It is fast, efficient, effective, economical and environmentally-friendly.
Specifications:
model | capacity | Power | inlet-outlet | reactor | panel | Anchor | G weight |
m³/hour | watt | mm | L×W×H | cm | screw | Kg | |
YLCn-005 | 0.3 | 16 | 1/2″ | 30×6×11 | without | without | 5 |
YLCn-008 | 1 | 25 | 1/2″ | 47×6.3×11 | without | without | 10 |
YLCn-050 | 2 | 40 | 1″ | 100×9×20 | Φ8.9×25 (d×L) | 69×4×Φ1 | 25 |
YLCn-150 | 6 | 80 | 1+1/4″ | 100×11×23 | 69×4×Φ1 | 30 | |
YLCn-200 | 8 | 120 | 1+1/2″ | 100×15.9×30 | Φ8.9×45 (d×L) | 69×7×Φ1 | 35 |
YLCn-300 | 12 | 160 | 2″ | 100×15.9×32 | 69×7×Φ1 | 40 | |
YLC-050 | 2 | 40 | DN25/1″ | 100×8.9×30 | 25×30×12 (W×H×D) | 60×4×Φ1 | 45 |
YLC-150 | 6 | 80 | DN32/11/4″ | 100×10.8×30 | 60×4×Φ1 | 50 | |
YLC-200 | 8 | 120 | DN40/11/2″ | 100×15.9×40 | 60×7×Φ1 | 60 | |
YLC-300 | 12 | 160 | DN50/2″ | 100×15.9×40 | 60×7×Φ1 | 70 | |
YLC-360 | 15 | 200 | DN65/21/2″ | 100×15.9×40 | 60×7×Φ1 | 120 | |
YLC-500 | 20 | 240 | DN65/21/2″ | 100×21.9×50 | 60×11×Φ1.2 | 130 | |
YLC-600 | 25 | 280 | DN80/3″ | 100×21.9×50 | 60×11×Φ1.2 | 140 | |
YLC-700 | 30 | 320 | DN100/4″ | 100×21.9×50 | 60×11×Φ1.2 | 150 | |
YLC-1000 | 40 | 360 | DN100/4″ | 100×21.9×50 | 60×11×Φ1.2 | 160 | |
YLC-1200 | 50 | 400 | DN125/5″ | 100×21.9×50 | 60×11×Φ1.2 | 180 | |
YLC-1500 | 60 | 420 | DN150/6″ | 170×27.3×57 | 120×16×Φ1.4 | 210 | |
YLC-2000 | 80 | 560 | DN150/6″ | 170×27.3×57 | 120×16×Φ1.4 | 220 | |
YLC-2500 | 100 | 700 | DN150/6″ | 170×27.3×57 | 60×128×30 (W×H×D) | 120×16×Φ1.4 | 275 |
YLC-3000 | 125 | 840 | DN150/6″ | 170×27.3×57 | 120×16×Φ1.4 | 300 | |
YLC-4000 | 150 | 1120 | DN200/8″ | 173×32.5×65 | 120×20×Φ1.6 | 325 | |
YLC-5000 | 200 | 1400 | DN200/8″ | 173×37.7×72 | 120×22×Φ1.6 | 350 | |
YLC-7000 | 300 | 2100 | DN250/10″ | 175×42.6×80 | 120×24×Φ2.0 | 400 | |
YLC-10K | 400 | 2520 | DN250/10″ | 176×52.9×95 | 60×150×40 (W×H×D) | 120×22×Φ2.2 | 475 |
YLC-15K | 600 | 3080 | DN300/12″ | 176×78×110 | 120×32×Φ2.4 | 600 | |
YLC-20K | 800 | 3920 | DN350/14″ | Designated | Designated | Designated | Designated |
YLC-25K | 1000 | 4760 | DN350/14″ | Designated | Designated | Designated | Designated |
UV Disinfection Systems Application
Reclaimed water recycling
Devices for secondary water supply of the living community
Disinfection of the treated municipal sewer
Disinfection of water for aquiculture and processing
Disinfection of purified water for shellfish species
Disinfection of water in aquaria and water tanks
Disinfection of tap water, purified water and mineral water
Disinfection of water for the food and beverage industries
Disinfection of water for such water recreational facilities as swimming poor, etc. Disinfection of
drinking water for residential, office and restaurant buildings, etc. Disinfection of bacteria-free
water for pharmacy, cosmetics and other such manufacturing industries
Disinfection of water for hospitals Water for military bases, ships and vessels and submarine
vessels as well as field activities
Disinfection of water for agricultural irrigation
Disinfection of water for municipal landscapes
Disinfection of water for the water treatment system of central air conditioning in commercial buildings
Disinfection of cooling water for various large power stations
Disinfection of drinking water for commercial planes and large passenger planes Disinfection of water
for large poultry and livestock farms
Disinfection of water for small domestic drinking machine
Greenhouse seedling culture Aquaculture
Water for municipal landscapes
Disinfection of water for hospitals
Comparison of disinfection methods:
Factors to be considered | Liquid chlorine disinfection | Chlorine dioxide disinfection | Ozone disinfection | UV disinfection | |
Time to be processed | 30 min | ≤30min | 5~10min | 30~60s | |
Dosage (mg/l) | 2~20 | 5~10 | 1~3 | 30~40 | |
Efficiency of inaction bacteria | High | High | High | High | |
Efficiency of bacteria and viruses | Lower middle | Middle | High | High | |
Water quality factors | More easily affected by PH and temperature | More easily affected by PH and temperature | Less affected by PH and temperature | Less affected by PH and temperature | |
Operation complexity | Simple to middle | Middle | Complicated | Simple to middle | |
Economical efficiency | Operation cost | Lower middle | Middle | Above the average | Lower middle |
Area | Large | Less | Small | Small | |
Maintenance work | Large | Less | Large | Small | |
Adverse impact | Safety during transportation | Yes | Yes | No | No |
Site security | Very high | Middle | Middle | Smaller | |
Poisoning against the fishes and large invertebrates | Toxic | Poisonous | No | No | |
Whether there exists the toxic by product | Yes | Exist in small quantity | Yes | No | |
Disposal of the cleaning agents | No | No | No | Have | |
Whether or not to increase the content of the soluble solid | Yes | Yes | No | No | |
Corrosively | Yes | Yes | Yes | No | |
High energy consumption | No | No | Yes | Yes |