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Dewiyanti Hermadytha Catyandaru, 2016

SINTESIS HIDROGEL POLI (VINIL ALKOHOL)-GLUTARALDEHID (PVA-GA) DAN KAJIAN PERILAKU PELEPASAN KALIUM KLORIDA DARI HIDROGEL KE DALAM MEDIA AQUADEST

Universitas Pendidikan Indonesia | repository.upi.edu | perpustakaan.upi.edu 54

DAFTAR PUSTAKA

A. C.Satterthwait and W. P. Jencks, J. Am. Chem. Soc., 96, 7018 (1974)

Aderibigbe, B. A., Varaprasad, K., Sadiku, E. R., Ray, S. S., Mbianda, X. Y.,

Fotsing, M. C., … Agwuncha, S. C. (2015). Kinetic release studies of

nitrogen-containing bisphosphonate from gum acacia crosslinked hydrogels. International Journal of Biological Macromolecules, 73(1), 115–123. http://doi.org/10.1016/j.ijbiomac.2014.10.064

Augst, A. D., Kong, H. J., & Mooney, D. J. (2006). Alginate hydrogels as biomaterials. Macromolecular Bioscience, 6(8), 623–633. http://doi.org/10.1002/mabi.200600069

Azeem, B., Kushaari, K., Man, Z. B., Basit, A., & Thanh, T. H. (2014). Review on materials & methods to produce controlled release coated urea fertilizer.

Journal of Controlled Release, 181, 11–21.

http://doi.org/10.1016/j.jconrel.2014.02.020

Beswick, R.H., Dunn, D.J. (2002). Plastics in Packaging. Shrophsire: Rapra Technology, Ltd.

Bruschi, M. L. (2015). Mathematical models of drug release 5. http://doi.org/10.1016/B978-0-08-100092-2.00005-9

Burghardt, A. (2010). Interphase Mass Transfer. In Chemical Engineering and Chemical Process Technology (Vol. I). EOLSS Publications.

Darwis, D., Hardiningsih, L., Erizal dan Chosdu, R. (1995). Daya Absorpsi Hidrogel Polivinilpirolidin (PVP) Hasil Iradiasi Gamma Terhadap Air dan Pelarut Organik. Risalah Pertemuan Ilmiah Aplikasi Isotop dan Radiasi. 129-136.

Darwis, D. (1999). Aplikasi Hidrogel dalam Bidang Kedokteran dan Farmasi. P3TIR Batan, Jakarta. 1-11.

Dash, S., Murthy, P. N., Nath, L., & Chowdhury, P. (2010). Kinetic modeling on drug release from controlled drug delivery systems. Acta Poloniae Pharmaceutica, 67(3), 217–223. http://doi.org/10.1016/S0928-0987(01)00095-1

Davidson, D. W., Verma, M. S., & Gu, F. X. (2013). Controlled root targeted delivery of fertilizer using an ionically crosslinked carboxymethyl cellulose hydrogel matrix. SpringerPlus, 2(1), 318. http://doi.org/10.1186/2193-1801-2-318

Devi, A., & Nautiyal, U. (2014). Hydrogels : a smart drug delivery device. Asian

Pac. J. Health Sci., 1(4S), 92–105.

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Dewiyanti Hermadytha Catyandaru, 2016

SINTESIS HIDROGEL POLI (VINIL ALKOHOL)-GLUTARALDEHID (PVA-GA) DAN KAJIAN PERILAKU PELEPASAN KALIUM KLORIDA DARI HIDROGEL KE DALAM MEDIA AQUADEST

Universitas Pendidikan Indonesia | repository.upi.edu | perpustakaan.upi.edu dan Radiasi. 137-144.

Farinas, K. C., Doh, L., Venkatraman, S., & Potts, R. O. (1994). Characterization of Solute Diffusion in a Polymer Using ATR-FTIR Spectroscopy and Bulk Transport Techniques. Macromolecules, 27(18), 5220–5222. http://doi.org/10.1021/ma00096a055

Fernández-Colino, A., Bermudez, J. M., Arias, F. J., Quinteros, D., & Gonzo, E. (2016). Development of a mechanism and an accurate and simple mathematical model for the description of drug release: Application to a relevant example of acetazolamide-controlled release from a bio-inspired elastin-based hydrogel. Materials Science and Engineering C, 61, 286–292. http://doi.org/10.1016/j.msec.2015.12.050

Fonseca, E., Fábia, S., & Sander, H. (2006). Synthesis and Characterization of Poly ( Vinyl Alcohol ) Hydrogels and Hybrids for rMPB70 Protein Adsorption. Materials Research, 9(2), 185–191. http://doi.org/10.1590/S1516-14392006000200014

Flory, P.J. (1969). Principles of Polymer Chemistry. Seventh Edition. Ithaca : Cornell University Press.

