laboratory of energy science and engineering...laboratory of energy science and engineering...

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L aboratory of E nergy S cience and E ngineering Development of Innovative Processes for the Sustainable Production of Fuels, Chemicals and Electricity Numerical Simulations Magnetic Resonance Imaging (MRI) Cutting Edge MRI Technology Probing Two-Phase Granular Systems Granular Physics Massive Parallel Cluster Computing Direct Numerical Simulation of Gas-Solid Systems Eulerian-Lagrangian Simulation of Gas- Solid Systems www.ese.mavt.ethz.ch Dynamic particle simulations CO 2 Capture Heterogeneous Catalysis FID+TCD Ion chamber I 0 Gas Outlet Gas inlet Monochromators T = 50-700 ºC P = 1-20 bar Capillary reactor in-out XAS detector XRD detector Catalyst I t CO 2 + 3 H 2 CH 3 OH + H 2 O CO 2 + CH 4 2 CO + 2 H 2 CO 2 hydrogenation to methanol : Dry reforming of methane: Methanol production rate Structure-performance relationship Colloidal nanoparticles Porous supports Final catalyst CO 2 Capture & Utilization C O O Ni/SiO 2 @Al 2 O 3 (ALD) and Methane Consumption Rate CaO +CO 2 CaCO 3 MgO + CO 2 MgCO 3 Ca-looping Mg-looping: time on stream In 2 O 3 m-ZrO 2 Zr O In (Photo)electrochemical Energy Conversion Water O 2 H 2 Water OH H H H OH HO OH H 2 H 2 CO 2 Value-added chemicals + + (Photo)electro- catalysts 1 1 1 1

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Page 1: Laboratory of Energy Science and Engineering...Laboratory of Energy Science and Engineering Development of Innovative Processes for the Sustainable Production of Fuels, Chemicals and

Laboratory of Energy Science and EngineeringDevelopment of Innovative Processes for the Sustainable Production of Fuels, Chemicals and Electricity

Numerical Simulations Magnetic Resonance Imaging (MRI)Cutting Edge MRI Technology

Probing Two-Phase Granular Systems

Granular Physics

Massive Parallel Cluster Computing

Direct Numerical Simulation of Gas-Solid Systems

Eulerian-Lagrangian Simulation of Gas-

Solid Systems

www.ese.mavt.ethz.ch

Dynamic particle simulations

CO2 Capture

Heterogeneous Catalysis

FID+TCD

Ion chamber

I0

Gas Outlet

Gas inlet

Monochromators

T = 50-700 ºCP = 1-20 bar

Capillary reactor

in-o

ut

XAS detector

XRD

de

tect

or

Cat

alys

t

It

CO2 + 3 H2 → CH3OH + H2O

CO2 + CH4 → 2 CO + 2 H2

CO2 hydrogenation to methanol :

Dry reforming of methane:

Methanol production rate Structure-performance relationship

Colloidal nanoparticles Porous supports Final catalyst

CO2Capture & Utilization

C

OONi/SiO2@Al2O3 (ALD) and Methane

Consumption Rate

CaO +CO2 ↔ CaCO3

MgO + CO2↔ MgCO3

Ca-looping

Mg-looping:

time on streamIn2O3

m-ZrO2

ZrO In

(Photo)electrochemical Energy Conversion

Water

O2

H2

Water

OH

HH

H

OHHOOH

H2

H2

CO2

Value-addedchemicals

+

+

(Photo)electro-catalysts

11

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