6. DAFTAR PUSTAKA - 12.70.0152 Yeremia Adi Wijaya DAFTAR PUSTAKA

  Abdou, E.S & M.A, Sorour. (2014). Preparation and Characterization of Starch/Carrageenan Edible Films. International Food Research Journal Vol 21(1):189-193 Aldana, D.S; Villa, E.D; Hernandez, M.D; Sanchez, G.G; Crus, Q.R; Gallardo, S.F; Castillo, H.P & L.B, Casarubias. (2014). Barrier Properties of Polylactic Acid in Cellulose Based Packages Using Montmorillonite as Filler. Polymer Vol 6:2386

  • – 2403 Alemayehu, H.B; Huang, Q; Xiao, H & M, Eic. (2012). Mass Transfer of Water Vapor, Carbon Dioxide and Oxygen on Modified Cellulose Fibre-Based Material. Nordic Pulp and Paper Research Journal Vol 27(2):409-417 American Society for Testing and Material (ASTM) D882-02. (1995). Standard Test Method for Tensile Properties of Thin Plastics Sheeting. In Annual Book of American Standard Testing Methods. West Conshohochem, PA. American Society for Testing and Material (ASTM) E96-00. (1995). Standard Test Method for Water Vapor Transmission of Material, ASTM International, West Conshohochem, PA

  Baldwin, E.A; Hagenmaier, R & J, Bai. (2011). Edible Coantings and Films to

  nd

  Improve Food Quality 2 Edition. CRC Press. Boca Raton. p.161 Bardajee, G.R; Hooshyar, Z & Y, Pourhasan. (2011). The Effect of Multidentate Biopolymer Based on Polyacrilamide Grafted onto Kappa-carrageenan on the Spectrofluorometric Properties of Water Soluble Cds Quantum Dots. International Journal of Spectroscopy Vol 2011:1-6 Bourbon, A.I; Pinheiro, A.C; Cerqueira, M.A; Rocha, C.M.R; Avides, M.C; Quintas, M.A.C & A.A, Vicente. (2011). Physico-chemical Characterization of Chitosan Based Edible Films Incorporating Bioactive Compounds of Different Molecular Weight. Journal of Food Engineering Vol 106:111-118

  • – Boutoom, T. (2008). Edible Film and Coatings : Characteristics and Properties A Review. International Food Research Journal 15(3):237-248 Brandenburgh, A.H; Weller, C.H & R.F, Testin. (1993). Edible Film and Coating
Campo, V.L; Kawano, D.F; Silva, D.B & C.L, Ivone. (2009). Carrageenans : Biological Properties, Chemical Modification and Structural Analysis. Carbohydrate Polymer Vol 77:167-180 Cao, N; Fu, Y & He, J. (2007). Preparation and Physical Properties of Soy Protein Isolate and Gelatin Composite Films. Food Hydrocolloids Vol 21(7):1153-1162

  nd Clark, D.P & N.J, Pazdernik (2013). Moleculer Biology 2 Edition. Elsevier.

  United Kingdom P375 Coughlan, K; Shaw, N.B; Kerry, J.F & J.P, Kerry. (2004). Combined Effect of Proteins and Polyssacharides on Physical Properties of Whey Protein Concentrate Based Edible Film. Journal of Food Science Vol 69(6):271-275 Cuq, B; Gontard, N & Guilbert, S. (1998). Protein as Agriculture Polymers for Packaging Producion. Cereal Chemistry Vol 75(1):1-9 Gennadios, A; Weller, C.L & M.A, Hanna. (1997). Soy Protein/Fatty Acid Film and Coatings. Inform Vol 8 No.6:622-623 Guo, X; Lu, Y; Cui, H; Jia, X, Bai, H & Y, Ma. (2012). Factors Effecting The Physical Properties of Edible Composite Film Prepared from Zein and Wheat Gluten. Molecules Vol 17:3794-3804 Hambali, E; Suryanti, A & Wadli. (2004). Membuat Aneka Olahan Rumput Laut.

