Particle mass and gaseous emissions from small scale modern wood stoves
Öz
The objectives of the paper were to evaluate
particle mass concentrations of PM1 (size <1 µm) and PM2.5
(size <2.5 µm), mass size distributions and CO emissions under standard
laboratory conditions obtained from two commercially available modern
residential wood stoves with capacity 10 kW and 20 kW. Four combustion batches
with minor modification of primary air flows into the combustion chamber for
each stove were conducted to evaluate the emission results. Particle mass
concentrations and size distributions were measured in real time using an
Electrical Low Pressure Impactor Plus (ELPI+) instrument, which measures
particles with a fast response time in a wide particle size range from 6 nm to
10 µm aerodynamic diameter. Gaseous concentrations of O2 and CO2
were measured continuously using a Horiba PG-250 analyzer and CO emissions were
measured using a Siemens Ultramat 6 gas analyzer. The measurement protocols of
each combustion test were conducted according to the European standard EN
13229. The combustion experiments were conducted in a laboratory of a stove
manufacturing plant in Belgium. The results showed that PM1 and PM2.5
concentrations of all the batches of both stoves varied from 116 to 327 mg/Nm3
and 139 to 413 mg/Nm3, respectively in the combustion cycle.
Particle mass size distribution for all batches from both stoves is very
similar showing a maximum in the fine mode at a particle size of around
330 nm to 500 nm. The CO emissions from all the batches varied from
447 to 1184 mg/Nm3 for the 10 kW stove and 958 to 1545 mg/Nm3
for the 20 kW stove. The experimental results of PM1, PM2.5
concentrations and CO emissions from combustion measurements could be useful
for the improvement of the combustion process as well as the reduction of
gaseous and particle mass emissions from these residential biomass combustion
appliances.
Anahtar Kelimeler
Kaynakça
- [1] Obaidullah M. Particle Emissions from Small Scale Combustion Appliances. Brussel, Belgium: Vrije Universiteit Brussel (VUB); PhD thesis, November 2014.
- [2] Obaidullah M, Bram S, Verma V, De Ruyck J. A Review on Particle Emissions from Small Scale Biomass Combustion. International Journal of Renewable Energy Research (IJRER). 2012;2:147-59.
- [3] Obaidullah M, Bram S, De Ruyck J. Characteristics of Particle Mass Concentrations from Small Scale Biomass Combustion: A Review. VII International Conference on Energy and Environment for 21 Century. Las Villas, Cuba: Central University Marta Abreu (UCLV); 2012.
- [4] Sippula O, Hokkinen J, Puustinen H, Yli-Pirila P, Jokiniemi J. Comparison of particle emissions from small heavy fuel oil and wood-fired boilers. Atmospheric Environment. 2009;43:4855-64.
- [5] Obaidullah M, Bram S, De Ruyck J. Investigation on Gaseous and Particle Mass Emissions from Automatically Fired Small Scale Heating System Under Laboratory Conditions. International Journal of Renewable Energy Development. 2018;7:111-21.
- [6] Obaidullah M, Bram S, De Ruyck J. An Overview of PM Formation Mechanisms from Residential Biomass Combustion and Instruments Using in PM Measurements. International Journal of Energy and Environment. 2018;12:41-50.
- [7] Obernberger I, Brunner T, Barnthaler G. Fine particle emissions from Modern Austrian small scale biomass combustion plants. 15th European biomass conference and exhibition. Germany7-11 May 2007. p. 1546-57.
- [8] Boman C, Nordin A, Bostrom D, Ohman M. Characterization of Inorganic Particulate Matter from Residential Combustion of Pelletized Biomass Fuels. Energy & Fuels. 2004;18:338-48.
Ayrıntılar
Birincil Dil
İngilizce
Konular
-
Bölüm
Araştırma Makalesi
Yazarlar
Md. Obaidullah
*
0000-0001-7086-9789
Bangladesh
Yayımlanma Tarihi
16 Eylül 2019
Gönderilme Tarihi
29 Ocak 2019
Kabul Tarihi
27 Mayıs 2019
Yayımlandığı Sayı
Yıl 2019 Cilt: 6 Sayı: 2