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STATISTICAL ANALYSIS OF PROTEIN RESIDUES ADDITIONS ON THE MECHANICAL PROPERTIES OF CONCRETES
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References28
Barbuta M., Effect of different types of superplasticizer on the properties of high strength concrete incorporating large amounts of silica fume, Bullettin og the Polytechnic Institute of Iasi, Construction and Architecture Section vol. 51/issue 1-2 , pp 69-74, 2005.
Barbuta M., Nour D.S. Components compability to high strength concrete with silica fume, in Proceedings of the International Conference VSU Sofia, Tom I, pp 46 – 52, 2006,.
H.K. Kim, H.K. Lee, Use of power plant bottom ash as fine and coarse aggregates in high strength concrete, Constr. Build. Material, vol. 25, pp 1115-1122, 2011.
Osman Gencel, Fuat Koksal, Cengiz Ozel, Witold Brostow, Combined effect of fly ash and waste ferrochromium on properties of concrete, Construction and Building Materials, vol. 29, pp 633-640, 2012.
Hwang Chao-Lung, Bui Le Anh-Tuan, Chen Chun-Tsun, Effect of rice husk ash on the strength and durability characteristics of concrete, Construction and Building Materials, vol. 25, pp 3768-3772, 2011.
Kanning RC., Portella KF., Costa MRM., Braganca M.OGP., Bonatto M.M, Dos Santos JCM., Banana leaf ashes as pozzolan for concrete and mortar of Portland cement, Construction and Building Materials, vol. 54, pp 460-465, 2014.
Singh NB, Singh VD, Rai S., Hydration of bagasse ash-blended Portland cement. Cement and Concrete Research, vol. 30, pp 1485-1488, 2000.
Gonzalez-Fonteboa_, B., and Martınez -Abella F., Concretes with aggregates from demolition waste and silica fume. Materials and mechanical propertie. Building and Environment, vol. 43, pp 429–437, 2008. 14th SGEM GeoConference on Energy and Clean Technologies
Rambo D.A.S., F. A. Silva, R.D.T. Filho, Mechanical behavior of hybrid steel-fiber self consolidating concrete. Materials and structure aspects, Mater. Design, vol. 54, pp 32-34, 2014.
A. Remadnia, R. M. Dheilly, B. Laidoudi, M. Queneudec, Use of animal protein as foaming agent in cementitious concrete composites manufactured with recycled PET aggregates, Construction and Building Materials, vol. 23, pp 3118-3123, 2009.
H. Lakrafli, S. Tahiri, A. Albizane, M. Bouhria, M.E. El Otmani, Experimental study of thermal conductivity of leather and carpentry wastes Construction and Building Materials, vol. 48, pp 566-576, 2013.
EN 12390, Testing hardened concrete. European Committee for Standardization. Brussels, Belgium, 2001.
Montgomery, Douglas C., Runger, George C., Hubele Norma F., Engineering Statistics, John Wiley & Sons Canada, 2010.
Handbook of Statistical Methods, Publisher: NIST/SEMATECH 2012, available a t http://www.itl.nist.gov/div898/handbook/
Barbuta M., Effect of different types of superplasticizer on the properties of high strength concrete incorporating large amounts of silica fume, Bullettin og the Polytechnic Institute of Iasi, Construction and Architecture Section vol. 51/issue 1-2 , pp 69-74, 2005.
Barbuta M., Nour D.S. Components compability to high strength concrete with silica fume, in Proceedings of the International Conference VSU Sofia, Tom I, pp 46 – 52, 2006,.
H.K. Kim, H.K. Lee, Use of power plant bottom ash as fine and coarse aggregates in high strength concrete, Constr. Build. Material, vol. 25, pp 1115-1122, 2011.
Osman Gencel, Fuat Koksal, Cengiz Ozel, Witold Brostow, Combined effect of fly ash and waste ferrochromium on properties of concrete, Construction and Building Materials, vol. 29, pp 633-640, 2012.
Hwang Chao-Lung, Bui Le Anh-Tuan, Chen Chun-Tsun, Effect of rice husk ash on the strength and durability characteristics of concrete, Construction and Building Materials, vol. 25, pp 3768-3772, 2011.
Kanning RC., Portella KF., Costa MRM., Braganca M.OGP., Bonatto M.M, Dos Santos JCM., Banana leaf ashes as pozzolan for concrete and mortar of Portland cement, Construction and Building Materials, vol. 54, pp 460-465, 2014.
Singh NB, Singh VD, Rai S., Hydration of bagasse ash-blended Portland cement. Cement and Concrete Research, vol. 30, pp 1485-1488, 2000.
Gonzalez-Fonteboa_, B., and Martınez -Abella F., Concretes with aggregates from demolition waste and silica fume. Materials and mechanical propertie. Building and Environment, vol. 43, pp 429–437, 2008. 14th SGEM GeoConference on Energy and Clean Technologies
Rambo D.A.S., F. A. Silva, R.D.T. Filho, Mechanical behavior of hybrid steel-fiber self consolidating concrete. Materials and structure aspects, Mater. Design, vol. 54, pp 32-34, 2014.
A. Remadnia, R. M. Dheilly, B. Laidoudi, M. Queneudec, Use of animal protein as foaming agent in cementitious concrete composites manufactured with recycled PET aggregates, Construction and Building Materials, vol. 23, pp 3118-3123, 2009.
H. Lakrafli, S. Tahiri, A. Albizane, M. Bouhria, M.E. El Otmani, Experimental study of thermal conductivity of leather and carpentry wastes Construction and Building Materials, vol. 48, pp 566-576, 2013.
EN 12390, Testing hardened concrete. European Committee for Standardization. Brussels, Belgium, 2001.
Montgomery, Douglas C., Runger, George C., Hubele Norma F., Engineering Statistics, John Wiley & Sons Canada, 2010.
Handbook of Statistical Methods, Publisher: NIST/SEMATECH 2012, available a t http://www.itl.nist.gov/div898/handbook/
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