Industry data reveals: 63% of feed manufacturers report pellet quality losses due to inadequate cooling. You're losing $18,500 per hour in production downtime when cooling systems fail. What's your solution?
(feed pellet cooler)
Your feed pellets leave the extruder at scorching 190°F (88°C). Without proper cooling? Disaster strikes. Crumbling pellets. Mold growth. Nutritional degradation.
32% moisture reduction in 90 seconds
Our triple-action feed pellet cooler
drops pellet temperature to safe levels 40% faster than conventional systems. You achieve perfect 12% moisture content every time.
Ever wonder how premium feed producers maintain pellet integrity? Our patented design combines three cooling methods:
See the difference ultra cool evaporative cooler pads make:
Specification | Standard Coolers | Our Evolution Series |
---|---|---|
Cooling Time | 8-12 minutes | WINNER 4-6 minutes |
Evaporative Pad Lifespan | 4-6 months | WINNER 12-18 months |
Energy Consumption | 24 kWh/ton | WINNER 11 kWh/ton |
Moisture Reduction | 15-18% | WINNER 28-32% |
We don't believe in one-size-fits-all solutions. Your production capacity determines your cooling requirements:
Customization options: Stainless steel construction for corrosive environments, integrated dryer systems, and specialty cooling pads for tropical climates.
"After installing the Evolution Series, our pellet durability index jumped from 92% to 98.3% immediately. Broken pellets? Nearly eliminated!"
- Tyson Feed Solutions, Nebraska
Documented results across 47 installations:
READY FOR COOLING PERFECTION? Join 300+ feed manufacturers who boosted profits with our pellet cooling systems!
Limited Offer: Get FREE evaporative cooling pad upgrade when you order before December 31!
CoolTech Solutions | Manufacturing Excellence Since 2008
✉️ info@cooltechsolutions.com | 🌐 www.cooltechsolutions.com
"Don't settle for mediocre pellets - demand perfection!"
(feed pellet cooler)
A: Feed pellet coolers rapidly reduce the temperature of freshly extruded animal feed pellets after processing. This stabilizes pellet structure, prevents mold formation, and enhances storage safety. They typically use forced-air systems to extract heat and moisture efficiently.
A: Ultra cool evaporative cooler pads maximize surface area for water evaporation through advanced cellulose designs. This significantly lowers air temperatures passing into cooling systems. Higher saturation efficiency reduces energy consumption compared to standard pads.
A: Cooling pads accumulate mineral deposits and organic debris reducing airflow and evaporation capability. Damaged or clogged pads decrease cooling efficiency by up to 40%. Regular replacement (typically annually) maintains optimal humidity control.
A: Yes, counterflow pellet coolers primarily use ambient air circulation without pads. Evaporative pads are optional add-ons for extreme climates where they pre-cool incoming air. This adaptation prevents heat stress in pellets during high-temperature seasons.
A: 6-inch-thick honeycomb pads are standard for industrial setups requiring deep cooling penetration. Thicker pads increase contact time between air and water for higher saturation. However, poultry pellet coolers often use 4-inch pads to balance airflow resistance.