Synthesis of Nano Zinc Oxide from Galvanized Industrial Waste by Using a Combination Method of SOL-Gel, Sonochemical and Calcination

Authors

  • Siti Agustina
  • Nastiti Siswi Indrasti
  • . Suprihatin
  • Nurul Taufiqu Rohman

Keywords:

nano particle synthesis process, nano zinc oxide, zinc acetate, ultrasonication, calcination, galvanized industrial waste.

Abstract

Nano zinc oxide can be used as catalysts, semiconductors and antimicrobial, and can be applied in the various fields, such as cosmetics, medicines, and packaging. Nano zinc oxide can be produced through synthesis process using zinc acetate as a precursor. Until now, zinc acetate used in Indonesia has to be imported from other countries with a relatively high price. This study aims to obtain nano zinc oxide by using zinc acetate of galvanized industrial waste (zinc dross). The synthesis process of nano zinc oxide was conducted using a combination method consisting of sol-gel process - sonochemical

References

H. Joseph, "Polymer Nanocomposites

M. Abdullah, Y. Virgus, N. Nirmin, and K. Khairurrijal, "Review: Sintesis Nanomaterial," Jurnal Nanosains & Nanoteknologi, vol. 1, pp. 33-57, 2009.

C. P. Poole Jr and F. J. Owens, Introduction to nanotechnology: John Wiley & Sons, 2003.

G. Patrinoiu, J. M. Calder

Nuryetti, H. Hermansyah, and M. Nasikin, "Bionanokomposit: Peluang Polimer Alami Sebagai Material Baru Semikonduktor," Jurnal Riset Industri Online, vol. 6, 2012.

C. L. Wilson, Intelligent and active packaging for fruits and vegetables: CRC Press, 2007.

Y. Cao, H.-J. Wang, C. Cao, Y.-Y. Sun, L. Yang, and Y.-N. Zhang, "Synthesis and anti-ultraviolet properties of monodisperse BSA-conjugated zinc oxide nanoparticles," Materials Letters, vol. 65, pp. 340-342, 2011.

T. Gordon, B. Perlstein, O. Houbara, I. Felner, E. Banin, and S. Margel, "Synthesis and characterization of zinc/iron oxide composite nanoparticles and their antibacterial properties," Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 374, pp. 1-8, 2011.

F. G. Winarno and I. E. Fernandez, Nanotechnology bagi industri pangan dan kemasan. Bogor: M-BRIO press, 2009.

P. Bal

S. R. Rao, Resource recovery and recycling from metallurgical wastes vol. 7: Elsevier, 2011.

L. Theodore, Nanotechnology: basic calculations for engineers and scientists: John Wiley & Sons, 2006.

A. Gedanken and Y. Mastai, "Sonochemistry and other novel methods developed for the synthesis of nanoparticles," The Chemistry of Nanomaterials: Synthesis, Properties and Applications, pp. 113-169, 2005.

P. Banerjee, S. Chakrabarti, S. Maitra, and B. K. Dutta, "Zinc oxide nano-particles

Y. Liu, Z. Jian-er, A. Larbot, and M. Persin, "Preparation and characterization of nano-zinc oxide," Journal of Materials Processing Technology, vol. 189, pp. 379-383, 2007.

H. Song, H. Yang, and X. Ma, "A comparative study of porous ZnO nanostructures synthesized from different zinc salts as gas sensor materials," Journal of Alloys and Compounds, vol. 578, pp. 272-278, 2013.

N. Ueno, T. Maruo, N. Nishiyama, Y. Egashira, and K. Ueyama, "Low-temperature synthesis of ZnO nanorods using a seed layer of zinc acetate/sodium dodecyle sulfate nanocomposite," Materials Letters, vol. 64, pp. 513-515, 2010.

T. Bellezze, S. Saltykov, G. Roventi, M. Malavolta, and R. Fratesi, "Layer-by-layer analysis of hot-dip zinc coating by anodic dissolution in acetate bath," Surface and Coatings Technology, vol. 206, pp. 5023-5027, 2012.

P. Tonto, O. Mekasuwandumrong, S. Phatanasri, V. Pavarajarn, and P. Praserthdam, "Preparation of ZnO nanorod by solvothermal reaction of zinc acetate in various alcohols," Ceramics International, vol. 34, pp. 57-62, 2008.

A. R. Fachry and J. Tumanggor, "Pengaruh Waktu Kristalisasi Dengan Proses Pendinginan Terhadap Pertumbuhan Kristal Amonium Sulfat Dari Larutannya," Jurnal Teknik Kimia, vol. 15, 2008.

K. Sugiyarto and R. D. Suyanti, "Kimia Anorganik Logam," Yogyakarta: Graha Ilmu, 2010.

S. Nikmatin, "Biokomposit filler nanopartikel serat kulit rotan sebagai material pengganti komposit sintetis fiber glass pada komponen kendaraan bermotor," 2012.

S. Das, K. Bhattacharjee, S. Maitra, and G. Das, "Effect of oxygen partial pressure on the photoluminescence properties of sol

M. Z. Ahmad, A. Z. Sadek, K. Latham, J. Kita, R. Moos, and W. Wlodarski, "Chemically synthesized one-dimensional zinc oxide nanorods for ethanol sensing," Sensors and Actuators B: Chemical, vol. 187, pp. 295-300, 2013.

A. S. Lanje, S. J. Sharma, R. S. Ningthoujam, J.-S. Ahn, and R. B. Pode, "Low temperature dielectric studies of zinc oxide (ZnO) nanoparticles prepared by precipitation method," Advanced Powder Technology, vol. 24, pp. 331-335, 2013.

Downloads

Published

2015-04-29

How to Cite

Agustina, S., Indrasti, N. S., Suprihatin, ., & Rohman, N. T. (2015). Synthesis of Nano Zinc Oxide from Galvanized Industrial Waste by Using a Combination Method of SOL-Gel, Sonochemical and Calcination. International Journal of Sciences: Basic and Applied Research (IJSBAR), 22(1), 151–164. Retrieved from https://gssrr.org/index.php/JournalOfBasicAndApplied/article/view/3878

Issue

Section

Articles