Pulse-Jet Filtration: an Effective Way to Control Industrial Pollution

Pulse-Jet Filtration: an Effective Way to Control Industrial Pollution PDF Author: Arunangshu Mukhopadhyay
Publisher: Routledge
ISBN: 1351420895
Category : Technology & Engineering
Languages : en
Pages : 128

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Book Description
This book provides the fundamental concept of design and development of pulse-jet filters under varied situations. It discusses technical and commercial solutions for successful operation of textile industries integrated with pollution control equipment maintaining clean air requirements.

Pulse-Jet Filtration: an Effective Way to Control Industrial Pollution

Pulse-Jet Filtration: an Effective Way to Control Industrial Pollution PDF Author: Arunangshu Mukhopadhyay
Publisher: Routledge
ISBN: 1351420895
Category : Technology & Engineering
Languages : en
Pages : 128

Get Book Here

Book Description
This book provides the fundamental concept of design and development of pulse-jet filters under varied situations. It discusses technical and commercial solutions for successful operation of textile industries integrated with pollution control equipment maintaining clean air requirements.

Pulse-jet Filtration

Pulse-jet Filtration PDF Author: Arunangshu Mukhopadhyay
Publisher:
ISBN: 9780203741696
Category : TECHNOLOGY & ENGINEERING
Languages : en
Pages : 315

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Book Description


Pulse-Jet Filtration

Pulse-Jet Filtration PDF Author: Arunangshu Mukhopadhyay
Publisher: CRC Press
ISBN: 9781138458796
Category :
Languages : en
Pages : 132

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Book Description
This book provides the fundamental concept of design and development of pulse-jet filters under varied situations. It discusses technical and commercial solutions for successful operation of textile industries integrated with pollution control equipment maintaining clean air requirements.

Pulse-Jet Filtration

Pulse-Jet Filtration PDF Author: Arunangshu Mukhopadhyay
Publisher: CRC Press
ISBN: 9780415592871
Category : Technology & Engineering
Languages : en
Pages : 97

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Book Description
For successfully running industrial pulse-jet filters, the fundamentals of the filtration process and operating principle should be well understood. This book develops an in-depth understanding of the mechanism and factors governing the filtration process. It covers modeling and simulation aspects related to the filtration process, helping you judge process performance for effective process monitoring and set the process and design parameters at an optimum level. The text also incorporates a thorough examination of various methods for testing and evaluating filter media.

Principles of Pulse Jet Fabric Filter & Cartridge Filter Performance

Principles of Pulse Jet Fabric Filter & Cartridge Filter Performance PDF Author: Dustex Corporation
Publisher:
ISBN:
Category : Air filters
Languages : en
Pages : 48

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Book Description


Pressure Drop in a Pulse-jet Fabric Filter

Pressure Drop in a Pulse-jet Fabric Filter PDF Author: Michael John Ellenbecker
Publisher:
ISBN:
Category :
Languages : en
Pages : 360

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Book Description


Fabric Filter

Fabric Filter PDF Author: Daniel Mussatti
Publisher:
ISBN:
Category :
Languages : en
Pages : 6

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Book Description


Predictive Model for the Pulse Pressure in a Pulse-jet Fabric Filter

Predictive Model for the Pulse Pressure in a Pulse-jet Fabric Filter PDF Author: Satoru Mitsutomi
Publisher:
ISBN:
Category : Air filters
Languages : en
Pages : 306

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Book Description


Experimental Study and Numerical Analysis for Pleated Filter Cartridges in a Pulse-jet Cleaned Dust Collector

Experimental Study and Numerical Analysis for Pleated Filter Cartridges in a Pulse-jet Cleaned Dust Collector PDF Author: Li-Ming Lo
Publisher:
ISBN:
Category :
Languages : en
Pages : 310

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Book Description


Performance of Pulse-jet Bag Filter Regarding Particle Removal for Nano-waste Incineration Conditions

Performance of Pulse-jet Bag Filter Regarding Particle Removal for Nano-waste Incineration Conditions PDF Author: Rachid Boudhan
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
Filtration performance of a pulse-jet bag filter was evaluated at the laboratory-scale regarding submicronic particles with a nanosized fraction during clogging/unclogging cycles. The particle size distribution was representative to those encountered at the outlet of a nano-waste incineration device at laboratory-scale. The bag filter was operated in conditions as similar as possible to those found in flue gas treatment of waste incineration plants, in terms of temperature, humidity, filtration velocity, injection of sorbent reagents and unclogging conditions. The air flow and the bag filter were heated to 150°C, the water content was maintained in the air flow in the range of 10-12% (3% of relative humidity RH), and filtration velocity throughout the bag filter was fixed at 1.9 cm.s−1. A mixture of submicronic suspended particles of activated carbon and sodium bicarbonate, both used in flue gas treatment systems mainly for the removal of dioxins/furans and acid gases, was generated simultaneously with the aerosol representative of combustion emissions.The study focused on the filtration performance at the beginning of the bag filter's lifetime filter for the 11 first clogging-unclogging cycles before stabilizing the residual pressure drop reached after pulse-jet unclogging. The maximum pressure drop was set at 150 Pa for all filtration cycles. Once the maximum pressure drop was reached, the filter was unclogged using the pulse-jet system. The performance of the bag filter was evaluated in terms of the evolution of pressure drop, fractional and total particle collection efficiencies, during the clogging/unclogging cycles.Moreover, an experimental and theoretical study was carried out on the influence of different parameters on the filtration performance of bag filter and flat filter, such as influence of humidity (3% RH versus 0% RH at 150°C), temperature (150°C versus 24°C), filtration velocity (1.9 cm.s−1 versus 1.4 cm.s−1) and the influence of the injection of sorbent reagents.The main results of this study are: (i) high collection efficiency of the bag filter in representative conditions of flue gas treatment of waste incineration: minimun particle collection efficiency of 98.5% for particle diameter of 74 ± 15 nm (electrical mobility diameter), (ii) influence of residual particle cake at the beginning of the filtration cycles on the bag filter performance, (iii) significant influence of humidity on the porosity of the particle cake due to the capillary condensation of water between the particles in presence of humidity (150°C - 3% RH i.e. almost 100 g of water per kg of dry air). Faster increase of bag filter pressure drop in presence of humidiy (150°C - 3% RH) as compared to the dry conditions (150°C - 0% RH).