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|a CUY
|b eng
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|c CUY
|d OCLCF
|d OCLCQ
|d VLB
|d UAB
|d KNOVL
|d CEF
|d STF
|d MERER
|d OCLCQ
|d OCLCO
|d OCLCQ
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|a 9781523115754
|q (electronic bk.)
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|a 1523115750
|q (electronic bk.)
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|z 2960046811
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|z 9782960046816
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|a (OCoLC)809854178
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|a TP156.P7
|b .P675 2007eb
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|a 697.92
|2 22
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|a UAMI
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|a Electrostatic precipitators for industrial applications /
|c Kjell Porle (ed.), Steve L. Francis, Keith M. Bradburn.
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|a Rehva electrostatic precipitators guidebook
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|a 2nd ed.
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|a Brussels, Belguim :
|b Rehva, Federation of European Heating and Air-conditioning Associations,
|c 2007.
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|a 1 online resource (ix, 105 pages) :
|b illustrations (chiefly color)
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a Rehva guidebook ;
|v no. 3
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|a At head of title: Cost G3 ; Industrial ventilation, systems and equipment.
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|a Includes bibliographical references (pages 103-105).
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|g 1. ESP in a Nutshell.
|t 2. Terminology, Symbols and Units
|t 2.1 Terms and Definitions --
|t 2.2 Symbols --
|t 2.3 Abbreviations
|g 3. Industrial Electrostatic Precipitators.
|t 3.1 Introduction --
|t 3.2 Design Methodology
|g 4. History of ESP's.
|g 5. ESP Basics.
|t 5.1 Principal Design of a Dry ESP --
|t 5.2 Migration Velocity --
|t 5.3 Corona Power and Sparking --
|t 5.4 Back-Corona --
|t 5.5 Sectionalisation --
|t 5.6 Current Distribution and Ionic Wind --
|t 5.7 Spacing and Corona Suppression --
|t 5.8 Re-Entrainment and Rapping Losses
|g 6. Power Supplies and Controls.
|t 6.1 Conventional Transformer Rectifiers --
|t 6.2 Supply Components --
|t 6.3 Why High Voltage Switches Were Used --
|t 6.4 Selecting and Substituting a Conventional TR --
|t 6.5 Switched Mode Power Supplies Can Improve ESP Performance --
|t 6.6 Controlling the TR --
|t 6.7 Basic Components --
|t 6.8 TR Controllers Basic Functions --
|t 6.9 Advanced Control Functions
|g 7. Wet Electrostatic Precipitators.
|t 7.1 Applications and Properties --
|t 7.2 Vertical Flow WESP --
|t 7.3 Horizontal Flow WESP --
|t 7.4 Design Considerations --
|t 7.5 Combined Wet and Dry ESP's
|g 8. Practical Aspects of ESP Design.
|t 8.1 Ductwork and General Layout --
|t 8.2 Precipitator Inlet Transition --
|t 8.3 Casing --
|t 8.4 Support Bearings --
|t 8.5 Precipitator Hoppers and Bottoms --
|t 8.6 Discharge Electrode System --
|t 8.7 Collecting Electrodes --
|t 8.8 Rappers
|g 9. Conditioning.
|t 9.1 General --
|t 9.2 Moisture Conditioning --
|t 9.3 SO3 Conditioning --
|t 9.4 NH3 or Dual Conditioning --
|t 9.5 Other Additives
|g 10. Typical Applications of ESPS.
|t 10.1 Overview --
|t 10.2 Power Industry --
|t 10.3 World Coal --
|t 10.4 Other Fuels --
|t 10.5 Cement --
|t 10.6 Non-Ferrous Applications --
|t 10.7 Pulp and Paper Industries --
|t 10.8 Iron & Steel --
|t 10.9 Glass Industry
|g 11. Future Development of ESPS
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|a Online resource; title from PDF title page (downloaded January 9, 2012).
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|a Knovel
|b ACADEMIC - Mechanics & Mechanical Engineering
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|a Electrostatic precipitation.
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|a Ventilation.
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|a Précipitation électrostatique.
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|a Ventilation.
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|a Electrostatic precipitation
|2 fast
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|a Ventilation
|2 fast
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|a Porle, Kjell.
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|a Francis, Steve L.
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|a Bradburn, Keith M.
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|a Federation of European Heating and Airconditioning Associations.
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|i Print version:
|t Electrostatic precipitators for industrial applications.
|b 2nd ed.
|d Brussels, Belguim : Rehva, Federation of European Heating and Air-conditioning Associations, 2007
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|a REHVA guidebook ;
|v no. 3.
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|u https://appknovel.uam.elogim.com/kn/resources/kpREHVAG11/toc
|z Texto completo
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|a 92
|b IZTAP
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