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Dive into the research topics where David R. Wagner is active.

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Featured researches published by David R. Wagner.


Review of Scientific Instruments | 2018

Design and validation of an advanced entrained flow reactor system for studies of rapid solid biomass fuel particle conversion and ash formation reactions

David R. Wagner; Per Holmgren; Nils Skoglund; Markus Broström

The design and validation of a newly commissioned entrained flow reactor is described in the present paper. The reactor was designed for advanced studies of fuel conversion and ash formation in powder flames, and the capabilities of the reactor were experimentally validated using two different solid biomass fuels. The drop tube geometry was equipped with a flat flame burner to heat and support the powder flame, optical access ports, a particle image velocimetry (PIV) system for in situ conversion monitoring, and probes for extraction of gases and particulate matter. A detailed description of the system is provided based on simulations and measurements, establishing the detailed temperature distribution and gas flow profiles. Mass balance closures of approximately 98% were achieved by combining gas analysis and particle extraction. Biomass fuel particles were successfully tracked using shadow imaging PIV, and the resulting data were used to determine the size, shape, velocity, and residence time of converting particles. Successful extractive sampling of coarse and fine particles during combustion while retaining their morphology was demonstrated, and it opens up for detailed time resolved studies of rapid ash transformation reactions; in the validation experiments, clear and systematic fractionation trends for K, Cl, S, and Si were observed for the two fuels tested. The combination of in situ access, accurate residence time estimations, and precise particle sampling for subsequent chemical analysis allows for a wide range of future studies, with implications and possibilities discussed in the paper.


Fuel | 2017

Size, shape, and density changes of biomass particles during rapid devolatilization

Per Holmgren; David R. Wagner; Anna Strandberg; Roger Molinder; Kentaro Umeki; Markus Broström


Energy & Fuels | 2017

Effects of Pyrolysis Conditions and Ash Formation on Gasification Rates of Biomass Char

Anna Strandberg; Per Holmgren; David R. Wagner; Roger Molinder; Kentaro Umeki; Markus Broström


Combustion and Flame | 2018

Distribution of temperature, H2O and atomic potassium during entrained flow biomass combustion : coupling in situ TDLAS with modeling approaches and ash chemistry

Zhechao Qu; Per Holmgren; Nils Skoglund; David R. Wagner; Markus Broström; Florian M. Schmidt


Impacts of Fuel Quality on Power Production October 26 –31, 2014 Snowbird Resort & Conference Center Snowbird, Utah | 2014

Size, Shape and Density Changes of Biomass Particles during Devolatilization in a Drop Tube Furnace

Per Holmgren; Anna Strandberg; David R. Wagner; Roger Molinder; Kentaro Umeki; Markus Broström


Nordic Flame Days 2017, 10-11 October, Stockholm | 2017

Investigation of H2O, temperature and potassium in entrained flow biomass combustion – coupling in situ TDLAS with modelling

Zhechao Qu; Per Holmgren; Nils Skoglund; David R. Wagner; Markus Broström; Florian M. Schmidt


Journal of Analytical and Applied Pyrolysis | 2016

Time-dependent variations of activation energy during rapid devolatilization of biomass

David R. Wagner; Markus Broström


22nd International Conference of Impacts of Fuel Quality on Power Production, September 19-23, Prague, Czech Republic | 2016

TDLAS-based in situ detection of atomic potassium during combustion of biomass in an entrained flow reactor

Zhechao Qu; Per Holmgren; Nils Skoglund; David R. Wagner; Markus Broström; Florian M. Schmidt


Impacts of Fuel Quality on Power Production October 26–31, 2014, Snowbird, Utah, USA | 2014

Fate of Inorganic Species during Biomass Devolatilization in a Drop Tube Furnace

David R. Wagner; Per Holmgren; Anna Strandberg; Roger Molinder; Markus Broström


Impacts of Fuel Quality on Power Production October 26 –31, 2014 Snowbird Resort & Conference Center Snowbird, Utah | 2014

Influence of Biomass Particle Properties and Pyrolysis Conditions on Char Reactivity

Anna Strandberg; David R. Wagner; Per Holmgren; Roger Molinder; Kentaro Umeki; Markus Broström

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Kentaro Umeki

Luleå University of Technology

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