157
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Kinetics Investigation of Phosphorus Leaching from Steelmaking Slag

, , , , &

References

  • Ashraf, M., I. Z. Zafar, and T. M. Ansari. 2005. Selective leaching kinetics and upgrading of low-grade calcareous phosphate rock in succinic acid. Hydrometallurgy 80 (4):286–92. doi:10.1016/j.hydromet.2005.09.001.
  • Bai, T., Z. G. Song, Y. G. Wu, X. D. Hu, and H. Bai. 2018. Influence of steel slag on the mechanical properties and curing time of metakaolin geopolymer. Ceramics International 44 (13):15706–13. doi:10.1016/j.ceramint.2018.05.243.
  • Balaguera, C. A. C., and M. A. G. Botero. 2020. Characterization of steel slag for the production of chemically bonded phosphate ceramics (CBPC). Construction and Building Materials 241:e118138. doi:10.1016/j.conbuildmat.2020.118138.
  • Das, S., S. J. Galgo, M. A. Alam, J. G. Lee, H. Y. Hwang, C. H. Lee, and P. J. Kim. 2020. Recycling of ferrous slag in agriculture: Potentials and challenges. Critical Reviews in Environmental Science and Technology 52 (8):1247–81. doi:10.1080/10643389.2020.1853458.
  • Du, C. M., X. Gao, S. Ueda, and S. Y. Kitamura. 2019. Separation and recovery of phosphorus from steelmaking slag via a selective leaching-chemical precipitation process. Hydrometallurgy 189:e105109. doi:10.1016/j.hydromet.2019.105109.
  • Du, C. M., X. Gao, S. Ueda, and S. Y. Kitamura. 2020. A kinetic study on selective leaching of phosphorus from dephosphorization slag. Journal of Sustainable Metallurgy 6 (4):724–38. doi:10.1007/s40831-020-00309-z.
  • Duan, W. J., D. G. Wang, Z. M. Wang, and Q. B. Yu. 2022. Hydrometallurgical leaching behavior and kinetic modeling of blast furnace slag in hydrochloric acid. Journal of Sustainable Metallurgy 8 (1):170–85. doi:10.1007/s40831-021-00473-w.
  • Ekmekyapar, A., E. Aktas, A. Kunkul, and N. Demirkiran. 2012. Investigation of leaching kinetics of copper from malachite ore in ammonium nitrate solutions. Metallurgical and Materials Transactions B 43 (4):764–72. doi:10.1007/s11663-012-9670-2.
  • Iwasaki, I., E. Fregeau-Wu, and T. Fujita. 1993. Removal of phosphorus from steelmaking slags: A literature survey. Mineral Procesing and Extractive Metallurgy Review 12 (1):19–36. doi:10.1080/08827509308935251.
  • Li, H. J., H. Suito, and M. Tokuda. 1995. Thermodynamic analysis of slag recycling using a slag regenerator. ISIJ International 35 (9):1079–88. doi:10.2355/isijinternational.35.1079.
  • Lin, L., Y. P. Bao, M. Wang, W. Jiang, and H. M. Zhou. 2014. Separation and recovery of phosphorus from P-bearing steelmaking slag. Journal of Iron and Steel Research International 21 (5):496–502. doi:10.1016/S1006-706X(14)60077-7.
  • Lv, N. N., C. Su, H. Kong, H. C. Wang, and Y. C. Dong. 2022. Leaching process of phosphorus and iron from steelmaking slag into malic acid solution. Journal of Iron and Steel Research International 29 (6):951–60. doi:10.1007/s42243-021-00663-6.
  • Numata, M., N. Maruoka, S. J. Kim, and S. Y. Kitamura. 2014. Fundamental experiment to extract phosphorous selectively from steelmaking slag by leaching. ISIJ International 54 (8):1983–90. doi:10.2355/isijinternational.54.1983.
  • Ono-Nakazato, H., T. Usui, N. Kitamura, and Y. Tsubone. 2003. Gaseous reduction behavior of iron oxide in mineral phases and in CaO-SiO2-FeO slag powder. Mineral Processing Extractive Metallurgy Review 24 (3–4):269–91. doi:10.1080/714856825.
  • Ono, H., A. Inagaki, T. Masui, H. Narita, T. Mitsuo, S. Nosaka, T. Mitsuo, and S. Gohda. 1981. Removal of phosphorus from LD converter slag by floating separation of dicalcium silicate during solidification. Tetsu-To-Hagane 21:135–44.
