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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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PP/PVC Lamella Clarifier/Inclined Tube Settler for Wastewater Treatment
This PP/PVC Lamella Clarifier/Inclined Tube Settler for Wastewater Treatment is used in deposition and discharging sand. Recently, it is very popular in the drain aging project. With widely applicability, high efficiency, small proportion, PP/PVC Lamella Clarifier/Inclined Tube Settler for Wastewater Treatment is very suitable not only in discharge, deposition of water from daily life and industry isolation of oil, but also in the project which is being constructing, re-construction of project.
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Durable crossflow cooling tower PP infill replacement
Durable crossflow cooling tower PP infill replacement is made by PP material. It is much durable than the cooling tower PVC fill. Cooling tower PP fill is used in the counterflow cooling tower, this cooling tower infill also could been made by PVC material.
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Cooling Tower PP Fill
High performance polypropylene cooling tower fill. The fill material is PP and the operation temperature can be 90℃; Polypropylene is rapidly replacing the standard PVC fill in cooling towers due to its superior quality. LATINO PP fill is suitable to replace all major standard and high performance PVC fill and delivers equal or better performance but will outlast the PVC fill.
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Cooling Tower PP 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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High Temperature Resistance PP Cooling Tower Fill
Inclined tube is mainly used for water supply and drainage engineering of the inlet sand removal, industrial and domestic water sedimentation, sewage sedimentation, grease and tailing thickening processing, can also be used for the old pool.Main features: wet weeks, hydraulic radius is small, laminar flow, particle precipitation from flocculating flow interference.
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955mm* 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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