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KEM WET™ – Feed Efficiency – Science-Driven Solution for Modern Feed Mills
KEM WET™ product range is a synergistic blend of surface-active agents designed to optimize moisture management during feed conditioning and pelleting. By reducing water surface tension, it enables deeper moisture penetration and uniform distribution within feed particles, improving pelleting efficiency, process throughput, and energy utilization. Enhanced moisture retention supports higher feed yield and finished feed weight, helping feed mills achieve measurable productivity and sustainability gains.
KEM WET optimizes moisture absorption and distribution during feed conditioning, producing pellets with exceptional durability and fewer fines retaining weight. This improvement ensures consistent feed integrity, reduces waste, and supports optimal animal performance across diverse diets. By improving pellet structure, feed mills can deliver uniform particle size and density, which enhances nutrient availability and digestion efficiency for livestock. The result is better feed conversion and improved return on investment for producers.
Maximize Energy Savings and Throughput
By lowering water surface tension, KEM WET accelerates conditioning and pelleting processes, enabling feed mills to achieve higher throughput without sacrificing quality. Reduced steam requirements and lower energy consumption translate into significant operational cost savings and improved sustainability metrics. This efficiency gain allows manufacturers to meet growing production demands while maintaining strict quality standards.
KEM WET stands apart through its unique blend of surfactants engineered with an optimized Hydrophilic–Lipophilic Balance (HLB) to maximize wetting efficiency and moisture distribution in feed particles. This targeted surfactant system enhances moisture penetration and retention, enabling more uniform conditioning, improved pelleting efficiency, and higher process throughput . The result is consistently stronger pellet durability, fewer fines, feed weight gain, improved feed integrity, and reduced energy consumption compared with conventional conditioning approaches.
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