0000000000294209

AUTHOR

Sergejs Vostrikovs

showing 4 related works from this author

Electric Field Effect on the Thermal Decomposition and Co-combustion of Straw with Solid Fuel Pellets

2019

The aim of this study was to provide more effective use of straw for energy production by co-firing wheat straw pellets with solid fuels (wood, peat pellets) under additional electric control of the combustion characteristics at thermo-chemical conversion of fuel mixtures. Effects of the DC electric field on the main combustion characteristics were studied experimentally using a fixed-bed experimental setup with a heat output up to 4 kW. An axisymmetric electric field was applied to the flame base between the positively charged electrode and the grounded wall of the combustion chamber. The experimental study includes local measurements of the composition of the gasification gas, flame tempe…

Flue gasControl and OptimizationMaterials science020209 energyPelletsEnergy Engineering and Power TechnologyDC electric field02 engineering and technology010501 environmental sciencesCombustion01 natural scienceslcsh:TechnologyMass transferElectric field0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringComposite materialco-firingEngineering (miscellaneous)thermal decomposition0105 earth and related environmental scienceswheat strawRenewable Energy Sustainability and the Environmentlcsh:Tbog peatSolid fuelpelletsAdiabatic flame temperaturesoftwoodCombustion chamberEnergy (miscellaneous)combustionEnergies
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Thermo-Chemical Conversion of Microwave Activated Biomass Mixtures

2018

Materials science020401 chemical engineeringChemical engineering020209 energyThermo chemical0202 electrical engineering electronic engineering information engineeringBiomass02 engineering and technology0204 chemical engineeringMicrowaveIOP Conference Series: Materials Science and Engineering
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The Effect of Electric Field Configuration on the Thermo-Chemical Conversion of Straw Pellets

2020

Abstract With the aim to control and improve the thermo-chemical conversion of straw pellets, the experimental investigations of the DC electric field effect on the combustion dynamics and heat energy production were made. The electric field effect on the gasification/combustion characteristics was studied using three different positions of the positively charged electrode in flame. First, the electrode was positioned coaxially downstream the flame flow. Next, the electrode was positioned coaxially upstream the flame flow and, finally, the electrode was positioned across the downstream flow. The bias voltage of the electrode varied in the range from 0.6 up to 1.8 kV, while the ion current i…

heat energy020209 energyHeat energyPhysicsQC1-999composition emissionsGeneral EngineeringPelletsGeneral Physics and Astronomy02 engineering and technologyStrawthermochemical conversionelectric field020401 chemical engineeringElectric fieldThermo chemical0202 electrical engineering electronic engineering information engineering0204 chemical engineeringComposite materialstraw pelletsLatvian Journal of Physics and Technical Sciences
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Electrodynamic control of straw co-firing with propane

2019

chemistry.chemical_compoundMaterials scienceChemical engineeringHydrogenchemistryPropanePelletschemistry.chemical_elementStrawCombustionEngineering for Rural Development
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