The baghouse filter Pulco Air is a dry filtration system used to purify the air from suspended solid particles.
Advantages
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
How it works
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
No customer reviews for the moment.
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
Guide to possible configurations:
|
LETTER 1 Air inlet |
LETTER 2 Frontal extraction system |
LETTER 3 Dust extraction |
LETTER 4 Explosion-proof panels (only for ATEX/NFPA filters) |
|---|---|---|---|
|
N Inlect into the hopper |
S Standard (frontal extraction system without ladder, hand railings and without the box) |
B Bin |
A Frontal explosion-proof panels |
|
C Pre-filtration chamber |
T Extraction system from the top with ladder and hand railings |
C Screw conveyor (Cochlea) |
X Roof explosion-proof panels |
|
F Fan |
V Rotary valve |
The baghouse filter Pulco Air NSB is configured with a dirty air inlet directly into the hopper, frontal extraction system of the filtering elements, and dust discharge in a special bin placed under the hopper.
The baghouse filter Pulco Air CSB is configured with a dirty air inlet consisting of a pre-filtration chamber, frontal extraction system of the filtering elements, and dust discharge in a special bin located under the hopper.
The baghouse filter Pulco Air CSV is configured with a dirty air inlet consisting of a pre-filtration chamber, frontal extraction system of the filtering elements, and dust discharge through the action of the rotary valve.
The baghouse filter Pulco Air CSC is configurated with dirty air inlet consisting of a pre-filtration chamber, frontal extraction system of the filtering elements, dust discharge through the combined action of rotary valve and screw conveyor.
The baghouse filter Pulco Air NTC is configuated with dirty air inlet directly into the hopper, extraction system from the top of the filtering elements, dust discharge through the combined action of a rotary valve and screw conveyor.
The baghouse filter Pulco Air CTC is configured with a dirty air inlet consisting of a pre-filtration chamber, extraction system from the top of the filtering elements, and dust discharge through the combined action of rotary valve and cochlea.
The baghouse filter Pulco Air NSVA is configured with dirty air entering directly into the hopper, frontal extraction system of the filtering elements, dust discharge through the action of the rotary valve, and components suitable for the ATEX zone.
The baghouse filter Pulco Air CSCA is configured with a dirty air inlet consisting of a pre-filtration chamber, frontal extraction of the filtering elements, dust discharge through the combined action of a rotary valve and a cochlea, and components suitable for the ATEX zone.
The baghouse filter Pulco Air NTVA is configuated with dirty air entering directly into the hopper, extraction system from the top of the filtering elements, dust discharge through the action of the star valve, components suitable for the ATEX zone.
The baghouse filter Pulco Air CTVA is configuated with dirty air inlet consisting of a pre-filtration chamber, extraction system from the top of the filtering elements, dust discharge through the action of the rotary valve, components suitable for the ATEX zone.
The baghouse filter Pulco Air CTCA is configuated with dirty air inlet consisting of a pre-filtration chamber, extraction system from the top of the filtering elements, dust discharge through the combined action of a rotary valve and cochlea, components suitable for the ATEX zone.
The baghouse filter Pulco Air NSVX is configuated with dirty air entering directly into the hopper, frontal extraction system of the filtering elements, dust discharge through the action of the rotary valve, components suitable for the ATEX zone with explosion-proof panels installed on the roof.
The baghouse filter Pulco Air CSVA is configuated with dirty air inlet consisting of a pre-filtration chamber, frontal extraction system of the filtering elements, dust discharge through the action of the rotary valve, components suitable for the ATEX zone.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
Thanks to the installation of the baghouse dust collector Pulco Air it is possible to treat a wide range of pollutants, even in the presence of high temperatures or humidity, by ensuring the quality of the filtered air in the production environment and protection for workers. Filter elements cleaning is managed by pressure drop reading, favouring a lower compressed air consumption and an increased life for bags.
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags
The dusty air is conveyed to the filter bags from the outside to the inside, depositing the impurities on the external part of the filter elements and in the collecting hopper. A compressed air jet, stored in a special tank, is injected cyclically in the bags, creating a wave of shaking able to detach and topple the particles deposited on the external part of the bags