Javascript must be enabled to continue!
Enhancing the Fuel Efficiency of Cogeneration Plants by Fuel Oil Afterburning in Exhaust Gas before Boilers
View through CrossRef
Cogeneration or combined heat and power (CHP) has found wide application in various industries because it very effectively meets the growing demand for electricity, steam, hot water, and also has a number of operational, environmental, economic advantages over traditional electrical and thermal systems. Experimental and theoretical investigations of the afterburning of fuel oil in the combustion engine exhaust gas at the boiler inlet were carried out in order to enhance the efficiency of cogeneration power plants; this was achieved by increasing the boiler steam capacity, resulting in reduced production of waste heat and exhaust emissions. The afterburning of fuel oil in the exhaust gas of diesel engines is possible due to a high the excess air ratio (three to four). Based on the experimental data of the low-temperature corrosion of the gas boiler condensing heat exchange surfaces, the admissible values of corrosion rate and the lowest exhaust gas temperature which provide deep exhaust gas heat utilization and high efficiency of the exhaust gas boiler were obtained. The use of WFE and afterburning fuel oil provides an increase in efficiency and power of the CPPs based on diesel engines of up to 5% due to a decrease in the exhaust gas temperature at the outlet of the EGB from 150 °C to 90 °C and waste heat, accordingly. The application of efficient environmentally friendly exhaust gas boilers with low-temperature condensing surfaces can be considered a new and prosperous trend in diesel engine exhaust gas heat utilization through the afterburning of fuel oil and in CPPs as a whole.
Title: Enhancing the Fuel Efficiency of Cogeneration Plants by Fuel Oil Afterburning in Exhaust Gas before Boilers
Description:
Cogeneration or combined heat and power (CHP) has found wide application in various industries because it very effectively meets the growing demand for electricity, steam, hot water, and also has a number of operational, environmental, economic advantages over traditional electrical and thermal systems.
Experimental and theoretical investigations of the afterburning of fuel oil in the combustion engine exhaust gas at the boiler inlet were carried out in order to enhance the efficiency of cogeneration power plants; this was achieved by increasing the boiler steam capacity, resulting in reduced production of waste heat and exhaust emissions.
The afterburning of fuel oil in the exhaust gas of diesel engines is possible due to a high the excess air ratio (three to four).
Based on the experimental data of the low-temperature corrosion of the gas boiler condensing heat exchange surfaces, the admissible values of corrosion rate and the lowest exhaust gas temperature which provide deep exhaust gas heat utilization and high efficiency of the exhaust gas boiler were obtained.
The use of WFE and afterburning fuel oil provides an increase in efficiency and power of the CPPs based on diesel engines of up to 5% due to a decrease in the exhaust gas temperature at the outlet of the EGB from 150 °C to 90 °C and waste heat, accordingly.
The application of efficient environmentally friendly exhaust gas boilers with low-temperature condensing surfaces can be considered a new and prosperous trend in diesel engine exhaust gas heat utilization through the afterburning of fuel oil and in CPPs as a whole.
Related Results
Optimalisasi Perawatan Seating & Spindle Exhaust Valve Main Engine pada MV. Lumoso Pratama
Optimalisasi Perawatan Seating & Spindle Exhaust Valve Main Engine pada MV. Lumoso Pratama
The main engine is engine on board the ship which is the main force drive to move the ship which must be considered for performance and maintenance. The exhaust valve is an engine ...
Carbon Dioxide Production From Cogeneration For Enhanced Oil Recovery: An Economic Evaluation
Carbon Dioxide Production From Cogeneration For Enhanced Oil Recovery: An Economic Evaluation
Abstract
There is a great interest, especially in Western Canada, to capture carbon dioxide (CO2) from fossil fuel fired power plants and utilize it as a flooding...
Measurement of Exhaust Emissions From Two J-58 Engines at Simulated Supersonic Cruise Flight Conditions
Measurement of Exhaust Emissions From Two J-58 Engines at Simulated Supersonic Cruise Flight Conditions
Emissions of total oxides of nitrogen, unburned hydrocarbons, carbon monoxide, and carbon dioxide from two J-58 afterburning turbojet engines at simulated high-altitude flight cond...
Emissions Management for Major Projects
Emissions Management for Major Projects
This reference is for an abstract only. A full paper was not submitted for this conference.
Abstract
The majority of air emissio...
Power Recovery From In-Situ Combustion Exhaust Gases
Power Recovery From In-Situ Combustion Exhaust Gases
A field evaluation of the use of a small gas-combustion turbine generator set to recover power from in-situ combustion exhaust gases was conducted. With suitable modifications to t...
Unlocking Fuel Gas Reduction to Enhance Sustainability in Oil and Gas Operations
Unlocking Fuel Gas Reduction to Enhance Sustainability in Oil and Gas Operations
Abstract
Methane emissions pose a critical challenge in the oil and gas industry due to their high global warming potential. The purpose of this paper is to prese...
Investigation on Exhaust Energy Recovery System Using Radial Turbine in High-Power Proton Exchange Membrane Fuel Cells
Investigation on Exhaust Energy Recovery System Using Radial Turbine in High-Power Proton Exchange Membrane Fuel Cells
Abstract
With the increased power density and capacity of the proton exchange membrane fuel cell (PEMFC) stack, the intake air pressure level is getting higher and c...
Long Term Performance Of Small Cogeneration Units In Oil Field And Gas Plant Operation
Long Term Performance Of Small Cogeneration Units In Oil Field And Gas Plant Operation
Abstract
Amoco Production Company installed two of its first onshore cogeneration units during late 1983 and mid-1984 in west-central Wyoming, USA. These 2.4 mega...

