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Original Articles

Utilization of Chrysotile-Type Tailings for Synthesis of High-Grade Silica by Controlled Precipitation

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References

  • Baigenzhenov, O. S., Kozlov, V. A., Luganov, V. A., Mishra, B., Shayahmetova, R. A., and Aimbetova, I. O., 2015, “Complex processing of wastes generated in chrysotile asbestos production.” Mineral Processing and Extractive Metallurgy Review, 36(4), pp. 242–248.
  • Bałdyga, J., Jasińska, M., Jodko, K., and Petelski, P., 2012, “Precipitation of amorphous colloidal silica from aqueous solutions – Aggregation problem.” Chemical Engineering Science, 77, pp. 207–216.
  • Bergna, H. E. and Roberts, W. O. (Eds.), 2006, Colloidal Silica: Fundamentals and Applications, Boca Raton, FL: CRC Press Taylor & Francis Group, pp. 139–148, 780.
  • Bloise, A., Critelli, T., Catalano, M., Apollaro, C., Miriello, D., Croce, A., Barrese, E., Liberi, F., Piluso, E., Rinaudo, C., and Belluso, E., 2014, “Asbestos and other fibrous minerals contained in the serpentinites of the Gimiliano-Mount Reventino Unit (Calabria, S-Italy).” Environmental Earth Sciences, 71(8), pp. 3773–3786.
  • Fedoročková, A., Hreus, M., Raschman, P., and Sučik, G., 2012, “Dissolution of magnesium from calcined serpentinite in hydrochloric acid.” Minerals Engineering, 32, pp. 1–4.
  • Huang, S. X. L., Jaurand, M. C., Kamp, D. W., Whysner, J., and Hei, T. K., 2011, “Role of mutagenicity in asbestos fiber-induced carcinogenicity and other diseases.” Journal of Toxicology and Environmental Health, Part B: Critical Reviews, 14(1–4), pp. 179–245.
  • Junkes, J. A., Della, V. P., Acchar, W., Oliveira, A. P. N., and Hotza, D., 2006, “Obtaining amorphous silica from acid-leached, calcined rice husk.” Indian Ceramics, 26(1), pp. 11–15.
  • Kobayashi, M., Juillerat, F., Galletto, P., Bowen, P., and Borkovec, M., 2005, “Aggregation and charging of colloidal silica particles: Effect of particle size.” Langmuir, 21(13), pp. 5761–5769.
  • Lee, Y. K., Yoon, Y. R., and Rhee, H. K., 2000, “Preparation of colloidal silica using peptization method.” Colloids and Surfaces A: Physicochemical and Engineering Aspects, 173, pp. 109–116.
  • Liu, C., Wang, A., Yin, H., Shen, Y., and Jiang, T., 2012, “Preparation of nanosized hollow silica spheres from Na2SiO3 using Fe3O4 nanoparticles as templates.” Particulogy, 10(3), pp. 352–358.
  • Liu, J., Zhang, L., Yang, Q., and Li, C., 2008, “Structural control of mesoporous silicas with large nanopores in a mild buffer solution.” Microporous and Mesoporous Materials, 116(1–3), pp. 330–338.
  • Marquez-Linares, F. and Roque-Malherbe, R. M. A., 2006, “Synthesis and characterization of large specific surface area nanostructured amorphous silica materials.” Journal of Nanoscience and Nanotechnology, 6(4), pp. 1114–1118.
  • McDonald, R. G. and Whittington, B. I., 2008a, “Atmospheric acid leaching of nickel laterites review. Part I. Sulphuric acid technologies.” Hydrometallurgy, 91, pp. 35–55.
  • McDonald, R. G. and Whittington, B. I., 2008b, “Atmospheric acid leaching of nickel laterites review. Part II. Chloride and bio-technologies.” Hydrometallurgy, 91, pp. 56–69.
  • Mossman, B. T., 2008, “Assessment of the pathogenic potential of asbestiform vs. nonasbestiform particulates (cleavage fragments) in in vitro (cell or organ culture) models and bioassays.” Regulatory Toxicology and Pharmacology, 52(1), pp. S200–S203.
  • Musič, S., Filipović-Vinceković, N., and Sekovanić, L., 2011, “Precipitation of amorphous SiO2 particles and their properties.” Brazilian Journal of Chemical Engineering, 28(1), pp. 89–94.
