liisa pirjola docent, principal lecturer department of technology, metropolia university of applied...
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Liisa PirjolaDocent, Principal lecturer
Department of Technology,
Metropolia University of Applied Sciences
Helsinki, Finland
http://nuuskija.metropolia.fi
EURACHEM Workshop on Quality Assurance of Measurements from Field to Laboratory MIKES, Espoo Finland, 20-21 May 2013
Spatial and temporal characterization of exhaust emissions with a mobile laboratory
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MOBILE MEASUREMENTS
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• detailed monitoring of aerosol particle properties in urban and suburban areas is a challenging task, since their concentration, size, composition and sources vary strongly in time and space
• as a part of MMEA Programme (Measurement, Monitoring and Environmental Assessment, 2010-2014), we have conducted field campaigns in the poor air quality hot spot areas of the Helsinki region (FMI, TUT, HSY)
• city centre street canyons (Dec 2010), major roads (Oct-Nov 2012) and densely populated small house areas with local wood burning (Feb 2012)
• stationary and mobile online measurements, focus on particle composition, size distribution and volatility
• the combined application of several methods enables us to obtain a comprehensive view on aerosol properties and sources as well as to test new measurement methods
MOTIVATION
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MOBILE LABORATORY SNIFFER
• designed and built by Metropolia in the Tekes funded projects during 2002-2005 (Pirjola et al., 2004, 2006, 2009, 2010, 2012)
• sampling above the front bumper at 0.7 m or above the wind shield at 2.4 m altitude
• enables also measurements of number and mass concentrations of non-exhaust particles behind the left rear tyre
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Instrumentation
.
• ELPI and EELPI (Electrical Low Pressure Impactor), aerodynamic diameter 7 nm - 10 mm, 12 stages,1s time resolution
• CPC (TSI), > 2.5 nm, 1 s
• TEOM (Tapered Element Oscillating Microbalance, Series 1400A), 10 s, PM10, PM2,5
• 2 DustTraks (TSI), PM10, PM2.5 and PM1, 1 s
• Gas analysers: CO, CO2, NO, NO2, NOx, 1 s
• Weather station (T, RH, ws, wd) at 2.9 m, GPS
• during measurement campaigns additional instruments from the partners
• electricity: 5 kW for 5 h stationary measurements, recharging while driving
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TRAFFIC PARTICLES IN STREET CANYONS
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Mannerheimintie
Particle number concentration averaged over all timesMax 8x105 cm-3 (1 s). Average traffic density ~40 000veh/day
Nto
t
22 nm 70 nm
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Microenvironments
• Building heights ~21 m => symmetric canyons• Street width ~ 45 m (M1), 38 m (M2), and 27 m (M3) Þ aspect ratio (H/W) ~ 0.47, 0.55, and 0.78, respectively Þ wave interference flow is formed (Vardoulakis et al., 2003)
On 13-14 Dec, 2010, a special attention was given for the urban microenvironments close to the high traffic density street
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Challenges related to the measurements• dynamic traffic situations spatially and temporally
=> fast time resolution of instruments => huge amount of data
• different environments and weather conditions (snow heaps)
=> needs many repetitions
• Air quality station vs. Sniffer
different sampling heights (4 m vs 2.4 m)
saving times of instruments (1 min vs 1 s)
different instruments: PM2.5 TEOM vs DustTrak (calibration)
2 EELPI’s
BC (MAAP vs Aethalometer)
=> comparison of instruments by simultaneous measurements
• Sniffer: comparison of ELPI and EELPI (one before and the other after the Thermodenuder), losses in TD, time delay in the sampling tubes
• at start zeroing, time synchronising
• vibration of instruments => rubber legs
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Weather on 13-14 December 2010
13.12. at 13.30 - 19:00
14.12. at 8:00 – 14:00
Temperature ~ -8˚C
RH ~ 70-90%
northeastern wind ws ~ 4-5 m/s
Traffic flowwas 36 300 vehicles/day
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Canyon effect in M2
Model simulations by OSPM predicted similar results
downwind/upwind meas OSPMNtot 0.24BC 0.39PM2.5 0.59NO 0.28 0.25NO2 0.70 0.76NOx 0.36 0.55
Operational Street Pollution Model, Bercowitz, 2000
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Canyon effect in M2
13 Dec 14 Dec
upwind 8.9x104 cm-3 1.6x105 cm-3
downwind 2.6x104 cm-3 3.0x104 cm-3
upwind1.5x105
cm-3
driving5.3x104
cm-3
