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H 2 -based direct reduction of iron ore is a promising opportunity to mitigate process-related CO 2 emissions in the steel industry. However, efficient operation of the direct reduction plant is crucial for the transformation process, since green H 2 remains scarce and expensive. A prerequisite for a competitive process design and operation strategy is a deep understanding of the underlying kinetics. For this purpose, a fast and detailed characterization of the reduction behavior of the applied iron ore feedstocks is of major importance. Within this paper a time-efficient set-up for experimental investigations as well as a related model-based determination of kinetic parameters, including the evaluation of five different iron ore feedstocks in the range of T = 873–1273 K and p = 1.01325 · 10 5 –6.0 · 10 5 Pa, are presented. The applied data for the study is based on 233 single particle reduction experiments. The derived results highlight the advantage of time-efficient feedstock evaluation in order to optimize plant operating parameters with regards to the applied iron ore.
Gallwitz et al. (Fri,) studied this question.