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Characterization of rice husk ash obtained from an industrial source

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References

  • Al-Khalaf MN, Yousift HA. Use of rice husk ash in concrete. Int J Cem Compos Light Concr. 1984;6(4):241–248.
  • Armesto L, Bahillo A, Veijonen K, et al. Combustion behaviour of rice husk in a bubbling fluidised bed. Biomass Bioenergy. 2002;23(3):171–179.
  • Nehdi M, Duquette J, El Damatty A. Performance of rice husk ash produced using a new technology as a mineral admixture in concrete. Cem Concr Res. 2003;33(8):1203–1210.
  • Chandrasekhar S, Pramada PN, Majeed J. Effect of calcination temperature and heating rate on the optical properties and reactivity of rice husk ash. J Mater Sci. 2006;41(23):7926–7933.
  • Nair DG, Jagadish KS, Fraaij A. Reactive pozzolanas from rice husk ash: An alternative to cement for rural housing. Cem Concr Res. 2006;36(6):1062–1071.
  • Rozainee M, Ngo SP, Salema AA, et al. Fluidized bed combustion of rice husk to produce amorphous siliceous ash. Energy Sustain Dev. 2008;12(1):33–42.
  • Zain MFM, Islam MN, Mahmud F, et al. Production of rice husk ash for use in concrete as a supplementary cementitious material. Constr Build Mater. 2011;25(2):798–805.
  • Shen J, Liu X, Zhu S, et al. Effects of calcination parameters on the silica phase of original and leached rice husk ash. Mater Lett. 2011;65(8):1179–1183.
  • Chen G, Du G, Ma W, et al. Production of amorphous rice husk ash in a 500 kW fluidized bed combustor. Fuel. 2015;144:214–221.
  • Blissett R, Sommerville R, Rowson N, et al. Valorisation of rice husks using a TORBED® combustion process. Fuel Process Technol. 2017;159:247–255.
  • Zunino F, Lopez M. A methodology for assessing the chemical and physical potential of industrially sourced rice husk ash on strength development and early-age hydration of cement paste. Constr Build Mater. 2017;149:869–881.
  • Rêgo JHS, Nepomuceno AA, Figueiredo EP, et al. Microstructure of cement pastes with residual rice husk ash of low amorphous silica content. Constr Build Mater. 2015;80:56–68.
  • Fernandes IJ, Calheiro D, Kieling AG, et al. Characterization of rice husk ash produced using different biomass combustion techniques for energy. Fuel. 2016;165:351–359.
  • Soares M, Poggiali FSJ, Bezerra ACS, et al. The effect of calcination conditions on the physical and chemical characteristics of sugar cane bagasse ash. Rem Rev Esc Minas. 2014;67(1):33–39.
  • Della V, Kuhn I, Hotza D. Rice husk ash as an alternate source for active silica production. Mater Lett. 2002;57(4):818–821.
  • Hernandez JFM, Middendorf B, Gehrke M, et al. Use of wastes of the sugar industry as pozzolana in Lime-Pozzolans binders: Study of the reaction. Cem Concr Res. 1998;28(11):1525–1536.
  • Goyal A, Kunio H, Hidehiko O, et al. Processing of Sugarcane Bagasse ash and Reactivity of Ash-blended Cement Mortar. Trans Jpn Soc Irrig Drain Rural Eng. 2009;77:243–251.
  • Cordeiro GC, Barroso TR, Toledo Filho RD. Enhancement the Properties of Sugar Cane Bagasse Ash with High Carbon Content by a Controlled Re-calcination Process. KSCE J Civ Eng. 2018;22(4):1250–1257.
  • Cordeiro GC, Andreão PV, Tavares LM. Pozzolanic properties of ultrafine sugar cane bagasse ash produced by controlled burning. Heliyon. 2019;5(10):e02566.
  • Frías M, Villar E, Savastano H. Brazilian sugar cane bagasse ashes from the cogeneration industry as active pozzolans for cement manufacture. Cem Concr Compos. 2011;33(4):490–496.
  • Frías M, Villar-Cociña E. Influence of calcining temperature on the activation of sugar-cane bagasse: Kinetic parameters. Adv Cem Res. 2007;19(3):109–115.
  • FAO. FAO Rice Market Monitor. Food Agric Organ United States. 2018;21:1–38.
  • ASTM International. Standard specification for coal fly ash and raw or calcined natural pozzolan for Use. West Conshohocken (PA): ASTM International; 2002. Standard No. IS: ASTM C 618–03.
  • Bureau of Indian Standards (BIS). Ordinary Portland Cement – Specification. New Delhi: BIS; 2015. Standard No. IS: 269:2015.
