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Selection of High-Performance Sorbent for HS Removal and Regulation of Reaction Products via Thermodynamic Simulation. | LitMetric

Selection of High-Performance Sorbent for HS Removal and Regulation of Reaction Products via Thermodynamic Simulation.

Materials (Basel)

State Key Laboratory of Precision Manufacturing for Extreme Service Performance, Central South University, Changsha 410083, China.

Published: June 2025


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Article Abstract

Thermodynamic simulations of the HS removal from blast furnace gas by metal oxides were conducted to select a suitable metal desulfurizer. Notably, the Mn oxides demonstrated themselves as the optimal HS removal agents. They are characterized by the absence of radioactive pollution, high cost-effectiveness, high sulfur fixation potential, and non-reactivity with CO, CO, and CH. Through a comprehensive comparison of Mn oxides, the sulfur fixation potential and sulfur capacity were elucidated as follows: MnO > MnO > MnO > MnO. The higher-valence manganese oxides were shown to have stronger oxidation ability, larger sulfur capacity, and the advantage of producing elemental sulfur with high utilization value during the reaction. After selecting Mn oxides as the optimal HS removal agents, an equilibrium component analysis of the regeneration process of the sulfided MnS was carried out. The results indicate that an oxygen amount that is 1.5 times that of MnS is the optimal dosage, and such an amount can oxidize all of the MnS at a relatively low temperature. Conversely, a diluted oxygen concentration can further reduce the temperature of the regeneration process, preventing the sintering of the regenerated desulfurizer and thus maintaining its reusability. This research provides a sufficient theoretical basis for the use of Mn oxides as active components of desulfurizers to remove HS from blast furnace gas and for the regeneration of MnS after desulfurization.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC12195342PMC
http://dx.doi.org/10.3390/ma18122918DOI Listing

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