Engineering Assessment of Niobium Recovery Potential from TiCl4 Wet Scrubber Slurry: Material and Heat Balances, Thermal-Separation Design, and Techno-Economic Screening

Niobium can concentrate in TiCl4 wet scrubber slurry during molten-salt chlorination of ilmenite-derived titanium slag. This study presents an engineering assessment using published Nb-routing data, characterization of an isolated slurry solid, HSC Chemistry 6 balances, process design, and techno-economic screening. The reference model combines a 58.2% slag-to-slurry Nb distribution with an independently published bulk grade of 11.6841 wt.% Nb. These inputs come from different datasets and define a scenario rather than a closed campaign balance. For slag containing 0.044 wt.% Nb2O5, the calculated slurry inventory is 0.179 kg Nb t−1 slag and dry-intermediate yield 1.53 kg t−1 slag. XRD and SEM–EDS characterize a heterogeneous isolated solid with local Nb-rich domains; laboratory preparation did not reproduce the proposed two-stage treatment. With complete assumed Nb retention, the upper-bound routing/recovery potential is 58.1%; 95% and 90% thermal-retention cases reduce it to 55.2% and 52.3%. The theoretical process-material duty is 8.02 MJ t−1 slag and heating electricity 2.51 kWh t−1 slag. At 30,000 t slag y−1, screening CAPEX is USD 0.293 million and annualized thermal-section cost USD 2.34 t−1 slag. Pilot testing is required to close the Nb balance and verify energy use and condensate composition before recovery or recycle performance can be demonstrated.

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Publication Details

Journal
Metals
Published
2026-10-08
DOI
https://doi.org/10.3390/met16101112
Primary Topic
Extraction and Separation Processes
Type
article
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article

Engineering Assessment of Niobium Recovery Potential from TiCl4 Wet Scrubber Slurry: Material and Heat Balances, Thermal-Separation Design, and Techno-Economic Screening

Т.А. Чепуштанова, T. K. Sarsembekov
Metals
Extraction and Separation Processes
article

Engineering Assessment of Niobium Recovery Potential from TiCl4 Wet Scrubber Slurry: Material and Heat Balances, Thermal-Separation Design, and Techno-Economic Screening

Т.А. Чепуштанова, T. K. Sarsembekov
article en

Abstract

Niobium can concentrate in TiCl4 wet scrubber slurry during molten-salt chlorination of ilmenite-derived titanium slag. This study presents an engineering assessment using published Nb-routing data, characterization of an isolated slurry solid, HSC Chemistry 6 balances, process design, and techno-economic screening. The reference model combines a 58.2% slag-to-slurry Nb distribution with an independently published bulk grade of 11.6841 wt.% Nb. These inputs come from different datasets and define a scenario rather than a closed campaign balance. For slag containing 0.044 wt.% Nb2O5, the calculated slurry inventory is 0.179 kg Nb t−1 slag and dry-intermediate yield 1.53 kg t−1 slag. XRD and SEM–EDS characterize a heterogeneous isolated solid with local Nb-rich domains; laboratory preparation did not reproduce the proposed two-stage treatment. With complete assumed Nb retention, the upper-bound routing/recovery potential is 58.1%; 95% and 90% thermal-retention cases reduce it to 55.2% and 52.3%. The theoretical process-material duty is 8.02 MJ t−1 slag and heating electricity 2.51 kWh t−1 slag. At 30,000 t slag y−1, screening CAPEX is USD 0.293 million and annualized thermal-section cost USD 2.34 t−1 slag. Pilot testing is required to close the Nb balance and verify energy use and condensate composition before recovery or recycle performance can be demonstrated.

MetalsVol. 16(10)
Satbayev University (KZ)
Openalex Percentile: Top 22%
Extraction and Separation Processes
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