[1]
B. Chatveera, and P. Lertwattanaruk, Durability of conventional concretes containing black rice husk ash. Journal of Environmental Management. (2011).
DOI: 10.1016/j.jenvman.2010.08.007
Google Scholar
[2]
F.A.W. Chik., B.H.A Bakar., M.A.M Johari and R.P. Jaya. Properties Of Concrete Block Containing Rice Husk Ash Subjected To GIRHA. International Journal of Recent Research and Applied Studies. (2011).
Google Scholar
[3]
K. Baskaran., M. Jayawickrama., M., and H. Mallikarachchi. Paddy Husk Ash Stabilized Soil Bricks. (2012).
Google Scholar
[4]
Abalaka, A. E. Strength Development and Durability Properties of Concrete Containing Pre-Soaked Rice Husk Ash. (2013).
DOI: 10.2478/cons-2013-0001
Google Scholar
[5]
M. Dabai., C. Muhammad., B.Bagudo., and A. Musa. Studies on The Effect of Rice Husk Ash as Cement Admixture. (2009).
DOI: 10.4314/njbas.v17i2.49917
Google Scholar
[6]
A.B., Hisyam., P. Ramadhansyah and A.A. Hamidi. Malaysia Rice Ash-Improving the Durability and Corrosion of Concrete: Pre-reivew. Asia Pacific Structural Engineering Conference, APSEC.(2010).
Google Scholar
[7]
B.I. Ugheoke and M.Othman . A critical assessment and new research directions of rice husk silica processing methods and properties. Maejo international journal of science and technology 6(3):430-448.(2012).
Google Scholar
[8]
Y.P. Zhou and T.K. Yang. Rice Husk, Rice Husk Ash and Their Applications. Rice Bran and Rice Bran Oil. Chemistry, Processing and Utilization. p, 207-246. (2019).
DOI: 10.1016/b978-0-12-812828-2.00009-3
Google Scholar
[9]
J.Sutas, A.Mana and L.Pitak (2012). Effect of Rice Husk and Rice Husk Ash to Properties of Brick. Procedia Engineering, vol. 32, pp.1061-1067. (2012).
DOI: 10.1016/j.proeng.2012.02.055
Google Scholar
[10]
K. Ganesan., K. Rajagopal and K. Thangavel. Rice Husk Ash Blended cement: Assessment of Optimal Level of Replacement for Stregth and Permeability Properties of Concrete. (2007).
DOI: 10.1016/j.conbuildmat.2007.06.011
Google Scholar