1 |
Pranab Barkakati, Dipak Bordoloi, Prakash Ch. Borthakur, 1994 : Paddy husk as raw material and fuel for making portland cement, Cement and Concrete Research, 24(4), pp613-620
DOI
|
2 |
P.E. Tsakiridis et al., 2005 : Examination of the jarosite- alunite precipitate addition in the raw meal for the production of portland cement clinker, Cement and Concrete Research, 35(11), pp2066-2073
DOI
|
3 |
M. Schneider et al., 2011 : Sustainable cement production-present and future, Cement and Concrete Research, 41(7), pp642-650
DOI
|
4 |
N. Gineys, G. Aouad, D. Damidot, 2011 : Managing trace elements in Portland cement - Part II: Comparison of two methods to incorporate Zn in a cement, Cement and Concrete Composites, 33(6), pp629-636
DOI
|
5 |
N. Gineys, G. Aouad, D. Damidot, 2010 : Managing trace elements in Portland cement - Part I: Interactions between cement paste and heavy metals added during mixing as soluble salts, Cement and Concrete Composites, 32(8), pp563-570
DOI
|
6 |
HuXing Chen, Xianwei Ma, HengJie Dai, 2010 : Reuse of water purification sludge as raw material in cement production, Cement and Concrete Composites, 32(6), pp436-439
DOI
|
7 |
Gang-Soon Choi, F.P. Glasser, 1988 : The sulphur cycle in cement kilns: Vapour pressures and solid-phase stability of the sulphate phases, Cement and Concrete Research, 18(3), pp 367-374
DOI
|
8 |
Korea Industrial Standards, 2011 : Ready-mixed concrete, KS F 4009
|
9 |
N.B. Singh, K.N. Bhattacharjee, A.K. Shukla, 1995 : Effect of alkali bypass dust on the hydration of granulated blast furnace slag blended cement, Cement and Concrete Research, 25(4), pp883-892
DOI
|
10 |
H. Y. Ghoraba et al., 2004 : Resuse of Cement Kiln Bypass Dust in the Manufacture of Ordinary Portland Cement, Polymer-Plastics Technology and Engineering, 43(6), pp1723-1734
DOI
|
11 |
TAMURA N., SAITO S., KONDOU K., 2010 : Washing method for incineration ash and dust in combustion gas extracted from cement kiln, PCT/JP2010/052254
|