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Particle Emissions from Small Scale Biomass Combustion Appliances — Vrije Universiteit Brussel
Onderzoeksoutput : PhD Thesis. Particle Emissions from Small Scale Biomass Combustion Appliances. A significant quantity of this will be generated by the combustion of biomass fuels.
Biomass combustion is one of the efficient energy conversion routes to generate heat from biomass. The use of biomass pellets for residential heat production is rather young in Belgium but it is growing exponentially. On one hand, increasing use of biomass for heat generation brings renewable energy benefits to Belgium.
On the other hand, biomass combustion generates large quantities of fine particles and hazardous organic compounds that may lead to high flue gas emissions and subsequent adverse particle filter phd thesis effects.
The study on particle emission measurements from small scale biomass combustion devices is new in the Belgian context. Therefore, a particle sampling test setup particle filter phd thesis small scale biomass heating appliances for laboratory and field measurements was developed.
In this thesis, the performance, the particle number and mass emissions, particle filter phd thesis, particle filter phd thesis size distributions and the gaseous emissions from two wood stoves and a pellet stove were investigated in three phases startup, combustion and burnout of the combustion cycle. The combustion experiments were conducted in a combustion laboratory of a stove manufacturing plant in Namur, Belgium.
Besides, particle emissions from three enclosed parking garages and two streets were investigated. Before going to real measurements in the biomass heating appliances, experiments with different dilution air flow settings applied into a partial flow dilution system were conducted in the Renewable Energy Laboratory of the VUB at campus Kaai.
The dilution ratio's vary from 34 towhich is quite similar to the results presented in the literature. Preliminary tests without dilution tunnel were conducted upon demand in parking garages and compared with adjacent open air conditions. Particle number size distributions inside the garages showed increased quantities of ultra fine particles when compared to the open air. Two distinct particle sizes of coarse and fine modes were observed in the mass size distributions.
Fine mode fractions particles in the mass size distributions might consist of organic matter as most of the cars run by diesel engine, and the coarse fraction particles may consist of combination of organic and inorganic matter.
The inorganic fraction in the coarse mode is typically formed mechanically by the abrasion of road materials, tyres and brake linings, soil dust raised by wind and traffic turbulence, etc. Particle and gaseous emission measurements were performed in two commercially available modern wood stoves 10 kW and 20 kW heat output. Series of combustion cycles of 5 batches including 1 batch for part load for the 10 kW stove and 6 batches for the 20 kW stove were studied.
Particle number emissions from the total cycle startup phase and combustion phase of both stoves varied from 2. The startup phase shows increased particle. Particle Emissions from Small Scale Biomass Combustion Appliances Md Obaidullah. Vrije Universiteit Brussel. Overzicht Vingerafdruk. Vingerafdruk Duik in de onderzoeksthema's van 'Particle Emissions from Small Scale Biomass Combustion Appliances'.
Samen vormen ze een unieke vingerafdruk, particle filter phd thesis. Volledige vingerafdruk bekijken. Citeer dit APA Author BIBTEX Harvard Standard RIS Vancouver Obaidullah, M, particle filter phd thesis. Obaidullah, Md. Brussels, The startup phase shows increased particle".
Obaidullah, M' Particle Emissions from Small Scale Biomass Combustion Appliances ', Vrije Universiteit Brussel, Brussels. The startup phase shows increased particle KW - Particulate matter M3 - PhD Thesis CY - Brussels ER.
Obaidullah M. Bram, SvendCo-Promotor De Ruyck, JacquesPromotor.
Particle Filters
, time: 16:34Particle Emissions from Small Scale Biomass Combustion Appliances — Vrije Universiteit Brussel
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