Modeling Chemical Looping Gasification with Agroforestry Residues: Validation against Results in a 20 kW<sub>th</sub> CLG Unit. [PDF]
Abad A +4 more
europepmc +1 more source
New Triclinic Perovskite-Type Oxide Ba5CaFe4O12 for Low-Temperature Operated Chemical Looping Air Separation. [PDF]
Ogawa S +5 more
europepmc +1 more source
Creep‐Induced Microstructural Evolution in an A2‐B2 Superalloy
A 27.3Ta‐27.3Mo‐27.3Ti‐8Cr‐10Al (at.%) refractory high‐entropy alloy with precipitation‐strengthened A2‐B2 microstructure was studied by creep tests at 1030°C, which demonstrate a transition in deformation mechanisms in the range of 100–150 MPa applied stress. This is associated with changes in dislocation–precipitate interactions. Relevant deformation
Liu Yang +10 more
wiley +1 more source
Stoichiometric Selective Carbonylation of Methane to Acetic Acid by Chemical Looping. [PDF]
Wang Y +8 more
europepmc +1 more source
Modeling Analysis of a Polygeneration Plant Using a CeO2/Ce2O3 Chemical Looping. [PDF]
Magnolia G +3 more
europepmc +1 more source
PASTA‐ELN: Simplifying Research Data Management for Experimental Materials Science
Research data management faces ongoing hurdles as many ELNs remain complex and restrictive. PASTA‐ELN offers an open‐source, cross‐platform solution that prioritizes simplicity, offline access, and user control. Its in tuitive folder structure, modular Python add‐ons, and open formats enable seamless documentation, FAIR data practices, and easy ...
S. Brinckmann, G. Winkens, R. Schwaiger
wiley +1 more source
Evaluation of a Mining Waste as an Oxygen Carrier for Syngas Production Using Chemical Looping in a 3 kWh Fluidized Bed Reactor. [PDF]
Das S, Paliwal M.
europepmc +1 more source
Understanding the Impacts of Different Impurities on Elemental Mercury Removal by CaS in Chemical Looping Combustion of Coal: A First Principle Study. [PDF]
Fan Y, Jin J, Liu Q, Xu K, Shi H, Liu D.
europepmc +1 more source
Novel reactor technology for chemical-looping combustion
No Abstract.
Noorman, S. +2 more
openaire +3 more sources
Influence of Test Temperature and Test Frequency on Fatigue Life of Aluminum Alloy EN AW‐2618A
The influence of test temperature and test frequency on the fatigue life of EN AW‐2618A is investigated. High‐cycle fatigue tests are performed at different test temperatures and frequencies on the 1000 h/230°C overaged state. Both test parameters reduce fatigue life due to time‐dependent damage mechanisms.
Ying Han +5 more
wiley +1 more source