Gaskell, M., & Hartz, T. (2011). Application of the “4R” nutrient stewardship

concept to horticultural crops: Selecting the “Right” nutrient source.

HortTechnology, 21(6), 663–666.

Grassi, M., Lamberti, G., Cascone, S., & Grassi, G. (2011). Mathematical modeling of simultaneous drug release and in vivo absorption. International

Journal of Pharmaceutics, 418(1), 130–141.

http://doi.org/10.1016/j.ijpharm.2010.12.044

Gulrez, S. K. H., Al-Assaf, S., & Phillips, G. O. (2011). Hydrogels: Methods of Preparation, Characterisation and Applications. http://doi.org/10.5772/35194

Han, X., Chen, S., & Hu, X. (2009). Controlled-release fertilizer encapsulated by starch/polyvinyl alcohol coating. Desalination, 240(1–3), 21–26. http://doi.org/10.1016/j.desal.2008.01.047

Harper, C. A., Petrie, E. M. (2003). Plastics Materials and Processes : A Concise Encyclopedia. New York: Wiley

Hassan, C. M., & Peppas, N. a. (2000). Structure and Applications of Poly ( vinyl alcohol ) Hydrogels Produced by Conventional Crosslinking or by Freezing / Thawing Methods. Adv. Polym. Sci., 153, 37–65. http://doi.org/10.1007/3-540-46414-X_2

Hoffman, A. S. (2002). Hydrogel for Biomedical Application. Advance Drug Delivery Rev. 54 (1), 3-12.

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Dewiyanti Hermadytha Catyandaru, 2016

SINTESIS HIDROGEL POLI (VINIL ALKOHOL)-GLUTARALDEHID (PVA-GA) DAN KAJIAN PERILAKU PELEPASAN KALIUM KLORIDA DARI HIDROGEL KE DALAM MEDIA AQUADEST

Universitas Pendidikan Indonesia | repository.upi.edu | perpustakaan.upi.edu

J. I. . Kroschwitz, Ed, 1992 Kirk-Othmer Encyclopeia of Chemical Technology, John Wiley & Sons.

Jarosiewicz, A., & Tomaszewska, M. (2004). Polysulfone coating with starch addition in CRF formulation.

Jamnongkan, T., & Kaewpirom, S. (2010). Controlled-release fertilizer based on chitosan hydrogel: phosphorus release kinetics. SCIENCE JOURNAL Ubonratchathani University, 1(1), 43–50.

Kaewpirom, S., & Boonsang, S. (2006). Electrical response characterisation of poly(ethylene glycol) macromer (PEGM)/chitosan hydrogels in NaCl solution. European Polymer Journal, 42 (7), 1609-1616.

Karimi, M. (2006). Diffusion in polymer solids and solutions. Mass Transfer in Chemical Engineering, 17–40.

Kawahara, J., Ishikawa, K., Uchimaru, T., & Takaya, H. (1997). Chemical Cross-Linking by Glutaraldehyde between Amino Groups: Its Mechanism and Effects. In Polymer Modification (pp. 119–131). Boston, MA: Springer US. http://doi.org/10.1007/978-1-4899-1477-4_11

Kirk, G.W., and Othmer, D.F. (1978). Encyclopedia of chemical Technology. Third Edition. vol 1. pp 298 – 311. 312 – 330. New York: John Wiley and Sons.

Lavi, E. & Snelgrove, J. A. (1983). Vinyl Polymers. In Encyclopedia of Chemical Technology. Kirk-Othmer.

Lee, K. Y., Rowley, J. A., Eiselt, P., Moy, E. M., Bouhadir, K. H., & Mooney, D. J. (2000). Controlling Mechanical and Swelling Properties of Alginate Hydrogels Independently by Cross-Linker Type and Cross-Linking Density. Macromolecules, 33(11), 4291–4294. http://doi.org/10.1021/ma9921347

Lee, P. I. (1985). Kinetics of drug release from hydrogel matrices. Journal of Controlled Release, 2(C), 277–288. http://doi.org/10.1016/0168-3659(85)90051-3

Lejardi, A., Hernandez, R., Criado, M., Santos, J. I., Etxeberria, A., Sarasua, J. R., & Mijangos, C. (2014). Novel hydrogels of chitosan and poly(vinyl alcohol)-g-glycolic acid copolymer with enhanced rheological properties.

