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Battery Recycling Equipment Manufacturing Engineering · Manufacturing · Global Service
Environmental Equipment

Pulse Jet Baghouse Dust Collector

The BREM Pulse Jet Baghouse Dust Collector is a dry filtration system designed to capture fine, non-fibrous particulate from industrial process air. Dust-laden air enters the collector housing, where heavier particles can settle toward the hopper under gravity while finer particles are retained on the outer surface of the filter bags.

Filtration method Dry filter-bag filtration
Cleaning method Compressed-air pulse jet
01 / Equipment overview

Pulse Jet Baghouse Dust Collector overview

Continuous dry fabric filtration with on-line compressed-air pulse cleaning for compatible non-fibrous process dust.

The BREM Pulse Jet Baghouse Dust Collector is a dry filtration system designed to capture fine, non-fibrous particulate from industrial process air. Dust-laden air enters the collector housing, where heavier particles can settle toward the hopper under gravity while finer particles are retained on the outer surface of the filter bags. As dust accumulates, resistance across the filter section rises. A pulse-cleaning system periodically injects compressed air into the filter bags to detach accumulated dust and restore filtration performance. Released dust falls into the hopper for controlled discharge, while filtered air exits through the clean-air section. The collector is suited to continuous dry dust-control duties in recycling, crushing, pulverizing, screening, conveying and material-handling systems where the dust characteristics are compatible with fabric filtration.

Airflow, filter area, bag quantity, air-to-cloth ratio, compressed-air pressure, fan and hopper discharge are model- or project-dependent in the source table.

Pulse Jet Baghouse Dust Collector overview

02 / Operating Principle

How the Pulse Jet Baghouse Dust Collector Works

Dust-laden air enters the collector through the inlet duct and is distributed into the baghouse chamber. As the airflow passes through the filter bags, dust is retained on the outer bag surfaces while cleaned air moves into the clean-air section and exits through the outlet. At intervals, compressed-air pulses clean the bags and dislodge the accumulated dust into the hopper for discharge.

How the Pulse Jet Baghouse Dust Collector Works
01

Dust-Laden Air Inlet

Dust-laden process air enters through the side inlet and is directed into the lower filtration chamber.

02

Bag Filtration

The airflow passes through the filter bags, where dust particles are captured on the bag surfaces while cleaned air moves upward.

03

Pulse-Jet Cleaning

Compressed-air pulses are released through the blow pipes to flex the filter bags and dislodge accumulated dust from their surfaces.

04

Dust Discharge

Dislodged dust falls into the lower hopper and is discharged through the bottom outlet for collection and downstream handling.

High-Efficiency Bag Filtration
Automatic Pulse-Jet Cleaning
Continuous Dust Hopper Discharge
03 / Suitable feedstock

Suitable materials

Dry particulate and fine powder

Non-fibrous process dust from crushing, pulverizing, screening, conveying and dry recycling.

Battery-recycling dry dust

Crushing, pulverizing, screening, conveying and black-mass handling where fabric filtration is suitable.

PCB-recycling fine particulate

Crushing, milling, screening and material-transfer dust.

Powder conveying and storage dust

Transfer points, hoppers, elevators, screw conveyors, bagging stations and bin or silo tops.

04 / Machine Architecture

Main baghouse internal structure

Equipment Anatomy Pulse Jet Baghouse Dust Collector
Main baghouse internal structure
Component Index
01

Collector housing and upper cover

Encloses dirty-air and clean-air chambers.

02

Dust inlet, dirty-air chamber and clean-air chamber

Inlet path, filtration zone and clean-air outlet path.

03

Filter bags and filter cages

Fabric filtration surface; media selected according to process conditions.

04

Blow pipes, nozzles and Venturi tubes

Deliver the pulse into each bag.

05

Electromagnetic pulse valves and compressed-air manifold

Sequential on-line cleaning.

06

Air receiver / air tank and compressed-air piping

Stores and distributes cleaning air.

07

Hopper and dust-discharge outlet

Collects detached dust; discharge method is model dependent.

08

Inspection door, support structure and fan connection

Maintenance access and induced-draft fan interface.

09

Differential-pressure connection

Monitoring of filtration resistance; configuration dependent.

05 / FILTRATION ENGINEERING

Pulse Jet Filtration System

Engineering proof

Filter bags retain dust on the outer surface. Compressed-air pulse jet cleaning expands the bags and induces reverse flow so dust falls to the hopper without stopping filtration.

Filtration method Dry filter-bag filtration
Cleaning method Compressed-air pulse jet
Cleaning mode On-line / continuous filtration
Not assumed suitable Wet, sticky, oily, hygroscopic, combustible, explosive or fibrous dust without engineering review
Configuration note VOCs, acid gas, solvent vapor, electrolyte vapor and oil mist require other technology. The baghouse controls compatible dry particulate only.
06 / Model data

Technical specifications

Pulse jet baghouse dust collector Equipment type
Dry filter-bag filtration Filtration method
Compressed-air pulse jet Cleaning method
ParameterSpecification
Equipment typePulse jet baghouse dust collector
Filtration methodDry filter-bag filtration
Cleaning methodCompressed-air pulse jet
Airflow and dust concentrationProject dependent / engineering confirmation required
Filter area, bag quantity and dimensionsModel dependent
Filter mediaSelected according to process conditions
Air-to-cloth ratioEngineering design value
Pulse valves and compressed-air pressureModel dependent / engineering confirmation required
Differential-pressure monitoringConfiguration dependent
FanOptional / project dependent
Hopper and dischargeModel dependent; manual / rotary / screw / bulk bag
Inlet and outlet diameterProject specific
Operating temperatureFilter-media dependent
Overall dimensions and weightModel dependent

Table transcribed from content.md. Numeric airflow, filter area and pressure values were not present and were not guessed.

07 / Applications

Where the machine sits in a recycling process

Typical upstream Crusher / pulverizer Air classification / screening Dust extraction hood and duct
→
Active machine Pulse Jet Baghouse Dust Collector
→

Battery recycling lines

Dry dust extraction from crushing, pulverizing, screening, conveying and black-mass handling where fabric filtration is suitable.

PCB recycling lines

Fine particulate from crushing, milling, screening and transfer.

Shredding and crushing systems

Centralized extraction for compatible dry size-reduction processes.

Powder conveying and storage

Collection at transfer points, hoppers, elevators, screws, bagging and silo tops.

Metal and mineral processing

Dry particulate from compatible crushing, grinding and screening.

08 / Selection inputs

Information for Equipment Selection

01

Material

  • Dust type, concentration, particle size, bulk density, moisture, oil content and stickiness
  • Corrosiveness and combustible/explosive characteristics
02

Production Requirement

  • Process equipment, dust source, airflow and number of suction points
  • Target limit and operating hours
  • Discharge method
03

Site & Utilities

  • Gas temperature and humidity
  • Duct layout and available footprint
  • Country, voltage and compressed-air availability
09 / Equipment FAQ

Common selection questions

What type of dust can a pulse jet baghouse collect?

It is mainly intended for compatible dry, fine, non-fibrous particulate.

How does pulse cleaning work?

Compressed air expands the filter bags and induces reverse airflow, detaching accumulated dust into the hopper.

Does the system need to stop during cleaning?

Depending on configuration, pulse cleaning can be performed during normal operation.

Can it handle wet, sticky or combustible dust?

Not automatically. Such dusts require material-specific filtration, moisture and safety engineering.

Do I need an induced-draft fan?

Most centralized extraction systems require a fan, but the final selection depends on airflow and total system resistance.

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