Robin Nyström
Umeå University
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Environmental Science & Technology | 2014
Axel Eriksson; Erik Nordin; Robin Nyström; Esbjörn Pettersson; Erik Swietlicki; Christoffer Bergvall; Roger Westerholm; Christoffer Boman; Joakim Pagels
Time-resolved emissions of particulate polycyclic aromatic hydrocarbons (PAHs) and total organic particulate matter (OA) from a wood log stove and an adjusted pellet stove were investigated with high-resolution time-of-flight aerosol mass spectrometry (AMS). The highest OA emissions were found during the addition of log wood on glowing embers, that is, slow burning pyrolysis conditions. These emissions contained about 1% PAHs (of OA). The highest PAH emissions were found during fast burning under hot air starved combustion conditions, in both stoves. In the latter case, PAHs contributed up to 40% of OA, likely due to thermal degradation of other condensable species. The distribution of PAHs was also shifted toward larger molecules in these emissions. AMS signals attributed to PAHs were found at molecular weights up to 600 Da. The vacuum aerodynamic size distribution was found to be bimodal with a smaller mode (Dva ∼ 200 nm) dominating under hot air starved combustion and a larger sized mode dominating under slow burning pyrolysis (Dva ∼ 600 nm). Simultaneous reduction of PAHs, OA and total particulate matter from residential biomass combustion may prove to be a challenge for environmental legislation efforts as these classes of emissions are elevated at different combustion conditions.
Journal of Aerosol Medicine and Pulmonary Drug Delivery | 2014
Ala Muala; Hanna Nicklasson; Christoffer Boman; Erik Swietlicki; Robin Nyström; Esbjörn Pettersson; Jenny Bosson; Jenny Rissler; Anders Blomberg; Thomas Sandström; Jakob Löndahl
BACKGROUND Respiratory tract deposition of air pollution particles is a key to their adverse health effects. This study was aimed to determine the size-resolved deposition fraction (DF) of sooty wood smoke particles in the lungs of healthy subjects. The type of wood smoke investigated is typical for household air pollution from solid fuels, which is among the largest environmental health problems globally. METHODS Twelve healthy volunteers inhaled diluted wood smoke from incomplete soot-rich combustion in a common wood stove. The DF of smoke particles (10-500 nm) was measured during three 15-min exposures in each subject during spontaneous breathing. Lung function was measured using standard spirometry. RESULTS The total DFs by particle number concentration were 0.34±0.08. This can be compared with DFs of 0.21-0.23 in healthy subjects during previous experiments with wood pellet combustion. For particle mass, the total DFs found in this study were 0.22±0.06. DF and breathing frequency were negatively correlated as expected from model calculations (p<0.01). CONCLUSIONS The DF of the investigated sooty wood smoke particles was higher than for previously investigated particles generated during more efficient combustion of biomass. Together with toxicological studies, which have indicated that incomplete biomass combustion particles rich in soot and polycyclic aromatic hydrocarbons (PAHs) are especially harmful, these data highlight the health risks of inadequate wood combustion.
Particle and Fibre Toxicology | 2013
Jon Unosson; Anders Blomberg; Thomas Sandström; Ala Muala; Christoffer Boman; Robin Nyström; Roger Westerholm; Nicholas L. Mills; David E. Newby; Jeremy P. Langrish; Jenny Bosson
Environmental Science & Technology | 2015
Johan Martinsson; Axel Eriksson; Ingeborg Elbæk Nielsen; Vilhelm Malmborg; Erik Ahlberg; Christina Andersen; Robert Lindgren; Robin Nyström; Erik Nordin; William H. Brune; Birgitta Svenningsson; Erik Swietlicki; Christoffer Boman; Joakim Pagels
Particle and Fibre Toxicology | 2015
Ala Muala; Gregory Rankin; Maria Sehlstedt; Jon Unosson; Jenny Bosson; Annelie F. Behndig; Jamshid Pourazar; Robin Nyström; Esbjörn Pettersson; Christoffer Bergvall; Roger Westerholm; Pasi I. Jalava; Mikko S. Happo; Oskari Uski; Maija-Riitta Hirvonen; Frank J. Kelly; Ian Mudway; Anders Blomberg; Christoffer Boman; Thomas Sandström
Atmospheric Environment | 2016
Rozanna Avagyan; Robin Nyström; Robert Lindgren; Christoffer Boman; Roger Westerholm
Atmospheric Environment | 2015
Erik Nordin; Oskari Uski; Robin Nyström; Pasi I. Jalava; Axel Eriksson; Johan Genberg; Pontus Roldin; Christoffer Bergvall; Roger Westerholm; Jorma Jokiniemi; Joakim Pagels; Christoffer Boman; Maija-Riitta Hirvonen
Analytical and Bioanalytical Chemistry | 2015
Rozanna Avagyan; Robin Nyström; Christoffer Boman; Roger Westerholm
Fuel | 2016
Robin Nyström; Ioannis Sadiktsis; Trifa M. Ahmed; Roger Westerholm; Johannes H. Koegler; Anders Blomberg; Thomas Sandström; Christoffer Boman
Particle and Fibre Toxicology | 2014
Amanda Hunter; Jon Unosson; Jenny Bosson; Jeremy P. Langrish; Jamshid Pourazar; Jennifer Raftis; Mark R. Miller; Andrew J. Lucking; Christoffer Boman; Robin Nyström; Ken Donaldson; Andrew D. Flapan; Anoop Shah; Louis Pung; Ioannis Sadiktsis; Silvia Masala; Roger Westerholm; Thomas Sandström; Anders Blomberg; David E. Newby; Nicholas L. Mills