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Preparation of zinc ferrite by oxidative precipitation method

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper reports the investigation of preparation of zinc ferrite, ZnFe2O4 by oxidative precipitation method from solution of iron (II) sulfate and zinc (II) sulfate in circulatory reactor. The reaction has been carried out at temperature 60°C at different molar ratios of Zn:Fe from 1:4 to 4:1. On the basis of experimental results, the equation of rate of oxidation reaction was checked using statistical method. The obtained products have been investigated using X – ray fluorescence spectrometry and X-ray diffractometry. The results showed that it is possible to obtain zinc ferrite by oxidative method.
Słowa kluczowe
Rocznik
Strony
245--252
Opis fizyczny
Bibliogr. 14 poz., tabl. 3, rys. 7
Twórcy
autor
  • Szczecin University of Technology, Institute of Chemistry and Environmental Protection 71 -065 Szczecin, al. Piastów 42, Poland
autor
  • Szczecin University of Technology, Institute of Chemistry and Environmental Protection 71 -065 Szczecin, al. Piastów 42, Poland
  • Szczecin University of Technology, Institute of Chemistry and Environmental Protection 71 -065 Szczecin, al. Piastów 42, Poland
autor
  • Szczecin University of Technology, Institute of Chemistry and Environmental Protection 71 -065 Szczecin, al. Piastów 42, Poland
Bibliografia
  • [1] Yuan Zhihao and Zhang Lide, Mater. Res. Bull, Vol. 33, No. 11, pp. 1587-1592 (1998).
  • [2] S.B. Li and G.X. Lu, New. J. Chem., 16, 517 (1992).
  • [3] G.X. Lu, S.B. Li, Int. Hydrogen Energy, 17, 767 (1992).
  • [4] Chu Xiangfeng, Liu Xingqin and Meng Guangyao, Sensors and Actuators B, 55, 19-22 (1999).
  • [5] C.N. Chinnasamy, A. Narayanasamy, N. Ponpandian, K. Chattopadhyay, H. Guerault and J.M. Greneche, Sck Mater., 44, 1407 (2001).
  • [6] C.N. Chinnasamy, A. Narayanasamy, N. Ponpandian and K. Chattopadhyay, Mater. Sci. Eng. A, 304-306, 983 (2001).
  • [7] A.S. Albuquerque, J.D. Ardisson, A.A. Waldemar and A. Macedo, J. Magn. Magn. Mater, 192, 277 (1999).
  • [8] T. Sato, K. Haneda, M. Seki and T. Iijima, Appl. Phys. .4, 50, 13 (1990).
  • [9] M. Yokoyama, E. Ohta and T. Sato, J. Magn. Magn. Mater., 183, 173 (1998).
  • [10] T. Kamiyama, K. Honeda, T. Sato, S. Ikeda and H. Asano, Solid State Commun., 81,563 (1992).
  • [11] C. Rath, N.C. Mishra, S. Anand, R.P. Das, K.K. Sahu, C. Upadhyay and H.C. Verma, Appl. Phys. Lett., 76, 475 (2000).
  • [12] C. Upadhyay, H.C. Verma, C.Rath, K.K. Sahu, S. Anand, R.P. Das and N.C. Mishra, J. Alloys Compd., 326, 94 (2001).
  • [13] Shu-Hong Yu, Takahiro Fujino and Masahiro Yoshimura, J. Magn. Magn. Mater, 254, 420-424 (2003).
  • [14] F.J. Guaita, H. Beltran, E. Cordoncillo, J.B. Carda and R Escribano, J. Eur. Cerami. Soc., 19, 363 (1999).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0061-0060
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