Carbohydrate Polymers, 103(1), 267–273.

http://doi.org/10.1016/j.carbpol.2013.12.040

Letellier, M., Fierro, V., Pizzi, A., & Celzard, A. (2014). Tortuosity studies of cellular vitreous carbon foams. Carbon, 80(1), 193–202. http://doi.org/10.1016/j.carbon.2014.08.056

Lin, C. C., & Metters, A. T. (2006). Hydrogels in controlled release formulations: Network design and mathematical modeling. Advanced Drug Delivery Reviews, 58(12–13), 1379–1408. http://doi.org/10.1016/j.addr.2006.09.004

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57

Dewiyanti Hermadytha Catyandaru, 2016

SINTESIS HIDROGEL POLI (VINIL ALKOHOL)-GLUTARALDEHID (PVA-GA) DAN KAJIAN PERILAKU PELEPASAN KALIUM KLORIDA DARI HIDROGEL KE DALAM MEDIA AQUADEST

Universitas Pendidikan Indonesia | repository.upi.edu | perpustakaan.upi.edu and Slow-Release Fertilizers as Nutrient Management Tools, 1–7.

Nimni, M.E., D. Cheung, B. Strates, M. Kodama, and K. Sheikh. 1987. Chemically modified collagen: a natural biomaterial for tissue replacement. J. Biomed. Mater. Res. 21:741-771.

Ogur, E. (2005). Polyvinyl alcohol: materials, processing and applications. Volume 16, Number 12, 2005. ISSN: 0889-3144. Dalam: Randi, S. 2011.

Okuda, K., I. Urabe, Y. Yamada, and H. Okada. 1991. Reaction of glutaraldehyde with amino and thiol compounds. J. Ferment. Bioeng. 71:100-105

Pthorticulture. (2015). Pros and Cons of Using Controlled-Release Fertilizers in the Greenhouse. Retrieved October 5, 2015, from http://www.pthorticulture.com/en/training-center/pros-and-cons-of-using-controlled-release-fertilizers-in-the-greenhouse/

Rosiak, J. M. and Yoshii, F. (1999). Hydrogels and Their Medical Applications. Nuclear Instruments and Methods in Physics Research B 151. Lodz. 56-64.

Samchenko, Y., Ulberg, Z., & Korotych, O. (2011). Multipurpose smart hydrogel systems. Advances in Colloid and Interface Science, 168, 247-262. http://dx.doi/org/10.1016/j.cis.2011.06.005

Sandler, S.R.and Karo, W. (1992). Polymer Syntheses. vol 1. pp 420–445. San Diego : Academic Press. Inc.

Sastrohamidjojo, H. 1992. Spektroskopi Inframerah. Cetakan Pertama. Yogyakarta: Penerbit Liberti.

Shaviv, A., & Mikkelsen, R. L. (2005). Controlled-release fertilizers to increase efficiency of nutrient use and minimize environmental degradation - A review. Fertilizer Research, 35(1–2), 1–12. http://doi.org/10.1007/BF00750215

Sheftel., VO. (2000). Indirect Food Additives and Polymer: Migration and Toxicology. Boca Raton London New York Washington, DC: Lewis Publisher. Hal. 736-737, 1167-1169.

Shweta, A., Pahuja, S. (2013). Pharmaceutical Relevance of Crosslinked Chitosan in Microparticel Drug Delivery. International Research Journal of Pharmacy: 4(2).

Silverstein, R.M., G.B. Bassler., and T.C.D. Morcill. 1986. Penyelidikan Spektrometrik Senyawa Organik. AlihBahasa : A.J. hartomo, dan Anny Victor Purba. Erlangga. Jakarta. Hlm 191-195.

Sugita, P, dkk., 2009. Kitosan: Sumber Biomaterial Masa Depan. IPB Press, Bogor.

Sumar Hendayana, dkk. 1994. Kimia Analitik Instrumen. Edisi Kesatu. IKIP Semarang Press. Semarang

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Dewiyanti Hermadytha Catyandaru, 2016

SINTESIS HIDROGEL POLI (VINIL ALKOHOL)-GLUTARALDEHID (PVA-GA) DAN KAJIAN PERILAKU PELEPASAN KALIUM KLORIDA DARI HIDROGEL KE DALAM MEDIA AQUADEST

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