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Cooling Tower Water Treatment Solutions
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Guangzhou Chunke Environmental Technology Co. Ltd
Anhui, China
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Cooling Tower Water Treatment system makes corrosion, clogs, and scaling problems on the water circulation line and cooling towers.
To keep water characteristics as same and sustainable, Chunke a reverse osmosis water treatment company has a solution. Our industrial water purification system, remove or decrease the TDS level in the water and you can not face problem with cooling towers. As water evaporates in a cooling tower, dissolved solids (and suspended solids) remain behind. These solids concentrate and increase the scaling, corrosion, and fouling potential of the water. 
For cooling, water treatment has different sections or combinations of them. You can use complete industrial water treatment systems or just the pretreatment side. Which method you will use, be clear after checking your water analysis report. Now we see steps and sections of cooling water treatment for towers.
Pretreatment Water Treatment For Cooling Towers
Multimedia pressure filterers are designed to reduce turbidity and some colloids (measured as SDI) in water for cooling water treatment systems. These filterers can remove particles down to about 10 microns in size. If a coagulant is added to the filterer influent stream, reduction of particles down to 1-2 microns can sometimes be accomplished. 
Typical removal efficiency for multimedia pressure filterers is about 50% of particles in the 10–15 micron size range. Influent turbidity for RO pretreatment is limited to about 10 NTU for cooling water treatment. At turbidity greater than 10 NTU, these filters may backwash too frequently to provide consistent effluent quality at reasonable run lengths. For this purpose, sand, and activated carbon filters can be used in water treatment for cooling towers. And filter media can be changed or make the multimedia bed and impurities can be removed.
Sodium softeners are used to treat RO influent water to remove soluble hardness (calcium, magnesium, barium, and strontium) that can form scale on RO membranes at cooling water treatment. Once known as sodium zeolite softeners, zeolites have been replaced with synthetic plastic resin beads. For sodium softeners, these resin beads are strongly acidic cation (SAC) polystyrene resin in the sodium form.
Reverse osmosis industrial water treatment systems are the process by which an applied pressure, greater than the osmotic pressure, is exerted on the compartment that once contained the high-concentration solution. This pressure forces water to pass through the membrane in a direction reverse to that of osmosis. Water now moves from the compartment with the high-concentration solution to that with the low-concentration solution. In this manner, relatively pure water passes through the membrane into one compartment while dissolved solids are retained in the other compartment. Hence, the water in one compartment is purified or “demineralized,” and the solids in the other compartment are concentrated or dewatered. 
Working Process of reverse osmosis industrial water treatment systems:
System of water treatment for cooling towers

1. Raw water pump-- provide the pressure to the quartz sand filter/activated carbon filter.
2. Quartz sand filter--get rid of turbidity, suspended matter, organic matter, colloid, etc.
3. Active carbon filter--Remove the color, free chloride, organic matter, harmful matter, etc.
4. Softener resin --exchange "ions" of calcium and magnesium with the most common and easiest method.
5. Micron filter--prevent large particles, bacteria, and viruses into the RO membrane, accuracy is 1µm or 5 µm,
6. High-pressure pump--Provide high pressure to RO membrane.
7. RO system-- the main part of the plant. The RO membrane's desalting rate can reach 99%, removing over 99% of ions.
Chunke is a manufacturer of industrial water treatment systems and gives to you the best solution for water treatment for cooling towers.

Cooling Tower Water Treatment systems are used in most applications that need cold water. Water used in the process because of heating or heat transfer needs to be cooled. So you should use a cooling water tower but when you apply this cooling process some of the water evaporates and water TDS becomes higher. 

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