[1]. Qu Y., Lai X., Zou L. and Su Y., “Polyoxyalkyleneamine as shale inhibitor in water-based drilling fluids”,Applied Clay Science, Vol. 44, No. 1, pp. 265-268, 2009.##
[2]. Zhong H., Qiu Z., Huang W. and Cao J., “Poly (oxypropylene)-amidoamine modified bentonite as potential shale inhibitor in water-based drilling fluids”, Applied Clay Science, Vol. 67-68, No. 1, pp. 36-43, 2012.##
[3]. Zhong H., Qiu Z., Huang W. and Cao J., “Shale inhibitive properties of polyether diamine in water-based drilling fluid”, Journal of Petroleum Science and Engineering, Vol. 78, No. 2, pp. 510-515, 2011.##
[4]. Zhong H., Qiu Z., Huang W., Qiao J., Li H. and Cao J., “The development and application of a novel polyamine water-based drilling fluid”, Petroleum Science and Technology, Vol. 32, No. 4, pp. 497-504, 2014.##
[5] Wang L., Liu S., Wang T. and Sun D., “Effect of poly (oxypropylene) diamine adsorption on hydration and dispersion of montmorillonite particles in aqueous solution”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 381, No. 1, pp. 41-47, 2011.##
[6]. Chesser B., “Design considerations for an inhibitive, stable water-based mud system”, SPE Drilling Engineering, Vol. 2, No. 4, pp. 331-336, 1987.##
[7]. Tush D., LoftinK. A.and Meyer M. T.,“Characterization of polyoxyethylene tallow amine surfactants in technical mixtures and glyphosate formulations using ultra-high performance liquid chromatography and triple quadrupole mass spectrometry”, Journal of Chromatography A, Vol. 1319, No. 1, pp. 80-87, 2013.##
[8]. American Petroleum Institute, “Recommended practice standard procedure for laboratory testing of drilling fluids: API Specifications 13I”, Dallas: American Petroleum Institute, 2000.##
[9]. American Petroleum Institute, “Recommended practice on the rheology and hydraulics of oil-well drilling fluids: API Specifications 13D”, Dallas: American Petroleum Institute, 1995.##
[10]. Wu W., “Baseline studies of the clay minerals society source clays: colloid and surfacephenomena”, Clays and Clay Minerals, Vol. 49, No. 5, pp. 446-452, 2001.##
[11]. Ava Drilling Fluids and Services, “Drilling fluid manual Rome”, Ava Drilling Fluids & Services, 2004.##
[12]. Roehl E. and Hackett J., “A laboratory technique for screening shale swelling inhibitors”, SPE Annual Technical Conference and Exhibition, New Orleans, Louisiana, 1982.##
[13]. Ewy R. and Morton E., “Wellbore-stability performance of water-based mud additives”, Journal of Petroleum Technology, Vol. 61, No. 9, pp. 78-79, 2009.##
[14]. Barati P., Keshtkar S., Aghajafari A., Shahbazi K. and Momeni A.,“Inhibition performance and mechanism of Horsetail extract as shale stabilizer”, Petroleum Exploration and Development, Vol. 43, No. 3, pp. 522-527, 2016.##
[15]. Aaton M. and Elliott G., “Water-based glycol drilling muds: Shale inhibition mechanisms”, European Petroleum Conference, London, United Kingdom, 2007.##
[16]. Liu S., Mo X., Zhang C., Sun D. and Mu C., “Swelling inhibition by polyglycols in montmorillonite dispersions”, Journal of Dispersion Science and Technology, Vol. 25, No. 1, pp. 63-65, 2004.##
[17]. De Souza C., Lima A. and Nascimento R., “Hydrophobically modified poly (ethylene glycol) as reactive clays inhibitor additive in water-based drilling fluids”, Journal of Applied Polymer Science, Vol. 117, No. 2, pp. 857-864, 2010.##
[18]. Li j., Yang P., Guan J., Sun Y., Kuang X. and Chen S., “A new type of whole oil-based drilling fluid”, Petroleum Exploration and Development, Vol. 41, No. 4, pp. 490-496, 2014.##
[19]. ZohnG H., Qiu Z., Huang W., Xie, B. and Wang W., “Bis(hexamethylene) triamine as potential shale inhibitor in water-based drilling fluid”, Open Petroleum Engineering Journal, Vol. 6, No. 1, pp. 49-56, 2013. ##
[20]. Xuan Y., Jiang G., Li Y., Wang J. and Geng H., “Inhibiting effect of dopamine adsorption and polymerization on hydrated swelling of montmorillonite”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 422, pp. 50-60, 2013.##