Su proveedor de ventanilla única para equipos de sala limpia y elementos esenciales para instalaciones asépticasApoyo a proyectos internacionales
Open mobile navigationClose mobile navigation
Equipos de HVAC y manejo de aire para salas limpias

Unidad de manejo de aire de sala seca

An integrated desiccant air handler that combines deep moisture removal, regeneration, cooling and recirculation for ultra-dry production rooms.
  • Desiccant Rotor Drying
  • Low Dew-Point Supply
  • Separated Regeneration Air
  • High Recirculation Efficiency
Solicite un presupuesto. Browse productos

Introducción del producto

The dry room air handling unit removes water vapor beyond the practical range of cooling coils by passing process air through a continuously regenerated desiccant rotor. A pre-cooling stage reduces incoming moisture load, the rotor performs deep drying, and post-cooling controls supply temperature. A separate heated regeneration airstream removes captured moisture from the rotor and discharges it outdoors. Recirculating most of the dry-room air limits the outdoor moisture load, while sealed casing and low-leakage dampers protect the achieved dew point.

Características clave

A desiccant rotor removes vapor at dew points where condensation-based cooling becomes inefficient.

Separated process and regeneration air paths prevent wet regeneration exhaust from mixing with dry supply air.

Pre-cooling and sensible post-cooling reduce rotor load and set the final supply temperature.

High dry-air recirculation minimizes the quantity of humid outdoor air that requires deep treatment.

Preocupaciones del producto del cliente

Ultra-low humidity is easily lost through casing leakage, door infiltration, wet regeneration carryover and moisture released by process materials.

A chilled-water coil cannot reach the required dry-room dew point.The desiccant rotor adsorbs remaining vapor after the air is precooled.
Regeneration exhaust leaks into the dry process airstream.Sealed rotor sectors, pressure control and purge arrangements limit cross-stream carryover.
Opening personnel or material doors causes slow humidity recovery.Sufficient recirculation airflow and controlled dry-air make-up remove the infiltration moisture load.
Reactivation heat dominates system energy use.Purge optimization, heat recovery and the appropriate steam, gas, electric or heat-pump source reduce regeneration demand.

Aplicaciones típicas

Lithium-ion battery dry roomsMoisture-sensitive pharmaceutical processingDry powder productionElectronics and component storageResearch-scale ultra-dry laboratories

Parámetros técnicos

Typical insulated casing construction for an integrated dry-room air handling unit is summarized below.

Materiales CoreClosed-cell polyurethane insulation with silica-gel or molecular-sieve desiccant rotor media
Panel de espesor60–100 mm low-leakage insulated casing
Ancho efectivo1200–4200 mm nominal equipment width
Longitud máximaUp to 15000 mm including process and regeneration treatment sections
Acero frente a espesor0.8–1.2 mm coated or stainless casing skins
Densidad Core40–45 kg/m³ polyurethane panel insulation
Conductividad térmica0.022–0.026 W/(m·K) for casing insulation
Superficie acabadaPowder-coated exterior with sealed galvanized or stainless cleanable inner surfaces
Tipo conjuntoCompression-gasketed low-leakage panels with sealed process and regeneration air paths
CustomizationDisponible según la aplicación prevista y el entorno operativo.

Opciones disponibles

Silica-gel or molecular-sieve rotorSteam, gas, electric or heat-pump regenerationDeep-drying single or multi-stage arrangementHeat recovery and purge-sector optimization

Planning a Dry Room Air Handling Unit specification?

Envíenos sus dimensiones, condiciones de instalación, objetivos de rendimiento y acabado superficial requerido.

Habla con nuestro equipo
E-mail Nos WhatsApp WeChat

Inicio

Productos

Noticias

Nosotros

Contacto