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ISO 22967:2010
ISO 22967:2010 Forced draught gas burners
CDN $390.00
Description
ISO 22967:2010 specifies the terminology, test procedures and general requirements for the construction and operation of automatic forced draught gas burners, and the provision of related control and safety devices.
It is applicable to automatic gas burners fitted with a combustion air fan, equipped as described therein, and intended for use in appliances of different types and operated with fuel gases, total pre‚Äëmixed burners and nozzle mixed burners, single burners with a single combustion chamber, single‚Äëfuel and dual‚Äëfuel burners when operating only on gas, and the gas function of dual-fuel burners designed for simultaneous operation on gaseous and liquid fuels (for the latter operation, see also ISO 22968).
It is not applicable to burners used in direct fired processes either with defined combustion chamber applications or where the combustion chamber wall surface temperature is greater than 750 °C or the heat‑transfer medium temperature is greater than 500 °C.
Edition
1
Published Date
2010-10-19
Status
PUBLISHED
Pages
88
Format 
Secure PDF
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Abstract
ISO 22967:2010 specifies the terminology, test procedures and general requirements for the construction and operation of automatic forced draught gas burners, and the provision of related control and safety devices.
It is applicable to automatic gas burners fitted with a combustion air fan, equipped as described therein, and intended for use in appliances of different types and operated with fuel gases, total pre‚Äëmixed burners and nozzle mixed burners, single burners with a single combustion chamber, single‚Äëfuel and dual‚Äëfuel burners when operating only on gas, and the gas function of dual-fuel burners designed for simultaneous operation on gaseous and liquid fuels (for the latter operation, see also ISO 22968).
It is not applicable to burners used in direct fired processes either with defined combustion chamber applications or where the combustion chamber wall surface temperature is greater than 750 °C or the heat‑transfer medium temperature is greater than 500 °C.
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