Development of measures to improve technologies of energy recovery from gaseous wastes of oil shale processing
- Authors: Tugov A.N.1, Ots A.2, Siirde A.2, Sidorkin V.T.3, Ryabov G.A.1
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Affiliations:
- OAO All-Russia Thermal Engineering Institute
- Tallinn University of Technology
- ENTEH Engineering AS
- Issue: Vol 63, No 6 (2016)
- Pages: 430-438
- Section: Steam Boilers, Energetic Fuel, Furnace Facilities, and Auxiliary Equipment of Boilers
- URL: https://journals.rcsi.science/0040-6015/article/view/172307
- DOI: https://doi.org/10.1134/S0040601516060082
- ID: 172307
Cite item
Abstract
Prospects of the use of oil shale are associated with its thermal processing for the production of liquid fuel, shale oil. Gaseous by-products, such as low-calorie generator gas with a calorific value up to 4.3MJ/m3 or semicoke gas with a calorific value up to 56.57 MJ/m3, are generated depending on the oil shale processing method. The main methods of energy recovery from these gases are either their cofiring with oil shale in power boilers or firing only under gaseous conditions in reconstructed or specially designed for this fuel boilers. The possible use of gaseous products of oil shale processing in gas-turbine or gas-piston units is also considered. Experiments on the cofiring of oil shale gas and its gaseous processing products have been carried out on boilers BKZ-75-39FSl in Kohtla-Järve and on the boiler TP-101 of the Estonian power plant. The test results have shown that, in the case of cofiring, the concentration of sulfur oxides in exhaust gases does not exceed the level of existing values in the case of oil shale firing. The low-temperature corrosion rate does not change as compared to the firing of only oil shale, and, therefore, operation conditions of boiler back-end surfaces do not worsen. When implementing measures to reduce the generation of NOx, especially of flue gas recirculation, it has been possible to reduce the emissions of nitrogen oxides in the whole boiler. The operation experience of the reconstructed boilers BKZ-75-39FSl after their transfer to the firing of only gaseous products of oil shale processing is summarized. Concentrations of nitrogen and sulfur oxides in the combustion products of semicoke and generator gases are measured. Technical solutions that made it possible to minimize the damage to air heater pipes associated with the low-temperature sulfur corrosion are proposed and implemented. The technological measures for burners of new boilers that made it possible to burn gaseous products of oil shale processing with low emissions of nitrogen oxides are developed.
About the authors
A. N. Tugov
OAO All-Russia Thermal Engineering Institute
Author for correspondence.
Email: vti-boiler@mail.ru
Russian Federation, ul. Avtozavodskaya 14, Moscow, 115280
A. Ots
Tallinn University of Technology
Email: vti-boiler@mail.ru
Estonia, Ehitajate tee 5, Tallinn, 19086
A. Siirde
Tallinn University of Technology
Email: vti-boiler@mail.ru
Estonia, Ehitajate tee 5, Tallinn, 19086
V. T. Sidorkin
ENTEH Engineering AS
Email: vti-boiler@mail.ru
Estonia, Elektriku 3, Kohtla-Järve, 30328
G. A. Ryabov
OAO All-Russia Thermal Engineering Institute
Email: vti-boiler@mail.ru
Russian Federation, ul. Avtozavodskaya 14, Moscow, 115280
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