  • Bureau of Indian Standards (BIS). Standard Sand for Testing Cement- Specification. New Delhi: BIS; 1991. Standard No. IS: 650:1991 (Reaffirmed 2018).
  • Bureau of Indian Standards (BIS). Methods of Test for Pozzolanic Materials. New Delhi: BIS; 1967. Standard No. IS: 1727:1967 (Reaffirmed 2018).
  • Snellings R, Machiels L, Mertens G, et al. Rietveld refinement strategy for quantitative phase analysis of partially amorphous zeolitized tuffaceous rocks. Geol Belgica. 2010;13:183–196.
  • Bureau of Indian Standards (BIS). Methods of Physical Tests for Hydraulic Cement-Determination of consistency of standard cement paste. New Delhi: BIS; 1988. Standard No. IS: 4031(Part-4):1988 (Reaffirmed 2019).
  • Bureau of Indian Standards (BIS). Methods of Physical Tests for Hydraulic Cement-Determination of Compressive Strength of Hydraulic Methods of Physical Tests for Hydraulic Cement. New Delhi: BIS; 1988. Standard No. IS: 4031(Part-6):1988 (Reaffirmed 2019).
  • Van VTA, Rößler C, Bui DD, et al. Mesoporous structure and pozzolanic reactivity of rice husk ash in cementitious system. Constr Build Mater. 2013;43:208–216.
  • Xu W, Lo TY, Memon SA. Microstructure and reactivity of rich husk ash. Constr Build Mater. 2012;29:541–547.
  • Bakar RA, Yahya R, Gan SN. Production of High Purity Amorphous Silica from Rice Husk. Procedia Chem. 2016;19:189–195.
  • Chen P, Gu W, Fang W, et al. Removal of Metal Impurities in Rice Husk and Characterization of Rice Husk Ash Under Simplified Acid Pretreatment Process. Environ Prog Sustain Energy. 2017;36:830–837
  • Hyung J, Heo J, Lee J, et al. Preparation of high purity silica originated from rice husks by chemically removing metallic impurities. J Ind Eng Chem. 2017;50:79–85.
  • Schneider D, Wassersleben S, Weiß M, et al. A Generalized Procedure for the Production of High-Grade. Waste Biomass Valor. 2020;11(1):1–15.
  • Chen Y, Zhu Y, Wang Z, et al. Application studies of activated carbon derived from rice husks produced by chemical-thermal process-a review. Adv Colloid Interface Sci. 2011;163(1):39–52.
  • Bie R, Song X, Liu Q, et al. Studies on effects of burning conditions and rice husk ash (RHA) blending amount on the mechanical behavior of cement. Cem Concr Compos. 2015;55:162–168.
  • Dizaji HB, Zeng T, Hartmann I, et al. Generation of high quality biogenic silica by combustion of rice husk and rice straw combined with pre- and post-treatment strategies — a review. Appl Sci. 2019;9:1–27.
  • Krishnarao RV, Subrahmanyam J, Jagadish Kumar T. Studies on the formation of black particles in rice husk silica ash. J Eur Ceram Soc. 2001;21(1):99–104.
  • Rodríguez De Sensale G. Strength development of concrete with rice-husk ash. Cem Concr Compos. 2006;28(2):158–160.
  • Olalekan O, Mangat PS. Characterization and Pore Structure of Rice Husk Ash Cementitious Materials. ACI Spec Publ. 2018;326:8.1–8.10.
  • Ganesan K, Rajagopal K, Thangavel K. Rice husk ash blended cement: Assessment of optimal level of replacement for strength and permeability properties of concrete. Constr Build Mater. 2008;22(8):1675–1683.
  • Bureau of Indian Standards (BIS). Pulverised Fuel Ash-For use as Pozzolana in Cement, cement Mortar and Concrete. New Delhi: BIS; 2013. Standard No. IS: 3812(Part-1):2013 (Reaffirmed 2017).
  • Batra VS, Urbonaite S, Svensson G. Characterization of unburned carbon in bagasse fly ash. Fuel. 2008;87(13-14):2972–2976.
  • Bui DD, Hu J, Stroeven P. Particle size effect on the strength of rice husk ash blended gap-graded Portland cement concrete. Cem Concr Compos. 2005;27(3):357–366.
  • Bureau of Indian Standards (BIS). Portland-Pozzolana Cement-Specification. New Delhi: BIS; 2015. Standard No. IS: 1489(Part-1):2015.
  • Bureau of Indian Standards (BIS). Portland Slag Cement-Specification. New Delhi: BIS; 2015. Standard No. IS: 455:2015.
  • Jamil M, Kaish A, Raman SN, et al. Pozzolanic contribution of rice husk ash in cementitious system. Constr Build Mater. 2013;47:588–593.

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