Cooling tower Fill
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    PP Net Fills

    PP Net Fills

    Five hazards of ammonia 1.High direct ammonia concentration will lead to low blood oxygen concentration and directly affect the growth and development of pigs. 2. Induce respiratory diseases. 3. Decreased intestinal function of Pig. 4. High ammonia concentration, corrosion of pig raising equipment 5. Affect people's health and cause complaints from residents near the pig farm. Recently , Our domestic Pig Farm Deodorization project are going.We Latino have lots of experience of Pig farm Deodorization can give you good support and reference.

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    Marley MX75 cooling tower infill for crossflow cooling tower fill

    Marley MX75 cooling tower infill for crossflow cooling tower fill

    Marley MX75 cooling tower fill for crossflow cooling tower infill is a hanging film type cooling tower fill which spreads the water into a thin film, flowing over large vertical surfaces, promoting the maximum exposure to air flow. This cooling tower fill provides much more water surface exposure per cubic foot than the splash type fill. Marley MX75 cooling tower fill for crossflow cooling tower infill is thermoformed from PVC with a flame spread rating less than 25 per ASTM E-84 and is considered self-extinguishing. Therefore, the risk of fire damage is minimal.

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  • Condenser Spray Nozzles For Cooling Tower

    Condenser Spray Nozzles For Cooling Tower

    Latino's cooling tower nozzles ensure hot water distribution is uniform over the cooling tower fill blocks. These cooling tower nozzles are high-temperature resistant and non-clogging designed. Removing and replacing is relatively simple and does not need to stop the regular work for the cooling tower. Uniform distribution of water is the main factor for maintaining the cooling tower efficiency. This cooling tower nozzle is assebled by nozzle body、adaptor and orifice. All these three components are made from PP material. You could choose the suitable orifice depend on requirement.

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    255mm* 705mm Cooling Tower PP Splashed Grid Fill

    255mm* 705mm Cooling Tower PP Splashed Grid Fill

    The grid fill is the result of an extensive optimization of the lath width, the blockage area ratio and the lath layout; The water droplets, splashing on a well drained lath, break in a large number of very small droplets, inducing large heat exchange surface. Blockage area ratio and lozenge layout is the optimized compromise between the pressure drop and the probability of large droplets to hit the laths. The laths height has been selected to transfer the load to the supporting spacers using minimum material quantity. It may be used as well in Counterflow as in Crossflow cooling towers, mechanical or natural draft. It is well adapted to any water quality, even without water treatment, when the fouling risk cannot be determined, in particular with seawater

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    SNCS Fill For Counter Flow Cooling Towers

    SNCS Fill For Counter Flow Cooling Towers

    The Cooling Tower PVC Filler is probably the most thermally efficient fill worldwide, has proven its efficiency for more than 30 years. The sharp horizontal corrugations of cooling tower PVC filler allow even water redistribution on the sheet and water rotation for good contact with air. The offset flute design allows vertical rotation of air with limited pressure drop. This type of cooling tower fill well adapted to any induced draft or natural draft cooling tower using normal industrial water quality.

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  • Natural Draft Cooling Tower Systems

    Natural Draft Cooling Tower Systems

    A cooling tower is a specialized heat exchanger in which air and water are brought into direct contact with each other in order to reduce the water's temperature. As this occurs, a small volume of water is evaporated, reducing the temperature of the water being circulated through the tower. Water, which has been heated by an industrial process or in an air-conditioning condenser, is pumped to the cooling tower through pipes. The water sprays through nozzles onto banks of material called "fill," which slows the flow of water through the cooling tower, and exposes as much water surface area as possible for maximum air-water contact. As the water flows through the cooling tower, it is exposed to air, which is being pulled through the tower by the electric motor-driven fan. When the water and air meet, a small amount of water is evaporated, creating a cooling action. The cooled water is then pumped back to the condenser or process equipment where it absorbs heat. It will then be pumped back to the cooling tower to be cooled once again. Cooling Tower Fundamentals provides a level of basic cooling tower knowledge and is a great resource for those wanting to learn more.

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  • air inlet louver

    air inlet louver

    The fill is the most important part of the cooling tower, and its efficiency depends on the degree of sufficient contact between the cooling water and the air in the fill. The filler has a temperature resistance of 50°C to 68°C, aging resistance, excellent performance, UV resistance and long service life.

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  • Cooling Tower Fill Film

    Cooling Tower Fill Film

    The fills are suitable of any induced draft or natural draft cooling tower using normal industrial water quality. Sharp horizontal corrugations allow even water redistribution on the sheet and water rotation for good contact with air. The offset flute design allows vertical rotation of air with limited pressure drop. Hanging design type or glue sticked type are available.

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