  • Pahlevani, F., S. Y. Kitamura, H. Shibata, and N. Maruoka. 2010. Distribution of P2O5 between solid solution of 2cao·sio2–3cao·p2o5 and liquid phase. ISIJ International 50 (6):822–29. doi:10.2355/isijinternational.50.822.
  • Qiao, Y., J. Diao, X. Liu, X. S. Li, T. Zhang, and B. Xie. 2016. Dephosphorization of steelmaking slag by leaching with acidic aqueous solution. JOM 68 (9):2511–19. doi:10.1007/s11837-015-1760-6.
  • Qiao, Y., J. Diao, D. M. Liu, J. F. Yang, D. W. Guo, S. Y. Gong, and B. Xie. 2018. Dephosphorisation of steel slags by leaching with sulphuric acid. Mineral Processing and Extractive Metallurgy 127 (4):250–54. doi:10.1080/03719553.2017.1412096.
  • Sugiyama, S., I. Shinomiya, R. Kitora, K. Nakagawa, and M. Katoh. 2014. Recovery and enrichment of phosphorus from the nitric acid extract of dephosphorization slag. Journal of Chemical Engineering of Japan 47 (6):483–87. doi:10.1252/jcej.13we065.
  • Tang, Z. J., J. Liang, W. H. Jiang, J. M. Liu, F. Jiang, G. Feng, X. B. Lao, H. D. Tang, and T. Wang. 2020. Preparation of high strength foam ceramics from sand shale and steel slag. Ceramics International 46 (7):9256–62. doi:10.1016/j.ceramint.2019.12.179.
  • Teratoko, T., N. Maruoka, H. Shibata, and S. Y. Kitamura. 2012. Dissolution behavior of dicalcium silicate and tricalcium phosphate solid solution and other phases of steelmaking slag in an aqueous solution. High Temperature Materials and Processes 31 (4–5):329–38. doi:10.1515/htmp-2012-0032.
  • Tu, X., A. Aneksampant, S. Kobayashi, A. Tanaka, R. Nishimoto, and M. Fukushima. 2017. Advantages and risks of using steel slag in preparing composts from raw organic waste. Journal of Environmental Science and Health, Part B 52 (1):30–36. doi:10.1080/03601234.2016.1224701.
  • Vu, M. T., L. N. Nguyen, M. A. H. Johir, H. H. Ngo, C. Skidmore, A. Fontana, B. Galway, H. Bustamante, and L. D. Nghiem. 2021. Phosphorus removal from aqueous solution by steel making slag–mechanisms and performance optimisation. Journal of Cleaner Production 284:124753. doi:10.1016/j.jclepro.2020.124753.
  • Wan, J. F., H. Du, F. Gao, S. N. Wang, M. L. Gao, B. Liu, and Y. Zhang. 2021. Direct leaching of vanadium from vanadium-bearing steel slag using NaOH solutions: A case study. Mineral Processing and Extractive Metallurgy Review 42 (4):257–67. doi:10.1080/08827508.2020.1762182.
  • Wang, H. H., G. Q. Li, D. Zhao, J. H. Ma, and J. Yang. 2017. Dephosphorization of high phosphorus oolitic hematite by acid leaching and the leaching kinetics. Hydrometallurgy 171:61–68. doi:10.1016/j.hydromet.2017.04.015.
  • Wei, C., J. P. Dong, H. N. Zhang, and X. Wang. 2021. Kinetics model adaptability analysis of CO2 sequestration process utilizing steelmaking slag and cold-rolling wastewater. Journal of Hazardous Materials 404:e124094. doi:10.1016/j.jhazmat.2020.124094.
  • Yang, Z., H. Y. Li, X. C. Yin, Z. M. Yan, X. M. Yan, and B. Xie. 2014. Leaching kinetics of calcication roasted vanadium slag with high CaO content by sulfuric acid. International Journal of Mineral Processing 133:105–11. doi:10.1016/j.minpro.2014.10.011.
  • Yokoyama, K., H. Kubo, K. Mori, H. Okada, S. Takeuchi, and T. Nagasaka. 2007. Separation and recovery of phosphorus from steelmaking slags with the aid of a strong magnetic field. ISIJ International 47 (10):1541–48. doi:10.2355/isijinternational.47.1541.
  • Zhao, J. H., P. Y. Yan, and D. M. Wang. 2017. Research on mineral characteristics of converter steel slag and its comprehensive utilization of internal and external recycle. Journal of Cleaner Production 156:50–61. doi:10.1016/j.jclepro.2017.04.029.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.