Compressive Strength Characteristics of Cemented Tailings Backfill with Alkali-Activated Slag
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Weidong Song | Erol Yilmaz | Shuai Cao | Gaili Xue | Weidong Song | E. Yilmaz | S. Cao | Gaili Xue
[1] Qian Gao,et al. The Orthogonal Test and Optimal Decision for the Development of New Backfill Cementing Materials Based on the Rod Milling Sand , 2014 .
[2] Du Juqiang. Performance and hydration mechanism of new super fine cemented whole-tailings backfilling materials , 2013 .
[3] M. Fall,et al. Sulphate induced changes in the reactivity of cemented tailings backfill , 2017 .
[4] Yang Li,et al. Optimum ratio and application of joint cemented backfill with crushed rock and phosphogypsum , 2015 .
[5] T. Belem,et al. Specimen size effect on strength behavior of cemented paste backfills subjected to different placement conditions , 2015 .
[6] Yanlong Zhou,et al. Rational Utilization of Fine Unclassified Tailings and Activated Blast Furnace Slag with High Calcium , 2017 .
[7] M. Illikainen,et al. Utilization of sulphidic tailings from gold mine as a raw material in geopolymerization , 2016 .
[8] Mamadou Fall,et al. Mix proportioning of underground cemented tailings backfill , 2008 .
[9] E. Yilmaz,et al. The influence of sodium and sulfate ions on total solidification and encapsulation potential of iron-rich acid mine drainage in silica gel , 2018 .
[10] Weidong Song,et al. Effect of filling interval time on the mechanical strength and ultrasonic properties of cemented coarse tailing backfill , 2017 .
[11] P. Hewlett,et al. Lea's chemistry of cement and concrete , 2001 .
[12] Gao Qian,et al. Experiment study of compressive strength and mechanical property of filling body for fly ash composite cementitious materials , 2015 .
[13] Wei Chen,et al. Environmental effect of current desulfurization technology on fly dust emission in China , 2017 .
[14] Asadul Haque,et al. 1-D Compression Behaviour of Acid Sulphate Soils Treated with Alkali-Activated Slag , 2016, Materials.
[15] Erol Yilmaz,et al. Effect of curing under pressure on compressive strength development of cemented paste backfill , 2009 .
[16] B. C. Meikap,et al. Artificial neural network approach for rheological characteristics of coal-water slurry using microwave pre-treatment , 2017 .
[17] Ayhan Kesimal,et al. Evaluation Of The Strength Properties Of Deslimed Tailings Paste Backfill , 2013 .
[18] Erol Yilmaz,et al. Influence of disposal configurations on hydrogeological behaviour of sulphidic paste tailings: A field experimental study , 2014 .
[20] Shaopeng Wu,et al. Recycling of Flue Gas Desulfurization residues in gneiss based hot mix asphalt: Materials characterization and performances evaluation , 2014 .
[21] Weidong Song,et al. Dynamic response of cement-tailings matrix composites under SHPB compression load , 2018, Construction and Building Materials.
[22] Haiqiang Jiang,et al. Effect of superplasticizer type and dosage on fluidity and strength behavior of cemented tailings backfill with different solid contents , 2018, Construction and Building Materials.
[23] Chao-qiang Wang,et al. Effect of activators, admixtures and temperature on the early hydration performance of desulfurization ash , 2014 .
[24] A. Kesimal,et al. Effect of sodium-silicate activated slag at different silicate modulus on the strength and microstructural properties of full and coarse sulphidic tailings paste backfill , 2018, Construction and Building Materials.
[25] M. C. Narasimhan,et al. An experimental investigation on self-compacting alkali activated slag concrete mixes , 2018 .
[26] Ayhan Kesimal,et al. PASTE BACKFILL TECHNOLOGY IN UNDERGROUND MINING- A CASE STUDY , 2003 .
[27] T. Belem,et al. One-dimensional consolidation parameters of cemented paste backfills , 2012 .
[28] Hongjiang Wang,et al. Control of waste rock-tailings paste backfill for active mining subsidence areas , 2018 .
[29] F. Zhao,et al. Activated fly ash/slag blended cement , 2007 .
[30] Erol Yilmaz,et al. Stope depth effect on field behaviour and performance of cemented paste backfills , 2018 .
[31] R. Thomas,et al. Very early-age reaction kinetics and microstructural development in alkali-activated slag , 2015 .
[32] T. Belem,et al. Assessment of the Modified CUAPS Apparatus to Estimate In Situ Properties of Cemented Paste Backfill , 2010 .
[33] Chien-Chih Wang,et al. Modelling of the compressive strength development of cement mortar with furnace slag and desulfurization slag from the early strength , 2016 .
[34] K. Ganesh Babu,et al. Efficiency of GGBS in concrete , 2000 .
[35] Tikou Belem,et al. Design and Application of Underground Mine Paste Backfill Technology , 2008 .
[36] Lianyang Zhang,et al. Alkali Activation of Copper Mine Tailings and Low-Calcium Flash-Furnace Copper Smelter Slag , 2015 .
[37] Hui-sheng Shi,et al. Influence of thermally treated flue gas desulfurization (FGD) gypsum on performance of the slag powder concrete , 2013, Journal of Wuhan University of Technology-Mater. Sci. Ed..
[38] Weidong Song,et al. Evaluation of Viscosity, Strength and Microstructural Properties of Cemented Tailings Backfill , 2018, Minerals.
[39] M. Benzaazoua,et al. Evaluation of the effect of sodium silicate addition to mine backfill, Gelfill − Part 1 , 2015 .
[40] Ran Huang,et al. Binding mechanism and properties of alkali-activated fly ash/slag mortars , 2013 .
[41] A. Giffin,et al. Micromechanical properties of alkali-activated slag cement binders , 2018, Cement and Concrete Composites.
[42] M. Benzaazoua,et al. Evaluation of the effect of sodium silicate addition to mine backfill, Gelfill – Part 2: Effects of mixing time and curing temperature , 2015 .
[43] Steve Millard,et al. Strength development of mortars containing ground granulated blast-furnace slag: Effect of curing temperature and determination of apparent activation energies , 2006 .
[44] T. Belem,et al. Relationships between microstructural properties and compressive strength of consolidated and unconsolidated cemented paste backfills , 2011 .
[45] A. Kesimal,et al. Evaluation of paste backfill mixtures consisting of sulphide-rich mill tailings and varying cement contents , 2004 .
[46] Weidong Song,et al. Influence of structural factors on uniaxial compressive strength of cemented tailings backfill , 2018, Construction and Building Materials.