Longxin powder processing equipment

Single-Pass Mesh Belt Dryer

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

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Single-Pass Mesh Belt Dryer

Category: Conveyor Dryer

The Longxin DWD mesh belt dryer conveys a permeable layer of suitable wet material through controlled through-air drying zones. Each zone has its own lateral air-circulation loop, while belt speed sets residence time. Belt material, feed formation, airflow direction, temperature and cleaning options are selected for the product and plant layout.

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Continuous Through-Air Drying on a Mesh Conveyor

The Longxin DWD mesh belt dryer carries a uniformly distributed layer of material through controlled hot-air drying zones. It is designed for products that can form a permeable bed on a conveyor, including suitable food products, herbal slices, granules and preformed wet materials.

Developed from Longxin's DWT belt-dryer platform, the DWD arrangement separates the heat exchangers from the product chamber and gives each drying zone its own lateral air circulation loop. The belt, feed arrangement and process conditions are selected for the material.

DWD mesh belt dryer with a feed hopper and continuous conveyor
DWD Mesh Belt Dryer Installation

How the DWD Belt Dryer Works

  1. Uniform feeding: a suitable feeder spreads the wet material evenly across the variable-speed conveyor.
  2. Through-air contact: heated air passes through the openings in the mesh and the spaces within the material bed. Upward or downward airflow is used according to the zone arrangement.
  3. Independent zone circulation: each unit recirculates air laterally, allowing temperature and airflow to be adjusted for the drying stage.
  4. Residence-time control: conveyor speed determines how long the material remains in the dryer. Feed rate, bed depth and airflow are coordinated with this setting.
  5. Product discharge: the dried material leaves the belt for collection or transfer to the next process stage.
DWD dryer cross-sections showing upward and downward airflow through the material bed
Upward and Downward Airflow Sections

Design Features

  • Separate heat-exchanger chambers: the heaters are located beside the drying chamber, reducing contact between falling particles and heating surfaces.
  • Independent circulation zones: each zone has its own forced-air loop, supporting air penetration through the bed and flexible process control.
  • Gentle conveyor transport: material travels with the belt without mechanical agitation within the drying bed, helping preserve its form.
  • Adjustable operating conditions: drying temperature, airflow and conveyor speed can be matched to the product and drying stage.
  • Moisture control: feed rate and residence time can be adjusted to work toward the target final moisture. Achievable results depend on the material and process conditions.

Conveyor and Process Configurations

Single-Pass Drying

A single-pass arrangement carries the material through a sequence of drying zones. The layout below shows the conveyor path, circulation units and exhaust connections.

Plan and elevation drawing of a single-pass mesh belt dryer with multiple circulation zones
Single-Pass Belt Dryer Layout

Multi-Pass Drying

A multi-pass arrangement transfers material between stacked conveyor levels. Belt layout, transfer points and air circulation are selected for the product's handling requirements and available space.

Multi-pass belt dryer drawing with stacked conveyor levels and air circulation units
Multi-Pass Belt Dryer Layout

Multiple Dryers in Series

Two or more dryers can be connected in series to provide additional drying area or separate stages. The arrangement is selected from the required throughput, feed moisture and final product target.

Layout drawing of two belt dryers connected in series for staged drying
Belt Dryers in Series

Available Options

  • Conveyor selection: stainless steel wire mesh is standard. Other mesh structures, perforated stainless steel plate belts, chain-plate belts and PTFE non-stick mesh can be considered for the material and operating temperature.
  • Dust collection: cyclone, bag-filter or wet dust-collection equipment can be configured for feeds that release fine particles.
  • Bottom cleanout: a scraper arrangement can move small amounts of fallen material toward the discharge end.
  • Belt cleaning: cleaning brushes or other belt-cleaning mechanisms can remove adhering material.
  • Belt washing: an optional arrangement places the return belt beneath and outside the heated chamber for spray cleaning.
  • Feed preparation: extrusion or other forming equipment can prepare suitable fine powders, pastes and wet masses before belt drying.

Typical Applications

Longxin configures the dryer around the feed properties and product requirements. Applications described for the DWD series include:

  • Dehydrated vegetables and sliced herbal materials.
  • Food seasonings, nuts, seeds and related snack products.
  • Pigments and dyes in suitable permeable or preformed feed forms.
  • Plastic granules requiring drying or heat treatment.
  • Other formed granules and wet materials that can be distributed as an air-permeable bed.

The gallery includes complete drying lines, feed extrusion equipment, belt drives, cleaning brushes, wire mesh and perforated plate conveyor options.

Specify Your Belt Drying Application

Provide the feed rate, initial and target moisture, material dimensions, bulk density, temperature limit and bed permeability. Include any forming or cleaning requirements, available steam and electrical utilities, and installation space. These inputs determine the belt type, drying area, airflow, zone temperatures and conveyor speed.

Selection Questions

Which feeds suit a mesh belt dryer?

Suitable materials can be distributed as an air-permeable layer on the conveyor, such as formed granules, sliced materials or selected food products. Material dimensions, bed depth and permeability must be assessed for the drying duty.

What information is needed to select a DWD dryer?

Provide feed rate, initial and target moisture, material dimensions, bulk density, temperature limit and bed permeability, plus forming or cleaning needs, available utilities and installation space.

Related Equipment and Applications

Discuss your material and request an equipment recommendation.

Drying Area and Equipment Size

Standard model reference data. Drying-bed dimensions below retain the order used in the supplied schedule; overall equipment dimensions are listed as length × width × height.

ModelDrying area (m²)Drying-bed dimensions (m)Drying zonesOverall L × W × H (m)Weight (kg)
DWD-1.2×89.61.2×849.8×1.5×2.84800
DWD-1.2×10121.2×10511.8×1.5×2.85800
DWD-1.6×812.81.6×849.8×2.4×2.85400
DWD-1.6×10161.6×10511.8×2.2×2.86500
DWD-2×8162×849.8×2.7×3.56400
DWD-2×10202×10511.8×2.7×3.57800

Operating References

Operating temperature: 50–150 °C. Steam supply pressure: 0.2–0.6 MPa. Settings are selected for the material and drying duty.

ModelSteam consumption (kg/h)Drying time (h)Reported drying capacity (kg/h)Total power (kW)
DWD-1.2×8120–2500.2–1.560–16011.4
DWD-1.2×10150–3750.25–1.580–22013.6
DWD-1.6×8150–3750.2–1.580–22011.4
DWD-1.6×10170–4700.25–1.595–25013.6
DWD-2×8225–6000.25–1.5100–26019.7
DWD-2×10450–12000.25–1.5120–30021.7

The source schedule does not define whether drying capacity refers to feed throughput or water evaporation. Confirm the capacity basis, material and moisture conditions when selecting equipment. Steam consumption and drying time are process-dependent reference ranges.

Drying area can be increased by combining units in series. Final belt material, utility requirements and installation dimensions are confirmed for the selected configuration.

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