  Penebar Swadaya. Jakarta Handoko, M.E. (2015). Pengaruh Gliserol Sebagai Plasticizer Terhadap Karakteristik Fisik Edible Film Berbasis Karagenan Alga Merah (Eucheuma

  cottonii ). Skripsi Universitas Katolik Soegijapranata. Semarang

  Jooyandeh, H. (2011). Whey Protein Film and Coatings: A Review. Pakistan Journal of Nutrition Vol 10(3):296-301 Krochta, J.M. (1997). Edible Protein Films and Coatings, dalam Damodaran, S & A, Paraf. Food Proteins and Theer Application. Marcell Dekker Inc. New York.

  Krochta, J.M & C, De Mulder-Johnston. (1997). Edible and Biodegradable Polymer Film: Challenges and Opportunities. Food Technology Vol 51(2):61-74

  Kuriyan, J; Konforti, B & D, Wemmer. (2013). The Molecules of Life : Physical and Chemical Principles. Garland Science. New York. P29 Larotanda, F.D.S. (2007). Biodegradable Film and Coating Obtained From Carrageenan from Mastocarpus stellatus and Starch from Quercus suber. Thesis University of Porto. Porto Marsh, K.D & B, Betty. (2007). Food Packaging

  • – Role, Materials, and Enviromental Issues. Journal of Food Science Vol 72(3):39-55 Matweb. (1995). Tensile Property Testing of Plastics. http://www.matweb.com/reference/tensilestrength.aspx Diakses pada

  10 November 2015 Naik, P. (2015). Biochemistry. JP Medical Ltd. New Delhi. P60 Nandane, A.S & R, Jain. (2014). Study of Mechanical Properties of Soy Protein

Based Edible Film as Affected by it’s Compotition and Process Parameters by

  Using RSM. Journal of Food Science Technology Vol 52(6):3645-3650 Oymaci, P. (2014). Development of Whey Protein IsolateBased Nanocomposite Food Packaging Films Incorporated with Chitosan and Zein Nanoparticles. Thesis Izmir Institutes of Technology. Turkey Park, S.Y; Lee, B.I; Jung, S.T & H.J, Park. (2001). Biopolymer Composite Film Based on Kappa-carrageenan and Chitosan. Material Reseach Bulletin Vol 36:511-519 Qi, M; Hettiarachchy, N.S & U, Kalapaty. (1997). Solubility and Emulsifying Properties of Soy Protein Isolates Modified by Pancreatin. Journal of Food Science Vol 62(6):1110-1116 Ralston. (2010). Water Vapor Transmission Rate of Low Density Polyethylene.

  Reis, R.L. & D, Cohn. (2002). Polymer Based System on Tissue, Engineering, Replacement and Regeneration. Springer Science & Business Media. New York P.102 Robert, M; Reiss, M.J & G, Monger. (2000). Advanced In Biology. Nelson

  Rocha, M; Lioko, M.R; Gauterio, G.V; Tondo, E.C & C, Prentice. (2013). Influence of Heating, Protein and Glycerol Concentrations pf Film Forming Solution on Film Properties of Argentine Anchovy (Engraulis anchoita) Protein Isolate. Journal of Food Engineering Vol 116 : 666-673 Saleh, E; Muhammad, I.I & N, Khairuddin. (2009). Structural Characterization and Physical Properties of Antimicrobial (AM) Starch-Based Film. World Academy Science, Engineering and Technology Vol 55:432-440 Saputra, E; Pramono, K.H; Abdillah, A.A & M.A, Alamsjah. (2015). An Edible Film Characteristic of Chitosan Made from Shrimp Waste as Plastisizer. Journal of Natural Science Research Vol 5(4):118-125 Schmid, M. (2013). Properties of Cast Films Made From Different Ratio of Whey Protein Isolate, Hydrolysed Whey Protein Isolate and Glycerol. Material Vol 6 : 3254 – 3269 Scope, R.K. (1994). Protein Purification : Principles and Practice. Springer-Verlag. New York.