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Canyon effect – size distributions in M2
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Canyon effect – averaged size distributions in M2
D(nuc) ~20 nmD(acc) ~80 nm
More in Pirjola et al., Atmos. Environ, 2012
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WOOD COMBUSTION
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Lintuvaara
Vartiokylä
Itä-Hakkila
Päiväkumpu
Laaksolahti
Kattilalaakso
Background
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Jarkko Niemi, HSY 17
Sniffer measurements 15-27 Feb 2012
SP-HR-AMS, 5 s (FMI) Aethalometer, cut-off size 1 mm, 5s (FMI) NanoSMPS 3-60 nm, 1.5 min (TUT) ELPI ja EELPI, 1s (Metropolia) Thermodenuder 265 ºC (TUT) PPS-sensor (Pegasor) NSAM (TUT) Rotating NanoMOUDI, 15 min (FMI) PM2.5 TEOM, 10s (Metropolia) DustTrak PM2.5 ja PM1, 1 s (Metropolia) NO, NO2, CO, CO2 (Metropolia) Weather+GPS (Metropolia)
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AMS
Aethalometer
2.4 m altitude
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Soot Particle Aerosol Mass Spectrometer (SP-AMS)
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Sniffer: SP-AMS and aethalometer - Westbound route 16.2.2012
downtownLänsiväylä
KattilalaaksoLaaksolahtiLintuvaara
LaaksolahtiLintuvaara
BLANK KattilalaaksoLänsiväylä
downtown
0.250.200.150.100.050.00
m/z
60
µg
/m3
17:0016.2.2012
18:00 19:00 20:00 21:00 22:00Date and Time
8
6
4
2
0
org
µg
/m3
0.8
0.6
0.4
0.2
0.0
sulfa
te µ
g/m
3
40
30
20
10
0
BC
(a
eth
alo
me
ter)
µg
/m3
Biomass burningtracer m/z 60
Organic matter
Sulfate
Black carbon
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Map of Kattilalaakso with the measured total particle number concentrations plotted on the driven route on the 24th of February 2012
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Without TD With TD
EELPI ELPI
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1. very clean period (CLEAN) at urban background site on seashore due to air flows from the Atlantic Ocean (Feb 21 morning),2. strong long-range transported pollution episode (LRT-EPI) at urban background site on seashore due to air flows from eastern Europe (Feb 18 evening),3. fresh smoke plumes from biomass burning (SMOKE) in suburban small house area mixed with LRT pollution (Feb 18 evening), and4. fresh emissions from traffic (TRAFFIC) at kerbside of busy street in Helsinki city centre during morning rush hour (Feb 24 morning).
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LOCAL DISPERSION (GRADIENTS) OF TRAFFIC PARTICLES FROM HIGHWAYS DOWNWIND
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Pitkäjärvi
Torpparinmäki
Malmi
Herttoniemi
Itä-Pakila microenv
Mestarintie tunnel
Vuosaari tunnel
SNIFFER measurements Oct – Nov 2012• SP-HR-AMS (FMI)• Aethalometer, PM1, 1 s (AEROSOL.SI)• EEPS, 5.6-560 nm size distribution, 1 s (TUT)• Thermodenuder at 265 ºC (TUT)• CPC, > 2.5 nm, 1 s (Metropolia)• EELPI, ELPI (7 nm-10 mm), 1 s (Metropolia)• PM2.5, PM1, CO, CO2, NO, NOx (Metropolia)• T, RH, Wind, GPS (Metropolia)
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Sniffer measurements 22.10.2012
DowntownHelsinki
DowntownHelsinkiVihdintie Vihdintie
12
8
4
0
µg
/m3
15:0022.10.2012
16:00 17:00 18:00
Date and Time
5
4
3
2
1
0
80
60
40
20
0
µg
/m3
Black carbon
Hydrocarbon fragment
Organics
Stop at Roadside (Kehä III)
Background site
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5
4
3
2
1
0
dM
/dlo
g1
0dva
(µ
g m
-3)
4 5 6 7 8 9100
2 3 4 5 6 7 8 91000
PToF size (nm)
roadside background
Organics
6
4
2
0
dM
/dlo
g1
0dva
(µ
g m
-3)
4 5 6 7 8 9100
2 3 4 5 6 7 8 91000
PToF size (nm)
roadside background
Blackcarbon
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0.0
dM
/dlo
g10dva
(µ
g m
-3)
4 5 6 7 8100
2 3 4 5 6 7 81000
PToF size (nm)
roadside background
Hydrocarbonfragment (C4H9
+)
2.0
1.5
1.0
0.5
0.0
dM
/dlo
g10dva
(µ
g m
-3)
4 5 6 7 8100
2 3 4 5 6 7 81000
PToF size (nm)
roadside background
Sulfate0.6
0.5
0.4
0.3
0.2
0.1
0.0
dM
/dlo
g10dva
(µ
g m
-3)
4 5 6 7 8100
2 3 4 5 6 7 81000
PToF size (nm)
roadside background
Nitrate
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Kehä III – Pitkäjärvi
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To west To east136 LD + 13 HD 88 LD + 9 HD97 LD + 4 HD 71 LD + 6 HD
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• detailed monitoring of aerosol particle properties in urban and suburban areas is a challenging task, since their concentration, size, composition and sources vary strongly in time and space
• the combined application of several methods enables us to obtain a comprehensive view on aerosol properties and sources as well as to test new measurement methods
CONCLUSIONS