PENGARUH PENGGUNAAN PENYALUT BIOBLEND PS/PCL TERHADAP PELEPASAN ZAT AKTIF UREA GRANUL

Authors

  • Salman - Faculty of Pharmacy, University of Andalas, Padang 25163, West Sumatra, Indonesia. Department of Pharmacy, Faculty of Sciences, Syiah Kuala University, Banda Aceh, Indonesia
  • Febriyenti - Faculty of Pharmacy, University of Andalas, Padang 25163, West Sumatra, Indonesia.
  • Akmal Djamaan Faculty of Pharmacy, University of Andalas, Padang 25163, West Sumatra, Indonesia.

DOI:

https://doi.org/10.25077/jrk.v8i2.234

Keywords:

bioblend, coating, urea, slow-release fertilizer.

Abstract

The most widely used surfactant is an anionic surfactant which is synthesized from petroleum namely Linear Alkylbenzene sulphonate (LABS). Methyl Ester Sulfonate which is currently being developed. Surfactant can produced from palm oil methyl ester via sulfonation sulfonate. When in this research using sodium metabisulphite. The aims of this work is to synthesize Methyl Ester Sulfonate surfactant from Palm Oil Methyl Ester using Sodium Metabisulphite and a catalyst Calcium Oxide. The effects of time and the mole ratio are also investigated. Sulfonation process carried out in 4, 5, 6 hours with mole ratio of 1: 0,5, 1:1, 1: 1,5, temperature of 80° C and with stirring speed of 450 rpm. It haven been found that the surfactant produced has density of (0.89490 g/cm3 - 0.89545 g/cm3), viscosity (2.0323 cP - 2.1329 cP), pH (2,03 - 2,48), surface tension (32.60 mN/m - 33.60 mN/m), interfacial tension (30.45 mN/m - 30.94 mN/m), and the stability emulsion (59.17% - 89, 17%).

References

R. Lan, Y. Liu, G. Wang, T. Wang, C. Kan, Y. Jin, Experimental modeling of polymer latex spray coating for producing controlled-release urea, Particuology. 9 (2011) 510–516.

A. Shaviv, R.L. Mikkelsen, Controlled-release fertilizers to increase efficiency of nutrient use and minimize environmental degradation - A review, Fertilizer Research. 35 (1993) 1–12.

A. Shaviv, S. Raban, E. Zaidel, Modeling Controlled Nutrient Release from Polymer Coated Fertilizers: Diffusion Release from Single Granules, Environ. Sci. Technol. 37 (2003) 2251–2256.

X. Han, S. Chen, X. Hu, Controlled-release fertilizer encapsulated by starch/polyvinyl alcohol coating, Desalination. 240 (2009) 21–26.

M. Tomaszewska, A. Jarosiewicz, Polysulfone coating with starch addition in CRF formulation, Desalination. 163 (2004) 247–252.

K. Arata, F.Eiji, H. Tomoji, A Mechanism of Nutrient Release from Resin-Coated Fertilizers and Its Estimation by Kinetic Methods : 2. Release of Nutrients Affected by the Permeability of Water Vapor through Coating Material, Journal of the science of soil and manure, Japan. 68 (1997) 14–22.

A. Shaviv, Advances in controlled-release fertilizers, in: Academic Press, 2001: pp. 1–49.

M. Avella, E. Martuscelli, M. Raimo, Review Properties of blends and composites based on poly(3-hydroxy)butyrate (PHB) and poly(3-hydroxybutyrate-hydroxyvalerate) (PHBV) copolymers, Journal of Materials Science. 35 (2000) 523–545.

S.I. Sempeho, H.T. Kim, E. Mubofu, A. Hilonga, Meticulous Overview on the Controlled Release Fertilizers, Advances in Chemistry. 2014 (2014) e363071.

O.A. Salman, Polymer coating on urea prills to reduce dissolution rate, J. Agric. Food Chem. 36 (1988) 616–621.

M.M.E. Costa, E.C.M. Cabral-Albuquerque, T.L.M. Alves, J.C. Pinto, R.L. Fialho, Use of Polyhydroxybutyrate and Ethyl Cellulose for Coating of Urea Granules, J. Agric. Food Chem. 61 (2013) 9984–9991.

A. Djamaan, A.D. Lubis, L.Fitriani, A.P. Dewi, N. Suharti, M. Suardi, E.S. Ben, E. Zaini, Use of biopolymer of polycaprolactone as matrix of verapamilhydrochloride micro-capsule, Journal of Chemical and Pharmaceutical Research. 7 (2015) 683–689.

L. Chen, Z. Xie, X. Zhuang, X. Chen, X. Jing, Controlled release of urea encapsulated by starch-g-poly(l-lactide), Carbohydrate Polymers. 72 (2008) 342–348.

M. Vashishtha, P. Dongara, D. Singh, Improvement in properties of urea by phosphogypsum coating, Int. J. of ChemTech Research. 2 (2010) 36–44.

BMKG, Buletin Analisis Hujan Bulan Januari 2014 dan Prakiraan Hujan Bulan Maret, (2014).

N. Xiaoyu, W. Yuejin, W. Zhengyan, W. Lin, Q. Guannan, Y. Lixiang, A novel slow-release urea fertiliser: Physical and chemical analysis of its structure and study of its release mechanism,Biosystems Engineering. 115 (2013) 274–282.

T. Zheng, Y. Liang, S. Ye, Z. He, Superabsorbent hydrogels as carriers for the controlled-release of urea: Experiments and a mathematical model describing the release rate, Biosystems Engineering. 102 (2009) 44–50.

[C.L. O’Neal, D.J. Crouch, A.A. Fatah, Validation of twelve chemical spot tests for the detection of drugs of abuse, Forensic Science International. 109 (2000) 189–201.

X. He, Z. Liao, P. Huang, J. Duan, R. GE, H. LI, et al., Characteristics and Performance of Novel Water-Absorbent Slow Release Nitrogen Fertilizers, Agricultural Sciences in China. 6 (2007) 338–346.

L. Xie, M. Liu, B. Ni, X. Zhang, Y. Wang, Slow-release nitrogen and boron fertilizer from a functional superabsorbent formulation based on wheat straw and attapulgite, Chemical Engineering Journal. 167 (2011) 342–348.

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Published

2015-03-26

How to Cite

-, S., -, F., & Djamaan, A. (2015). PENGARUH PENGGUNAAN PENYALUT BIOBLEND PS/PCL TERHADAP PELEPASAN ZAT AKTIF UREA GRANUL. Jurnal Riset Kimia, 8(2), 158. https://doi.org/10.25077/jrk.v8i2.234

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