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Study of inexpensive oxygen carriers for chemical looping combustion
Authors:A Fossdal  E Bakken  BA Øye  C Schøning  I Kaus  T Mokkelbost  Y Larring
Institution:1. SINTEF Materials and Chemistry, NO-7465 Trondheim, Norway;2. SINTEF Materials and Chemistry, P.O. Box 124 Blindern, NO-0314 Oslo, Norway;1. Department of Chemical and Biological Engineering, Division of Environmental Inorganic Chemistry, Chalmers University of Technology, SE-412 96 Göteborg, Sweden;2. Department of Energy and Environment, Division of Energy Technology, Chalmers University of Technology, SE-412 96 Göteborg, Sweden;1. Chemical Engineering Department, Swanson School of Engineering, University of Pittsburgh, Pittsburgh, PA 15261, United States;2. U.S. Department of Energy, National Energy Technology Laboratory, Pittsburgh, PA, United States
Abstract:Norwegian industrial tailings and by-products, as well as naturally occurring minerals and ores have been surveyed with the purpose of identifying candidate oxygen carrier materials for use in a chemical looping combustion process. Nine materials, based on manganese and/or iron oxide, were selected for an initial screening test; six were deemed promising and were hence investigated further. Thermogravimetric experiments were performed to investigate the oxygen capacity, the reaction kinetics and reversibility of the oxygen absorption reaction. A manganese ore with a reversible capacity of 4.9 wt% oxygen at 1000 °C was selected as the most promising for chemical looping combustion applications. This material was modified by addition of calcia to explore the possibility of enhancing the kinetic, catalytic and mechanical properties. The addition of excess calcium relative to manganese resulted in formation of calcium manganite and related phases. The oxygen capacity of the modified material was 4.5 wt% at 1000 °C, but it has potential advantages in terms of kinetics and chemical and mechanical stability relative to the pure ore.
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