69 44 kg sec steam coal boiler plant
Capacity:1-20t/h
Rated thermal efficiency: 100-104%
Fixed working pressure: ≤1.6MPa
Applicable fuel:natural gas etc.
Capacity:0.7-14MW
Rated thermal efficiency:96-98%
Fixed working pressure:≤1.25MPa
Applicable fuel:Natural gas, light oil, etc.
Capacity:0.7-2.8Mw
Rated thermal efficiency: 97.2-106%
Fixed working pressure:0.1MPa
Applicable fuel:Natural gas, etc.
Capacity:2.8-7.0Mw
Rated thermal efficiency:≥105.5%
Fixed working pressure:-0.02MPa
Applicable fuel:Natural gas, etc.
Capacity:99Kw
Rated thermal efficiency:97.2-104.4%
Fixed working pressure:1.0MPa
Applicable fuel:Natural gas, etc.
Capacity:0.5-4.0 t/h
Rated thermal efficiency:98%
Fixed working pressure:≤1.25MPa
Applicable fuel:electric energy
Notice that for each kg of fuel entering combustion, there is 16.7 kg of air required as a minimum! In reality, more air than this must be supplied, since some excess air is required to insure complete combustion.For natural gas, an efficient boiler would use about 15 percent excess air, or roughly 19 kg per kg of fuel.Get Price
A waste heat recovery boiler produces 4. 8 Mpa (dry saturated) steam from 104 deg.C feedwater. The boiler receive energy from 7kg/sec of 954deg.C dry air. After passing through a waste heat boiler, the temperature of the air is has been reduced to 343deg.C. How much steam in kg is produced per second? Note: at 4.80Mpa dry saturated, h=2796.Get Price
A waste heat recovery boiler produces 4. 8 Mpa (dry saturated) steam from 104 deg.C feedwater. The boiler receive energy from 7kg/sec of 954deg.C dry air. After passing through a waste heat boiler, the temperature of the air is has been reduced to 343deg.C. How much steam in kg is produced per second? Note: at 4.80Mpa dry saturated, h=2796.Get Price
ms (1947.8) = 4200(0.60)(195-2) Thus; (a) ms = 249.69 kg 57. Supplementary Problem A high pressure steam generator is to be fitted with convection type superheater having 72 elements in parallel. Steam at the rate of 70,000 kg/hr from the boiler drum enters the superheater inlet header at 8.3 Mpa and 485oC.Get Price
Notice that for each kg of fuel entering combustion, there is 16.7 kg of air required as a minimum! In reality, more air than this must be supplied, since some excess air is required to insure complete combustion.For natural gas, an efficient boiler would use about 15 percent excess air, or roughly 19 kg per kg of fuel.Get Price
A waste heat recovery boiler produces 4. 8 Mpa (dry saturated) steam from 104 deg.C feedwater. The boiler receive energy from 7kg/sec of 954deg.C dry air. After passing through a waste heat boiler, the temperature of the air is has been reduced to 343deg.C. How much steam in kg is produced per second? Note: at 4.80Mpa dry saturated, h=2796.Get Price
ms (1947.8) = 4200(0.60)(195-2) Thus; (a) ms = 249.69 kg 57. Supplementary Problem A high pressure steam generator is to be fitted with convection type superheater having 72 elements in parallel. Steam at the rate of 70,000 kg/hr from the boiler drum enters the superheater inlet header at 8.3 Mpa and 485oC.Get Price
ms (1947.8) = 4200(0.60)(195-2) Thus; (a) ms = 249.69 kg 57. Supplementary Problem A high pressure steam generator is to be fitted with convection type superheater having 72 elements in parallel. Steam at the rate of 70,000 kg/hr from the boiler drum enters the superheater inlet header at 8.3 Mpa and 485oC.Get Price
Notice that for each kg of fuel entering combustion, there is 16.7 kg of air required as a minimum! In reality, more air than this must be supplied, since some excess air is required to insure complete combustion.For natural gas, an efficient boiler would use about 15 percent excess air, or roughly 19 kg per kg of fuel.Get Price