Longxin powder processing equipment

Closed-Loop Spray Dryer

Engineered powder-processing equipment configured around material behavior, capacity and product targets.

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Closed-Loop Spray Dryer

Category: Closed-Cycle Dryer

The Longxin BLPG closed-loop spray dryer is designed for suitable solvent-based or oxidation-sensitive feeds. Its configuration combines rotary atomization, a recirculating inert-gas circuit, powder collection and solvent condensation.

Gas controls, the recovery arrangement and protective measures are specified for the actual material, solvent and operating conditions.

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Spray Drying with Inert-Gas Circulation and Solvent Recovery

The BLPG closed-loop spray dryer converts suitable solvent-based solutions, emulsions, suspensions and pumpable pastes into powder. It combines rotary atomization with an enclosed drying-gas circuit, powder collection and solvent condensation.

The process is intended for applications where the solvent needs to be recovered or the material benefits from reduced oxygen exposure. Recovered solvent can be reused after the required downstream treatment, depending on solvent purity and process requirements.

BLPG closed-loop spray dryer with stainless steel vessels and access platforms
BLPG Closed-Loop Spray Dryer

How the Closed-Loop Process Works

  1. Inert-gas heating: nitrogen or another specified inert gas is heated and supplied to the drying chamber.
  2. Feed atomization: a feed pump delivers the liquid to a rotary atomizer, which disperses it into fine droplets.
  3. Rapid drying: the droplets contact the heated inert gas. Solvent evaporates and dry particles form for discharge and collection.
  4. Powder separation: a cyclone and bag filter separate entrained powder from the gas stream. Nitrogen pulse cleaning is used for the specified filter arrangement.
  5. Solvent condensation: the gas passes through a condenser to recover solvent as a liquid. A downstream gas–liquid separator limits liquid carryover.
  6. Gas recirculation: the conditioned gas is reheated and returned to the chamber. Pressure monitoring regulates nitrogen make-up to maintain the specified system pressure.
Three-dimensional layout of a BLPG closed-loop spray drying system on an elevated platform
Closed-Loop Spray Drying System Layout

System Features

  • Enclosed gas circuit: sealed vessels and pipe connections limit material loss and atmospheric ingress.
  • Reduced oxygen exposure: inert-gas circulation and online oxygen monitoring support atmosphere control for oxidation-sensitive feeds.
  • Solvent recovery: condensation and liquid separation recover the evaporated solvent for appropriate downstream handling or reuse.
  • Powder collection: the cyclone and filter arrangement is selected to recover fine particles from the circulating gas.
  • Cleaning access: clean-in-place equipment is included in the described configuration.
  • PLC and touchscreen control: the interface displays the process flow and operating conditions. Process settings can be adjusted to influence particle size, bulk density and residual moisture or solvent.

The inert-gas system, pressure and oxygen controls, sealing arrangement and protective equipment are specified for the actual feed and solvent. These features support controlled processing; the required configuration depends on the application.

Process Configurations

Standard Closed-Loop Arrangement

The standard circuit combines the spray dryer, powder collection, solvent condenser, gas–liquid separation, circulation fan and heater. It recovers solvent while returning the drying gas to the process.

Process flow diagram of a BLPG nitrogen-loop spray dryer with powder collection and solvent condensation
Standard Closed-Loop Process Flow

Arrangement with Heat Recovery

A heat recovery unit can be incorporated into the gas circuit to recover part of the available process heat. The arrangement is selected for the solvent system, operating temperatures and utility requirements.

BLPG closed-loop spray drying process diagram incorporating a heat recovery unit
Closed-Loop Process with Heat Recovery

Open-Cycle and Closed-Loop Spray Drying

An open-cycle dryer normally uses a once-through drying-gas stream. In the BLPG closed-loop arrangement, an inert gas circulates through drying, powder collection, solvent condensation and reheating stages. The enclosed loop therefore adds solvent recovery and atmosphere control to the spray-drying process.

The described BLPG system operates at a controlled positive pressure with nitrogen make-up. Operating pressure and gas composition are set for the selected installation. Recirculation reduces the need for fresh drying gas; utility consumption depends on both the heating and condensation duties.

Typical Applications

  • Advanced ceramics: tungsten carbide, silicon nitride, silicon carbide and nanoceramic powders.
  • Powder metallurgy and battery materials: suitable hardmetal and battery-material suspensions requiring a controlled drying atmosphere.
  • Catalysts and fine chemicals: catalyst slurries, synthetic resins and other suitable organic-solvent-based feeds.
  • Pharmaceutical and biological materials: solvent-containing formulations and extracts, with equipment and process conditions matched to the product requirements.

The illustrated installations include BLPG-1500, BLPG-500, BLPG-200, BLPG-150, BLPG-100, BLPG-50, BLPG-25 and BLPG-10 configurations, together with HC spray dryer installations and a catalyst-drying system. The Technical Specifications tab summarizes the supplied process references.

Define Your Solvent-Based Drying Application

For equipment selection, provide the feed composition and solvent system, solids content, viscosity, feed rate, required evaporation duty, target particle size, allowable residual solvent and temperature limits. Include the solvent recovery requirement, available nitrogen and utilities, cleaning requirements and installation space.

Selection Questions

How is drying gas reused in a closed-loop spray dryer?

After powder separation, the gas passes through solvent condensation and gas-liquid separation. It is then reheated and returned to the drying chamber.

Can recovered solvent be reused directly?

Reuse depends on the required solvent purity and any downstream treatment. The recovery system should be specified around the solvent and the production process.

Compare Spray Drying Options

Rotary atomizer spray dryer · Two-fluid nozzle spray dryer · Pressure nozzle spray dryer

Discuss your material and request an equipment recommendation.

BLPG Process and Configuration Reference

These values describe the supplied process references. Performance is material-dependent and is confirmed for the selected equipment and operating conditions.

ParameterReference
Equipment seriesBLPG closed-loop rotary-atomization spray dryer
Drying mediumRecirculating nitrogen or another specified inert gas
Suitable feed formsSolutions, emulsions, suspensions and pumpable pastes matched to the atomizer
Solvent examplesEthanol, n-hexane and butanol; suitability is assessed for the complete formulation
Powder collectionCyclone separation and bag filtration with nitrogen pulse cleaning, as configured
Solvent recoveryCondenser and gas–liquid separation; recovered solvent may require further treatment before reuse
Pressure controlControlled positive-pressure operation with pressure monitoring and nitrogen make-up
Sealing referenceThe supplied sealing-design reference is 10 kPa positive pressure; the operating setpoint is specified for the installation
Dry powder recoveryReference value ≥95%; actual recovery depends on the material and collection configuration
Residual solvent in productReference value ≤2%; the product-specific acceptance limit and achievable result require application confirmation
Drying timeTypical reference range 5–40 s, depending on feed and operating conditions
Monitoring and controlsOnline system pressure and oxygen monitoring; PLC with touchscreen interface
CleaningClean-in-place arrangement in the described configuration
Heat recoveryOptional heat recovery arrangement as shown in the process diagram

Feed capacity, solvent evaporation rate, installed power, nitrogen consumption, condenser duty and overall dimensions are specified for the selected model and application.

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