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KME-HTC Symposium 2020

Documentation from the KME-HTC Research Symposium 2020, streamed live on November 4th & 5th.

November 4th

Utilising renewable fuels: More efficient generation of heat, and power and gasification

HTC1a: Critical corrosion phenomena in combustion of biomass and waste in combined heat and power boilers
Torbjörn Jonsson & Julien Phother, Chalmers

KME 803: New materials and Oxygen Carrier Aided Combustion for improved competitiveness of FB plants using renewable fuels
Loli Paz & Julien Phother, Chalmers

KME 804: Increased flexibility and power-production from biomass through material development and corrosion prediction
Torbjörn Jonsson & Johan Eklund, Chalmers

KME 805: HiPerCOAT - High performance coatings to combat erosion-driven damage in power plants
Shirkant Joshi, Högskolan väst

HTC1c: High temperature corrosion during gasification of biomass and waste
Rikard Norling, RISE & Tommy Sand, Chalmers

KME 802: Increased fuel flexibility and performance for boilers with challenging fuels
Rikard Norling, RISE

KME 801: Heavy section austenitic stainless steel for the future header and piping material in high-efficient biomass-fired power plants
Hugo Wärner, Linköping University, & Mattias Calmunger, Linköpings universitet

HTC1b: Corrosion of high temperature materials in small scale wood-pellet fired boilers
Carolina Pettersson, RISE

 

November 5th

Material challenges in energy technologies

HTC2a: New corrosion resistant materials for challenging process environments – low oxygen activities and very high temperatures
Lars-Gunnar Johansson & Tommy Sand, Chalmers

HTC2b: High temperature corrosion of materials and components produced by additive manufacturing
Mats Halvarsson, Irina Fedorova & Alberto Visible, Chalmers

HTC3a: Corrosion and oxidation of FeCr alloys for solid oxide fuel cells, SOFC and solid oxide electrolysis cells , SOEC
Jan-Erik Svensson, Alberto Visible & Anton Chyrkin, Chalmers

HTC3b: High Temperature Corrosion in systems for heat storage: Corrosion in melts for concentrated thermal solar power
Lars-Gunnar Johansson & Esraa Mohamedin, Chalmers