Studies of Blast Furnace Phenomena |
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Page 26
... the oxide of iron . Hence it follows that for each lb. of oxygen the transforma- tion of CO into CO2 is accompanied by the giving 26 STUDIES OF BLAST FURNACES . Quantities of Caloric absorbed and given off in Blast Furnaces.
... the oxide of iron . Hence it follows that for each lb. of oxygen the transforma- tion of CO into CO2 is accompanied by the giving 26 STUDIES OF BLAST FURNACES . Quantities of Caloric absorbed and given off in Blast Furnaces.
Page 30
... Hence each lb. of carbon burned in the first 561 furnace must be replaced by 13594 1.155 in the second , which is , in fact , an increase of from 15 % to 16 % , by the single fact of a smaller production of CO2 , or of the more ...
... Hence each lb. of carbon burned in the first 561 furnace must be replaced by 13594 1.155 in the second , which is , in fact , an increase of from 15 % to 16 % , by the single fact of a smaller production of CO2 , or of the more ...
Page 32
... perfect working , as follows : 0 · 312 + 0 · 072 ( from limestone ) and . or total carbon in gas . CO2 CO will be , in an - 0.384 carbon in CO2 0.496 66 CO , 0.820 . 11 Hence CO2 × 0.384 1.408 . 3 7 CO 32 STUDIES OF BLAST FURNACES .
... perfect working , as follows : 0 · 312 + 0 · 072 ( from limestone ) and . or total carbon in gas . CO2 CO will be , in an - 0.384 carbon in CO2 0.496 66 CO , 0.820 . 11 Hence CO2 × 0.384 1.408 . 3 7 CO 32 STUDIES OF BLAST FURNACES .
Page 33
Louis Emmanuel Gruner. 11 Hence CO2 × 0.384 1.408 . 3 7 CO × 0 · 496 — 1 · 157 3 therefore . CO2 CO 1.217 CO2 § 6. The ratio CO is the measure or index of the working oj Blast Furnaces . - It has now been shown by these examples CO2 that ...
Louis Emmanuel Gruner. 11 Hence CO2 × 0.384 1.408 . 3 7 CO × 0 · 496 — 1 · 157 3 therefore . CO2 CO 1.217 CO2 § 6. The ratio CO is the measure or index of the working oj Blast Furnaces . - It has now been shown by these examples CO2 that ...
Page 34
... hence p the total carbon in the gases a + b 0:03 . If we put y for the weight of CO , and m for the C CO2 CO ' = proportion we have my for the weight of CO2 , and then for determining y we have the equation- ( 1. ) 우 + 3 · Y + my = p ...
... hence p the total carbon in the gases a + b 0:03 . If we put y for the weight of CO , and m for the C CO2 CO ' = proportion we have my for the weight of CO2 , and then for determining y we have the equation- ( 1. ) 우 + 3 · Y + my = p ...
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Common terms and phrases
A. A. FESQUET acid analysis Appendix Bell Bell's blast furnace Boilers calcined calculation caloric absorbed caloric carried caloric developed Caloric due caloric of combustion caloric produced cals carbon burned carbonic oxide charges Chemical CO² coke composition Comprising Consett Containing cubic feet capacity decomposition determine difference dissociation dry air Ebelmen economy edition Engineer engravings escaping gases example experiments flux formulas furnaces of Cleveland given gives Gruner hence hot blast Illustrated increase Iron and Steel JOSHUA ROSE large furnace less lime limestone Manufacture metallic iron Metallurgy nitrogen oxide of iron oxygen peroxide pig yielded pig-iron plates Practical Treatise proportion pyrometer quantities of caloric ratio Schinz sensible heat silica silicium slags small furnace solid carbon specific heat Steam Steel Institute superheated blast Tables temperature of blast tion tons Total carbon transformed tube tunnel-head twyres weight of blast Weight of dry Weight of moist zone of reduction
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