The Potency of Nanosilica Particle Usage From Rice Ash Husk for Material Addition for Making Concrete (Mini Review)

Authors

  • Aditya Wahyu Nugraha Departemen Teknologi Industri Pertanian, Institut Teknologi Sumatera, Lampung,Jalan Terusan Ryacudu, Way Hui, Jati Agung, Lampung Selatan, Lampung

Keywords:

Concrete, Nanoparticles, Rice husk, Silica

Abstract

In the current era, the increase in infrastructure development correlate with the increased use of concrete. This is because currently, many buildings used concrete. However, concrete is prone to damage due to incomplete processes, for example cracking. Based on several studies that have been reviewed, these problems can be minimized by using silica, both micro, and nano sizes. In general, the silica used comes from quartz sand in the concrete mixture that has been studied. On the one hand, the use of silica is beneficial in the manufacture of concrete, but on the other hand it has a negative impact on the environment. If this is not done prevention, the environment will be more damaged. Therefore, this article looks at the potential of silica from rice husk ash and looks    at    the    characteristics    of    concrete    with     silica     addition     from     quartz     sand.

References

Adam F., Appaturi J. N., Iqbal.,2012. The utilization of rice husk silica as a catalyst: review and recent progress. Catalysis today. 190: 2 –14.Aggarwal P., Singh R. P., Aggarwal Y., 2015. Use of nano silika in cement based materials –a review. Cogent Engineering. 2: 1-11.Andreas A. N., Kristianto H., KurniawanD. F., 2016. Sintesis nanosilika dari sekampadimenggunakanmetodesol gel dengan pelarut etanol. Prosiding seminar nasional teknik kimia “kejuangan”,pengembangan teknologi kimia untuk pengolahan sumber daya alam indonesia,pengembangan teknologi kimia untuk pengolahan sumber dayaalam Indonesia,Yogyakarta.AtmacaN.,AbbasM.L.,AtmacaA.,2017. Effects of nano-silica on the gas permeability, durability and mechanical properties of high-strength lightweight concrete. Construction and Building Materials. 147: 17 –26.Babu G. R., 2013. Effect of nano silica on properties of blended cement. InternationalJournalof ComputationalEngineering Research. 3(5): 50 –55.Biricik H., Sarier N., 2014. Comparative study of the characteristic nano silica, silicfume and fly ash-incorporated cemen mortars. Material Research. 17(3):570-582Bjornstrom J., Martinelli A., Matic, Bojesson L., Panas I., 2004. Accelerating effects of colloidal nano silica for benefical calcium-silicate-hydrate formation incemen. Chemical physics letters. 392: 242 –248.[BPS] Badan Pusat Statistik (ID). 2018. Tabel Dinamis [Internet]. [diunduh 2018 Juli 26].Tersedia pada: https://www.bps.go.id/site/resultTabEsmaeili J., Andalibi K., 2013. Investigation of the effects of nano –silica on the properties of concretein comparison with micro-silica. International Journal of Nano Dimension, 3(4):321-328.Givi A. N. N., Rashid S. A. A., Aziz F. N. A., Salleh M. A. M., 2010.Experiemental investigation of the size effects of SiO2nano particleson the mechanical properties binary blended concrete. Composites part b engineering. 41: 673 –677.Gopinath S., Mouli P. C. H., MurthyA.R., Iyer N. R., Maheswaran S,. 2012. Effect of nano silica on mechanical properties and durability of normal strength concrete. Archives of civil engineering. LVIII(4):433-444.Handayani P. A., Nurjanah E., Rengga W.D. P., 2014. Pemanfaatan limbah sekampadimenjadisilikagel.Jurnal bahan alam terbarukan. 3(2): 19 –24.HayatiD.,Pardoyo.,AzmiyawatiC.,2017. Pengaruh variasi jenis asam terhadap karakter nanosilika yang disintesis dari abu sekampadi.Jurnal kimia sains dan aplikasi.20(1): 1 –4.Heidari A., Tavakoli D., 2013. A study of mechanical properties of ground ceramic powder concrete incorporating nano-SiO2particles. Construction and buildingmaterials. 38: 255 –264.Jalal M., Pouladkhan R. A., Norouzi H., Choubdar G., 2012. Chloride penetration, water absorption and electrical resistivity of high performance concrete containing nano silica and silica fume. Journal of American Science. 