  • Nam, S. N., Jeong, S., and Lim, H., 2014, “Thermochemical destruction of asbestos-containing roofing slate and the feasibility of using recycled waste sulfuric acid.” Journal of Hazardous Materials, 265, pp. 151–157.
  • Pakhomov, N. A. and Buyanov, R. A., 2005, “Current trends in the improvement and development of catalyst preparation methods.” Kinetics and Catalysis, 46(5), pp. 669–683.
  • Pietriková, A., Búgel, M., and Golja, M., 2004, “Preparation of SiO2 powder through leaching of serpentinite.” Metalurgija, 43, pp. 299–304.
  • Pugnaloni, A., Giantomassi, F., Lucarini, G., Capella, S., Belmonte, M. M., Orciani, M., and Belluso E., 2010, “Effects of asbestiform antigorite on human alveolar epithelial A549 cells: A morphological and immunohistochemical study.” Acta Histochemica, 112(2), pp. 133–146.
  • Pugnaloni, A., Giantomassi, F., Lucarini, G., Capella, S., Bloise, A., Di Primio, R., and Belluso, E., 2013, “Cytotoxicity induced by exposure to natural and synthetic tremolite asbestos: An in vitro pilot study.” Acta Histochemica, 115(2), pp. 100–112.
  • Raschman, P., Fedoročková, A., and Sučik, G., 2013, “Thermal activation of serpentine prior to acid leaching.” Hydrometallurgy, 139, pp. 149–153.
  • Sanna, A., Hall, M. R., and Maroto-Valer, M., 2012, “Post-processing pathways in carbon capture and storage by mineral carbonation (CCSM) towards the introduction of carbon neutral materials,” Energy and Environmental Science, 5, pp. 7781–7796.
  • Sheikholeslami, R., Al-Mutaz, I. S., Koo, T., and Young, A., 2001, “Pretreatment and the effect of cations and anions on prevention of silica fouling.” Desalination, 139, pp. 83–95.
  • Takahashi, R., Sato, S., Sodesawa, T., and Azuma, T., 2004, “Silica with bimodal pores for solid catalysts prepared from water glass.” Journal of Sol-Gel Science and Technology, 31, pp. 373–376.
  • Teir, S., Revitzer, H., Eloneva, S., Fogelholm, C. J., and Zevenhoven, R., 2007, “Dissolution of natural serpentinite in mineral and organic acids,” International Journal of Mineral Processing, 83, pp. 36–46.
  • Unger, K. K., Tanaka, N., and Machtejevas, E. (Eds.), 2011, Monolithic Silicas in Separation Science: Concepts, Syntheses, Characterization, Modeling and Application, Weinheim: Willey-WCH, Verlag GmbH & Co. KGaA, p. 22.
  • Velinskii, V. V. and Gusev, G. M., 2002, “Production of extra pure silica from serpentinites,” Journal of Mining Science, 38(4), pp. 402–404.
  • Wang, Z., Yang, H., Wang, L., and Zhao, M., 1997, “Preparation of ultrafine SiO2 with high surface area by the chemical precipitation method.” Materials Science and Engineering, 48, pp. 211–214.
  • Wang, L., Wang, Z., Yang, H., and Yang, G., 1999a, “The study of thermal stability of the SiO2 powders with high specific surface area.” Materials Chemistry and Physics, 57, pp. 260–263.
  • Wang, L., Wang, Z., Zhao, J., Yuan, Z., Yang, H., and Zhao, M., 1999b, “Preparation of mesoporous silica by co-precipitation in the presence of non-ionic surfactant.” Materials Chemistry and Physics, 59, pp. 171–174.
  • Whittington, B. I. and Muir, D., 2000, “Pressure acid leaching of nickel laterites: A review.” Mineral Processing and Extractive Metallurgy Review, 21(6), pp. 527–600.
  • Zaremba, T., Kusiorowski, R., and Piotrowski, J., 2012, “Inertisation of chrysotile asbestos using low-temperature heating and grinding,” In Milling: Operations, Applications and Industrial Effects (Lovro A. Filipovič, Ed.), New York: Nova Science Publishers Inc., pp. 261–274.
  • Zhu, P., Cao, Z. B., Chen, Y., Qian, G. R., Lu, B., Zhou, M., and Zhou, J., 2013, “Hydrometallurgical process for separation and recovery of product from serpentine waste,” Mineral Processing and Extractive Metallurgy, 122(3), pp. 157–164.

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