Size reduction of CCZ polymetallic nodules under repeated impact fragmentation

Journal Article (2020)
Author(s)

J. M. van Wijk (Royal IHC)

E. de Hoog (TU Delft - Offshore and Dredging Engineering)

Research Group
Offshore and Dredging Engineering
Copyright
© 2020 J. M. van Wijk, E. de Hoog
DOI related publication
https://doi.org/10.1016/j.rineng.2020.100154
More Info
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Publication Year
2020
Language
English
Copyright
© 2020 J. M. van Wijk, E. de Hoog
Research Group
Offshore and Dredging Engineering
Volume number
7
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Abstract

Polymetallic nodules provide an alternative source of valuable metals. Nodules from the seabed of the Clarion Clipperton Zone (CCZ), a prospective mining area, are typically abundant at depths of around 5 ​km. Mining these nodules comprises excavation or pick-up of nodules and hydraulic transport of nodules from the seafloor to the surface. The particle size distribution of the nodules, an important design parameter, will change during transport under influence of different processes. One of these processes is impact fragmentation, especially occurring in centrifugal pumps. Recent research has led to improved understanding of impact fragmentation of polymetallic nodules, but quantification of the degradation process still is an open question due to scarcity of breakage data. In this paper we present a detailed analysis of nodule strengths and stresses occurring during impact and we propose an impact fragmentation model based on limited breakage data. The model is compared with the experiments and we comment on application of this model in engineering practice.