Analysis on the hazardous jarosite added concrete

Construction and Building Materials - Tập 191 - Trang 253-259 - 2018
Priyansha Mehra1, Sanjeev Kumar2, Blessen Skariah Thomas1, Ramesh Chandra Gupta1
1Malaviya National Institute of Technology, Jaipur, India
2Nanyang Technological University, Singapore, Singapore

Tài liệu tham khảo

Langan, 2002, Effect of silica fume and fly ash on heat of hydration of Portland cement, Cem. Concr. Res., 32, 1045, 10.1016/S0008-8846(02)00742-1 DeutschesInstitut fur Normung, Testing concrete: testing of hardened concrete (Specimens pprepared in Mould) DIN 1048 Part 5 1991, Germany, 1991. Fonseca, 2015, Compressive strength of masonry grout containing high amounts of class F fly ash and ground granulated blast furnace slag, Constr. Build. Mater., 94, 719, 10.1016/j.conbuildmat.2015.07.115 Guneyisi, 2007, Effect of initial curing on chloride ingress and corrosion resistance characteristics of concretes made with plain and blended cements, Build. Environ., 42, 2676, 10.1016/j.buildenv.2006.07.008 Guneyisi, 2009, Estimation of chloride permeability of concretes by empirical modelling: considering effects of cement types, curing condition and age, Constr. Build. Mater., 23, 469, 10.1016/j.conbuildmat.2007.10.022 Khatibinia, 2016, Modeling mechanical strength of self–compacting mortar containing nanoparticles using wavelet–based support vector machine, Comput. Concr., Technopress, 1065 Kong, 2016, Evaluation of the effect of aggregate on concrete permeability using grey correlation analysis and ANN, Comput. Concr., Technopress, 613, 10.12989/cac.2016.17.5.613 Mymrin, 2005, Potential application of acid jarosite wastes as the main component of construction materials, Constr. Build. Mater., 19, 141, 10.1016/j.conbuildmat.2004.05.009 Mymrin, 1999, Technical note new construction materials from Spanish jarosite processing wastes, Miner. Eng., 12, 1399, 10.1016/S0892-6875(99)00126-0 Ransinchung, 2009, Assessment of water absorption and chloride ion penetration of pavement quality concrete admixed with wollastonite and microsilica, Constr. Build. Mater., 23, 1168, 10.1016/j.conbuildmat.2008.06.011 J. Singaram, R. Kowsik, Assessment of strength and durability of bagasse ash and Silica fume concrete. (2016) 801–814, doi:10.12989/cac.2016.17.6.801. Tripathi, 2015, Durability and dimensional stability of concrete containing ISF Zinc slag as sand, Am. Concr. Inst. Spec. Publ., SP-303-16, 217 B. Tripathi, S. Chaudhary, Performance based evaluation of ISF slag as a substitute of natural sand in concrete. 112 (2016) 672–683. USEPA, 1992 H. Ye, X. Jin, W. Chen, C. Fu, N. Jin, Prediction of chloride binding isotherms for blended cements. Comput. Concr., Technopress (2016) 886–682, doi:10.12989/cac.2016.17.5.665. Xiao-B. Zuo, Jia-L. Wang, W. Sun, H. Li, Guang-J. Yin, Numerical investigation on gypsum and ettringite formation in cement pastes subjected to sulfate attack. Comput. Concr., Technopress (2017) 19–31, doi:10.12989/cac.2017.19.1.019.