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Acid etching behavior and mechanism in acid solution of iron components in basalt fibers Cover

Acid etching behavior and mechanism in acid solution of iron components in basalt fibers

Open Access
|Sep 2025

References

  1. Jamshaid H, Mishra R. A green material from rock: Basalt fiber – a review. J Text Inst. 2015;107:923–37.
  2. Zhang J, She X, Liu J, Zhang L. Preparation, properties and application of novel continuous basalt fibers. Mater Rep. 2022;37:22010106.
  3. Liu H, Yu Y, Liu Y, Zhang M, Li L, Ma L, et al. A review on basalt fiber composites and their applications in clean energy sector and power grids. Polymers (Basel). 2022;14:2376.
  4. Wang X, Li L, Wei M, Xiang Y, Wu Y, Zhou B, et al. Experimental study on the mechanical properties of short-cut basalt fiber reinforced concrete under large eccentric compression. Sci Rep. 2025;15:10845.
  5. Meng Y, Liu J, Xia Y, Liang W, Ran Q, Xie Z. Preparation and characterization of continuous basalt fibre with high tensile strength. Ceram Int. 2021;47:12410–5.
  6. Ralph C, Lemoine P, Summerscales J, Archer E, McIlhagger A. Relationships among the chemical, mechanical and geometrical properties of basalt fibers. Text Res J. 2018;89:3056–66.
  7. Friedrich M, Schulze A, Prösch G, Walter C, Weikert D, Binh NM, et al. Investigation of chemically treated basalt and glass fibres. Microchimica Acta. 2000;133:171–4.
  8. Si J, Wang Z, Li J, Zuo C, Zhang P, Wei C, et al. Effects of CaO added to raw basalt on producing continuous basalt fibers and their mechanical properties. J Non-Cryst Solids. 2021;568:120941.
  9. Ying S, Zhou X. Chemical and thermal resistance of basalt fiber in inclement environments. J Wuhan Univ Technol-Mater Sci Ed. 2013;28:560–5.
  10. Zhao M, Cao J, Geng X, Song W, Wang Z. Structural origin of CaO-MgO-Al2O3-SiO2-Fe2O3 glass crystallization: Iron-containing clusters. J Non-Cryst Solids. 2020;547:120295.
  11. Lonnroth N, Yue Y-Z. Structural order and crystallization of an iron-rich aluminosilicate liquid under oxidizing condition. J Non-Cryst Solids. 2008;354:1190–3.
  12. Huo Y, Qin G, Huo J, Zhang X, Guo B, Zhang K, et al. Crystallization kinetics of modified basalt glass. Materials (Basel). 2020;13:5043.
  13. Eick MJ, Grossl PR, Golden DC, Sparks DL, Ming DW. Dissolution of a lunar basalt simulant as affected by pH and organic anions. Geoderma. 1996;74:139–60.
  14. Hou X, Yao S, Wang Z, Fang C, Li T. Enhancement of the mechanical properties of polylactic acid/basalt fiber composites via in-situ assembling silica nanospheres on the interface. J Mater Sci Technol. 2021;84:182–90.
  15. Li J, Shen S, Li W, Yuan H. Effects of acid modification on coupling agent amount of basalt fiber surface and mechanical property of BF/epoxy composites. Acta Materiae Compositae Sin. 2014;31(4):888–94.
  16. Wang L, Liu M, Zhuang C, Hou S–E, Jin H. Effect of acid treatment on microstrucre and mechanical property of basalt fiber. J Funct Mater. 2013;44:84–7.
  17. He C, Qi B, Song H, Zhang H, Lan M, Jiao Y, et al. Enhanced biohydrogen production from corn straw by basalt fiber addition. Bioresour Technol. 2021;338:125528.
  18. Standard test method for drinking water - Metal index. Beijing: China Standards Publishing Press; 2006.
  19. Yan L, Chu F, Tuo W, Zhao X, Wang Y, Zhang P, et al. Review of research on basalt fibers and basalt fiber-reinforced composites in China (I): Physicochemical and mechanical properties. Polym Polym Compos. 2020;29:1612–24.
  20. Ru-Fen C, Juan D, Guo-Qiang S, Yu W, Deng-Lu H. Synthesis of different crystalline γ-FeOOH and their liquid phase transformation. Acta Chim Sin. 2008;66:2348–52.
  21. Ishikawa T, Takeuchi K, Kandori K, Nakayama T. Transformation of γ-FeOOH to α-FeOOH in acidic solutions containing metal ions. Colloids Surf A: Physicochem Eng Asp. 2005;266:155–9.
  22. Xiong H, Zhou L. Synthesis of iron oxyhydroxides of different crystal forms and their roles in adsorption and removal of Cr(Ⅵ) from aqueous solutions. Acta Petrologica Et Mineralogica. 2008;27(6):559–66.
  23. Jin Y, Xie H, Zhang P, Liu Y, Rao B, Feng D, et al. A study on characteristics and mechanism of surface passivation of galena in the presence of sulfuric acid. Acta Mineralogica Sin. 2022;42:343–50.
  24. Jiang Z, Niu W, Song Z, et al. Study on the preparation of ferrous sulfate monohydrate. Hua Xue Shi Ji. 1992;14:381–2.
  25. Zhang Z, Li C, Dai X, Liu Q, Zhang M, Zhang Y, et al. Enhanced dissociation and valuable metal leaching behavior of germanium-zinc leaching residue. Chin J Nonferrous Ment. 2022;32:43189.
  26. Nicol M, Miki H, Basson P. The effects of sulphate ions and temperature on the leaching of pyrite. 2. Dissolution rates. Hydrometallurgy. 2013;133:182–7.
  27. Zheng G, Li Y, Xia J, Li W, Gu F, Wang W, et al. Dissolution kinetics of iron, calcium and magnesium from coal gangue during low-temperature neutralization. Chem Ind Eng Prog. 2019;38(12):5594–602.
  28. Yang J-L, Liu J-G, Xiao H-X, Ma S-J. Sulfuric acid leaching of high iron-bearing zinc calcine. Int J Minerals Metall Mater. 2017;24:1211–6.
  29. Xie W, Zhang N, Li J, Zhou F, Ma X, Gu G, et al. Optimization of condition for extraction of aluminum and iron from red mud by hydrochloric acid leaching. Chin J Environ Eng. 2017;11(10):5677–82.
  30. Wei B. Study on the coating modification of basalt fibers and their chemical stability performance. Harbin: Harbin Institute of Technology; 2011.
  31. Xiao J. Prepartion and effects on basalt fiber with different iron reduction index. Shanghai: Donghua University; 2018.
  32. Manylov MS, Gutnikov SI, Lipatov YV, Malakho AP, Lazoryak BI. Effect of deferrization on continuous basalt fiber properties. Mendeleev Commun. 2015;25(5):386–8.
  33. Burkhard DJM. Iron-bearing silicate glasses at ambient conditions. J Non-Cryst Solids. 2000;275(3):175–88.
Language: English
Submitted on: Oct 8, 2024
Accepted on: Jul 2, 2025
Published on: Sep 18, 2025
Published by: Sciendo
In partnership with: Paradigm Publishing Services

© 2025 Lvshan Zhou, Jingfan Xu, Zhenxiao Deng, Yunfei Zhang, published by Sciendo
This work is licensed under the Creative Commons Attribution 4.0 License.