  Shakila, R.J; Jeevithan, E; Varatharajakumar, A; Jeyasekaran, G & D, Sukumar. (2012). Comparison of the Properties of Multi-composite Fish Gelatin Films with that of Mamalian Gelatin Films. Food Chemistry Vol 135:2260

  • – 2267 Shimadzu. (2015). Tensile Test of Various Plastic Materials. http://www.shimadzu.com/an/industry/petrochemicalchemical/i215.html Diakses Pada 10 November 2015 Shogren, R. (1997). Water Vapor Permeability of Biodegradable Polymers. Journal of Enviromental Polymer Degradation Vol 6(2):91-95 Soliman, E.A; Tawfik, M.S; Sayed, H.E & Y.G, Moharram. (2007). Preparation and Characterization of Soy Protein Based Edible/Biodegradable Films. American Journal of Food Technology Vol 2(6):462-476 Uniprot. (1987a). Glycinin. http://www.uniprot.org/uniprot/P04347. Diakses Pada 25 Januari 2016. Uniprot. (1987b). Glycinin-G4. http://www.uniprot.org/uniprot/P02858. Diakses

  Pada 27 Januari 2016

  Uniprot. (1989a). Beta-

Conglycinin, Alpha’ Chain http://www.uniprot.org/uniprot/P11827. Diakses pada 26 Januari 2016

  Uniprot (1989b). Glycinin-G1. http://www.uniprot.org/uniprot/P04776. Diakses Pada 27 Januari 2016. Uniprot. (1989c). Glycinin-G2. http://www.uniprot.org/uniprot/P04405. Diakses Pada 27 Januari 2016 Uniprot. (1989d). Glycinin-G3. http://www.uniprot.org/uniprot/P11828. Diakses Pada 27 Januari 2016 Uniprot. (1990). Beta-Conglycinin, Alpha Chain. http://www.uniprot.org/uniprot/P13916. Diakses pada 26 Januari 2016 Uniprot. (1992). Beta-Conglycinin, Beta Chain. http://www.uniprot.org/uniprot/P25974. Diakses pada 26 Januari 2016 Uniprot. (2001). Basic 7S Globulin. http://www.uniprot.org/uniprot/P13917. Diakses Pada 25 Januari 2016. United States Department of Agriculture. (2015). National Nutrient Database For Standard Reference. Diakses Pada

  8 November 2015 Utsumi, S; Matsumura, Y & T, Mori. (1997). Structure-Function Relationships of soy Protein, dalam dalam Damodaran, S & A, Paraf. Food Proteins and Theer Application. Marcell Dekker Inc. New York Van Tuil, R; Fowler, P; Lawther, M & C.J, Weber. (2000). Properties of Biobased Packaging Materials. Biobased Packaging Materials for Food Industry – Status and Perspectives. The Royal Veterinary and Agricultural University. Denmark. Villagomez-Zavala, D.L; Gomez-Corona, C; Martinez, E.S.M; Perez-Orozco, J.P; Vernon-Carter, E.J & R, Pedrosa-Islas. (2008). Comparative Study of The Mechanical Properties of Edible Films Made From Single and Blend Hydrophilic Biopolymer Matrices. Revista Mexicana de Ingenieria Quimica Vol 7(3):263-273 Were, L; Hettiarachchy, N.S & M, Coleman. (1999). Properties of Cysteine- Added Soy Protein-Wheat Gluten Films. Journal of Food Science Vol 64(3):514- 518 Wittaya, T. (2012). Protein Based Edible Film : Characteristic and Improvement of Properties. Intech. Thailand.

  Wittaya, T. (2013). Influence of Type and Concentration of Plastisizers on the Properties of Edible Film From Mung Bean Proteins. Kmitl Science and Technology Journal Vol 13(1):51-58 Yada, R. (2004). Protein in Food Processing. CRC Press. Boca Raton.