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IDENTIFICATION OF THE PYROPHORIC SULFIDES COLLECTED FROM THE WASTES OF THE EQUIPMENTS AFFECTED BY FIRE OR EXPLOSION
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R. Payant, F. Rosenblum and J. F. A. Nesset, "The self –heating of sulfides : Galvanic effects," Minerals Engineering, vol. 26, pp. 57-63, 2012.
I. James and C. -C. L., "A study of storage tank accident," Journal of Loss Prevention in the Process Industries, vol. 19, pp. 51-59, 2006.
X. Cai, X. Zhao and H. Yao, "Sponatenous combustion tendency of iron sulfide corrosion oxidation characterisation and thermostabilty," in Proceedia Engineering, Elsevier , 2014 International Symposiu m on Safety Science and Technology, Beijing, 2014.
R. Bertani, A. Biasin, P. Canu, Z. M. Della, D. Refosco and F. Simionato, "Self heating of dried industrial tannery wastewater sludge induced by pyrophoric iron sulphides formation," Journal Of Hazardous Materials, vol. 305, pp. 105 -114, 2016.
S. Midwood, "SEM image of the week: The iron -sulfur world," Midwood Science Research Program, 23 April 2012. [Online]. Available: http://midwoodscience.org/ paged=22. [Accessed 25 April 2016].
J. Schieber, "Iron sulphide formation," in Encyclopedia of Geobiology , J. T. V. Reitner, Ed., Springer, 2011, pp. 486-502.
T. Steele, "The fromation of the pyrophoric iron sulfide from roast," Surface and Coatings Technology, vol. 31, pp. 183-197, 1987.
R. Walker, A. Stelle and T. Morgan, "Deactivation Of Phyrophoric Iron sulfides," Ind. Eng. Chem. Res. , vol. 36, no. 9, pp. 3662-3667, 1997.
I. Svennigsen, A. Palencsar and B. Kvarekval, "Investigation of iron surface layer growth in aqueous H2S/CO2 Environment," Norway Nace, 2009.
I. Akmaral, " Influence of different factors on the process of biological decontamination of pyrophoric iron sulfide," International Journal of Education and Research, vol. 2, no. 11, pp. 281-286, 2014
Insemex, "Technical Expertise Report at reservoir R20 -2003,," National Institute for Mine Safety And Protection to Explosion, Insemex, Petrosani, Romania, 2016. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
R. Payant, F. Rosenblum and J. F. A. Nesset, "The self –heating of sulfides : Galvanic effects," Minerals Engineering, vol. 26, pp. 57-63, 2012.
I. James and C. -C. L., "A study of storage tank accident," Journal of Loss Prevention in the Process Industries, vol. 19, pp. 51-59, 2006.
X. Cai, X. Zhao and H. Yao, "Sponatenous combustion tendency of iron sulfide corrosion oxidation characterisation and thermostabilty," in Proceedia Engineering, Elsevier , 2014 International Symposiu m on Safety Science and Technology, Beijing, 2014.
R. Bertani, A. Biasin, P. Canu, Z. M. Della, D. Refosco and F. Simionato, "Self heating of dried industrial tannery wastewater sludge induced by pyrophoric iron sulphides formation," Journal Of Hazardous Materials, vol. 305, pp. 105 -114, 2016.
S. Midwood, "SEM image of the week: The iron -sulfur world," Midwood Science Research Program, 23 April 2012. [Online]. Available: http://midwoodscience.org/ paged=22. [Accessed 25 April 2016].
J. Schieber, "Iron sulphide formation," in Encyclopedia of Geobiology , J. T. V. Reitner, Ed., Springer, 2011, pp. 486-502.
T. Steele, "The fromation of the pyrophoric iron sulfide from roast," Surface and Coatings Technology, vol. 31, pp. 183-197, 1987.
R. Walker, A. Stelle and T. Morgan, "Deactivation Of Phyrophoric Iron sulfides," Ind. Eng. Chem. Res. , vol. 36, no. 9, pp. 3662-3667, 1997.
I. Svennigsen, A. Palencsar and B. Kvarekval, "Investigation of iron surface layer growth in aqueous H2S/CO2 Environment," Norway Nace, 2009.
I. Akmaral, " Influence of different factors on the process of biological decontamination of pyrophoric iron sulfide," International Journal of Education and Research, vol. 2, no. 11, pp. 281-286, 2014
Insemex, "Technical Expertise Report at reservoir R20 -2003,," National Institute for Mine Safety And Protection to Explosion, Insemex, Petrosani, Romania, 2016. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
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