Cellulose Pads (Vapur+)

Cellulose Pads (Vapur+)

Cellulose Pad are of imported origin of VAPUR+ make. The cooling pad is made of Cellulose (Pulp) sheet and bonded together in 7 mm flute size in 45° x 45° angle.
The Cellulose pad is cross corrugated coated with antirot, rigidifying and wetting resigns. The VAPUR+ Pads are for maximum efficiency, at minimum pressure drop. These pads are commonly used for their filtration properties in various applications, particularly in humidifiers, air filters, cooling systems, and water filtration systems. Cellulose is a highly porous material, allowing it to trap dust, dirt, bacteria, and other particles from the air or water while permitting fluid (air or water) to pass through. Cellulose pads are popular for their efficiency, eco-friendliness, and cost-effectiveness.


CELLULOSE PAD VAPUR+ – TECHNICAL SPECIFICATION 

1.    Material -
 Specially treated Cellulose Pulp Paper
2.    Pad Type - Cross-Corrugated Evaporative Cooling Media
3.    Flute Size - 7 mm
4.    Flute Angle - 45° × 45°
5.    Standard Width - 600 mm
6.    Available Thickness - 100 / 150 / 200 / 300 mm, depending on system requirement
7.    Surface Treatment - Anti-Rot, Rigidifying & Wetting Resin
8.    Water Absorption - High water absorption and retention capacity
9.    Air–Water Contact - Maximized through cross-corrugated construction
10.  Pressure Drop - Low pressure drop for efficient air movement
11.  Cooling Performance - High saturation/evaporative efficiency depending on air velocity and pad depth
12.  Water Distribution - Continuous wetting through recirculating water system
13. Application - Air Washers, AHUs, Evaporative Coolers & Industrial Cooling Systems
14. Design Advantage - Efficient cooling with minimum pressure loss and reliable continuous operation. 

CELLULOSE PAD VAPUR+ – DESCRIPTION


VAPUR+ Cellulose Cooling Pad is a high-efficiency evaporative cooling media designed for air washers and evaporative cooling systems. It is manufactured from specially treated cellulose pulp sheets, bonded in a cross-corrugated structure to provide maximum air–water contact. The pad efficiently absorbs and retains water, enabling effective evaporative cooling with low pressure drop. Anti-rot, rigidifying and wetting resin treatment enhances durability, structural strength and long-term performance.