8: 278–284.Khan M. I, Siddique R., 2011. Utilization of silica fume in concrete: review of durability properties. Resources, conservation and reycling. 57: 30 –35.Khanzadi M., Tadayon M., Sepehri H., SepehriM.,2010.InfluenceofNano-Silica Particles on Mechanical Properties and Permeability of Concrete. Second international conference on sustainable construction materials and technologies.Italy.Le V. H., Thuc C. N. H., Thuc H. H., 2013.Synthesis of silica nanoparticles from vietnamese rice husk by sol –gel method. Nanoscale research letters. 8: 58.Li G., 2004. Properties of high-volume fly ash concrete incorporating nano-SiO2. Cement and concreteresearch. 34:1043-1049.LiH., Xiao H., Yuan J., Qu J.,2004.Microstructure of cement mortar with nano particels. Composites. 35: 185 –189.Liou H. T., Yang C. C., 2011. Synthesis and surface characteristics of nanosilicaproduced from alkali –extracted risk husk ash. Material sciece and engineering B. 176: 521–529.Ltifi M., Guefrech A., Mounanga P., Khelidj A., 2011. Experimental study of the effect of addition of nano-silica on the behaviour of cement mortars Mounir. Procedia Engineering. 10:900–905.Maheswaran S., Bhuvaneshweri B., PalaniG. S., Nagesh R. I., Kalaiselvam S., 2013. An overview on the influence of nano silica in concrete and a research initiative. Research journal of recentsciences. 2: 17-24.Parida S., 2015. Effect of Nano silica on the compressive strength of concrete [thesis]. National instate of technology. Rourkela.Quercia G., Brouwers H. J. H., 2010. Application of nano silica (nS) in concrete mixtures. 8thfibPh. SymposiuminKgs.Lyngby.Denmark.Sanchez F., Sobolev K., 2010. Nanotechnology in concrete –a review. Constr Build Mater. 24(11):2060–71.Selvakumar KV, Umesh A, Ezhilkumar P, Gayatri S, Vinith P, and Vignesh V. Extraction of Silica from Burnt Paddy Husk.International Journal ofChemTechResearch.6(9):4455–4459.Senff L., Labrincha J. A., Ferreira V. M., Hotza D., Repette W. L., 2009. Effectofnano-silicaonrheologyand fresh properties of cement pastesand mortars. Construction and Building Materials. 23:2487–2491.Sofyan I. G. G., Alauhdin M., Susatyo E. B., 2013. Sintesis danKarakterisasi Bahan Keramik Cordierite dari Abu Sekam Padi. Indonesian JournalofChemicalScience,2:(2).Suka I. G., Simanjunta W., Sembiring S., dan Trisnawati E., 2008. Karakteristik Silika Sekam Padi dari Provinsi Lampung yang Diperoleh dengan Metode Ekstraksi. MIPA, 37(1): 47 –52.Vinayag M. B., Aleem M. I. A., Thaarrini J., Roja S. Y., 2015. Review on Strength and durability characteristic of geopolimer concrete with macro silica, nano silica. Internationalresearch journal of engineering and technology (IRJET). 2(9): 1-4.Yogendran V., Langan B. W., 1987. Utilization of silica fume in high strength concrete. In: Proceedings of utilization of high strength concrete, Stavanger.TapirPublisherTrondheim,Norway.Yoshida S. 1981. Fundamentals of Rice Crop Science. LosBaños, Philippines: IRRI.Zhang M. H., Li H., 2011. Pore structur e andchloridepermeabilityofconcrete containing nano-particles for pavement. Construction and Building Materials. 25: 608 –616Zhang M. H., Islam J., 2012. Use of nano-silica to reduce setting time and increase early strength of concretes with high volumes of fly ash or slag. Construction and Building Materials. 29: 573–580.Zhang M. H., Islam J., Peethamparan S., 2012. Use of nano-silica to increase earlystrengthandreducesettingtime of concretes with high volumes of slag. Cement and Concrete Composites. 34:650–662.

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Submitted

2026-04-28

Published

2021-05-26

How to Cite

Nugraha, A. W. (2021). The Potency of Nanosilica Particle Usage From Rice Ash Husk for Material Addition for Making Concrete (Mini Review). Agroindustrial Technology Journal, 5(1), 21–33. Retrieved from https://atj.journal.unida.gontor.ac.id/index.php/atj/article/view/119

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