The overburning test method was developed to simulate and predict lime densification, agglomeration, and sporadic melting at the highest potential temperature of lime kilns. These events, that belong to the so-called ‘‘sticking tendency” phenomenon, are associated to formation of crusts, occlusions, and blockages in vertical lime kilns. In this work, fifty carbonate rocks, their insoluble residues, and derived burnt products were investigated through a multianalytical approach. Four groups of rocks having different burnability were identified. In addition, three fundamental mechanisms were related to the abovementioned phenomena: dehydration melting, solid-state, and liquid-phase sintering processes.
Vola, G., Ardit, M., Sarandrea, L., Brignoli, G., Natali, C., Cavallo, A., et al. (2021). Investigation and prediction of sticking tendency, blocks formation and occasional melting of lime at HT (1300 °C) by the overburning test method. CONSTRUCTION AND BUILDING MATERIALS, 294 [10.1016/j.conbuildmat.2021.123577].
Investigation and prediction of sticking tendency, blocks formation and occasional melting of lime at HT (1300 °C) by the overburning test method
Cavallo, Alessandro;
2021
Abstract
The overburning test method was developed to simulate and predict lime densification, agglomeration, and sporadic melting at the highest potential temperature of lime kilns. These events, that belong to the so-called ‘‘sticking tendency” phenomenon, are associated to formation of crusts, occlusions, and blockages in vertical lime kilns. In this work, fifty carbonate rocks, their insoluble residues, and derived burnt products were investigated through a multianalytical approach. Four groups of rocks having different burnability were identified. In addition, three fundamental mechanisms were related to the abovementioned phenomena: dehydration melting, solid-state, and liquid-phase sintering processes.File | Dimensione | Formato | |
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