JRC 30 March 2009 1 Particle Measurement Programme Exploratory work & Validation Exercise (JRC) First Validation Exercise comparisons B. Giechaskiel, G.

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Presentation transcript:

JRC 30 March Particle Measurement Programme Exploratory work & Validation Exercise (JRC) First Validation Exercise comparisons B. Giechaskiel, G. Martini, J. Andersson JRC, 30 March 2009

JRC 30 March Outline Status Exploratory Work (JRC) –Preconditioning –Particles <23 nm Validation Exercise (JRC) –Partial – Full flow systems comparison –Number systems comparison –After-treatment comparison Validation Exercise comparisons

JRC 30 March Status Date Validation Exercise Round Robin Jan – Feb 2008JRC Mar-Apr 2008AVL-MTC May – Jun 2008JRC Jul – Sept 2008RWTUEV Oct – Nov 2008Ricardo Dec 2008 – Jan 2009RicardoNTSEL Feb - April 2009UTACJARI April – June 2009EMPANIER (Korea) July – Sept 2009JRC Oct – Nov 2009Volvo Dec 2009 – Jan 2010JRC Feb – Mar 2010UTAC Apr – May 2010TNO Jun – Aug 2010VTT Sep – Oct 2010Scania Nov – Dec 2010Environment Canada Jan – Feb 2011Daimler

JRC 30 March Set up One Golden instrument at CVS and one at the partial flow system Alternative systems (EJ+ET+EJ+3010D, EJ+TD+3790, Nanomet-C) Other systems (EEPS, 3025A) TSI( 3025A)

JRC 30 March Preconditioning Non-volatile particles >23 nm Low temperature modes  Low emissions High temperature modes  High emissions Non-volatiles >23 nm 15 min at mode 10 is the minimum time for Pre-conditioning

JRC 30 March Pre-conditioning emissions Non-volatiles High emissions of volatiles during passive regeneration Non-volatile emissions can be also observed

JRC 30 March Cycles High emissions at the beginning of the cycle High emissions at high temperature modes Low emissions at the rest cycles Cold WHTC Hot WHTC ESC

JRC 30 March Particles <23 nm Non-volatiles >3 nm approximately +40% of non-volatiles >23 nm Total >3 nm approximately +80% of non-volatiles >23 nm

JRC 30 March Partial-Full flow systems Not good PM correlation between partial and full flow systems (However similar levels) Very good PN correlation between partial and full flow systems

JRC 30 March Number systems comparison Very good agreement between alternative and golden systems measuring from CVS in parallel

JRC 30 March Aftertreatment effect EMITEC=PM Metalit Partial Flow Deep Bed Filter DPF=Pt based oxicat upstream of wall flow filter 65% reduction with partial flow Deep Bed Filter 99% reduction with wall flow filter

JRC 30 March VE Comparisons - setup JRCAVL_MTCRCE CVS dimensions [cm/cm]470/47500/50450/45 CVS flowrate [m 3 /min] Sec. tunnel dimen. [cm]64/8.630/8100/10 Sec. tunnel flowrates25/50 20/40 Partial flow systemSmart Sampler PSS Smart SamplerMDLT PM flow, split ratio1.08, % 1.205, %

JRC 30 March VE Comparisons - gaseous

JRC 30 March VE Comparisons – Real time PN

JRC 30 March VE Comparisons – PM and PN

JRC 30 March Conclusions Exploratory Work (JRC) –Preconditioning: Regeneration + Loading –Not high concentration of particles <23 nm (and proportional) Validation Exercise (JRC) –Good correlation between partial and full flow systems –Good correlation between particle number systems –Wall flow filters can reduce efficiently number emissions Validation Exercise comparisons –Background important –Quite good repeatability of PN emissions