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Articles

Fly ash suspensions stabilized by hydroxypropyl guar gum and xanthan gum for retarding spontaneous combustion of coal

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Pages 2097-2110 | Received 12 Oct 2017, Accepted 19 Jun 2018, Published online: 12 Jul 2018

References

  • Ahmaruzzaman, M. 2010. A review on the utilization of fly ash. Prog. Energ. Combust., 36, 327–363.
  • Alquraishi, A.A., and Alsewailem, F.D. 2012. Xanthan and guar polymer solutions for water shut off in high salinity reservoirs. Carbohyd. Polym., 88, 859–863.
  • Baris, K., Kizgut, S., and Didari, V. 2012. Low-temperature oxidation of some Turkish coals. Fuel, 93, 423–432.
  • Blissett, R.S., and Rowson, N.A. 2013. An empirical model for the prediction of the viscosity of slurries of coal fly ash with varying concentration and shear rate at room temperature. Fuel, 111, 555–563.
  • Bresolin, T.M.B., Milas, M., Rinaudo, M., Reicher, F., and Ganter, J.L.M.S. 1999. Role of galactomannan composition on the binary gel formation with xanthan. Int. J. Biol. Macromol., 26, 225–231.
  • Casas, J.A., Mohedano, A.F., and García-Ochoa, F. 2000. Viscosity of guar gum and xanthan/guar gummixture solutions. J. Sci. Food and Agr., 80, 1722–1727.
  • Cheng, W.M., Hu, X.M., Xie, J., and Zhao, Y.Y. 2017. An intelligent gel designed to control the spontaneous combustion of coal: fire prevention and extinguishing properties. Fuel, 210, 826–835.
  • Cheng, Y., Brown, K.M., and Prud’homme, R.K. 2002. Characterization and intermolecular interactions of hydroxypropyl guar solutions. Biomacromolecules, 3, 456–461.
  • Colaizzi, G.J. 2004. Prevention, control and/or extinguishment of coal seam fires using cellular grout. Int. J. Coal Geol., 59, 75–81.
  • Comba, S., and Sethi, R. 2009. Stabilization of highly concentrated suspensions of iron nanoparticles using shear-thinning gels of xanthan gum. Water Res., 43, 3717–3726.
  • Dea, I.C., Clark, A.H., and McCleary, B.V. 1986. Effect of galactose-substitution-patterns on the interaction properties of galactomannas. Carbohydr. Res., 147, 275–294.
  • Gastone, F., Tosco, T., and Sethi, R. 2014. Green stabilization of microscale iron particles using guar gum: bulk rheology, sedimentation rate and enzymatic degradation. J. Colloid Interf. Sci., 421, 33–43.
  • Hu, Z.X., Hu, X.M., Cheng, W.M., and Lu, W. 2018. Influence of synthetic conditions on the performance of melamine–phenol–formaldehyde resin microcapsules. High Perform. Polym., DOI: 10.1177/0954008318758489.
  • Kadioğlu, Y., and Varamaz, M. 2003. The effect of moisture content and air-drying on spontaneous combustion characteristics of two Turkish lignites. Fuel, 2003, 1685–1693.
  • Li, Z.X., Liu, Y., Jia, J.Z., Wu, B.D., and Li, H.T. 2017. Precision improvement of coal oxidation experiment and experimental method of closed oxygen consumption. Int. J. Min. Sci. Technol., 46, 273–278.
  • Lu, W., Cao, Y.J., and Tien, J.C. 2017. Method for prevention and control of spontaneous combustion of coal seam and its application in mining field. Int. J. Min. Sci. Technol., 27, 839–846.
  • Pérez, R.M., Siquier, S., Ramı́rez, N., Müller, A.J., and Sáez, A.E. 2004. Non-Newtonian annular vertical flow of sand suspensions in aqueous solutions of guar gum. J. Petrol. Sci. Eng., 44, 317–331.
  • Shi, Q.L., Qin, B.T., Bi, Q., and Qu, B. 2018a. An experimental study on the effect of igneous intrusions on chemical structure and combustion characteristics of coal in Daxing Mine, China. Fuel, 226, 307–315.
  • Shi, Q.L., Qin, B.T., Liang, H.J., Gao, Y., Bi, Q., and Qu, B. 2018b. Effects of igneous intrusions on the structure and spontaneous combustion propensity of coal: a case study of bituminous coal in Daxing Mine, China. Fuel, 216, 181–189.
  • Shi, G.Q., Zhou, T., Liu, M.X., and Wang Y.M. 2017. Numerical analysis on methane explosion hazard during the process of fire zone sealing in coal mine. Int. J. Min. Sci. Technol., 46, 997–1006.
  • Shobha, M.S., and Tharanathan, R.N. 2009. Rheological behaviour of pullulanase-treated guar galactomannan on co-gelation with xanthan. Food Hydrocolloid., 23, 749–754.
  • Su, H.T., Zhou, F.B., Song, X.L., Shi, B.B., and Sun, S.H. 2016. Risk analysis of coal self-ignition in longwall gob: a modeling study on three-dimensional hazard zones. Fire Safety J., 83, 54–65.
  • Tang, Y.B. 2015. The influences of manganese and phosphorus on the low-temperature oxidation of coal. Int. J. Coal Prep. Util., 35, 63–75.
  • Wang, Q.G., Wang, D.M., Shen, Y.D., Wang, H.T., and Xu, C.H. 2017. J. Disper. Sci. Technol., 38, 961–966.
  • Wang, S.B., Zhang, Y.Y., Guo, J.C., Lai, J., Wang, D.A., He, L., and Qin, Y.Y. 2014. A study of relation between suspension behavior and microstructure and viscoelastic property of guar gum fracturing fluid. J. Petrol. Sci. Eng., 124, 432–435.
  • Wen, H., Yu, Z.J., Fan, S.X., Zhai, X.W., and Liu, W.Y. 2017. Prediction of spontaneous combustion potential of coal in the gob area using CO extreme concentration: a case study. Combust. Sci. Technol., 189, 1713–1727.
  • Zhang, H., Fang, B., Lu, Y.J., Qiu, X.H., Jin, H., Liu, Y.T., Wang, L.W., Tian, M., and Li, K.J. 2017. Rheological properties of water-soluble crosslinked xanthan gum. J. Disper. Sci. Technol., 38, 361–366.
  • Zhang, Q., Hu, X.M., Wu, M.Y., Zhao, Y.Y., Yu, C. 2018. Effects of different catalysts on the structure and properties of polyurethane/water glass grouting materials. J. Appl. Polym. Sci. DOI: 10.1002/app.46460.
  • Zhang, L.L., Qin, B.T., Shi, B.M., and Wen, K.P. 2016. Formation mechanism of foamed gel for controlling the coal spontaneous combustion. Combust. Sci. Technol., 188, 132–143.
  • Zhong, L., Oostrom, M., Truex, M.J., Vermeul, V.R., and Szecsody, J.E. 2013. Rheological behavior of xanthan gum solution related to shear thinning fluid delivery for subsurface remediation. J. Hazard. Mater., 244, 160–170.
  • Zhu, H.Q., Chang, M.R., and Wang, H.Y. 2017. Study on primal CO gas generation and emission of coal seam. Int. J. Min. Sci. Technol., 27, 973–979.

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