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목차 1
벤토나이트를 첨가한 카제인나트륨 기반 코팅지 제조 및 특성 연구 = Preparation and characterization of sodium caseinate coated papers with bentonite / 황지현 ; 이정현 ; 정제영 ; 심진기 ; 김도완 1
Abstract 1
서론 1
재료 및 방법 2
1. 재료 2
2. 방법 2
결과 및 고찰 3
1. 코팅지의 화학적 특성 3
2. 형태학적 특성 4
3. 기계적 강도 4
4. 수증기 차단 특성 5
5. 표면 특성 6
6. 항산화 특성 6
요약 6
References 7
번호 | 참고문헌 | 국회도서관 소장유무 |
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1 | Aghajani-Memar, S., Mohammadkazemi, F., Kermanian, H. and Hamedi, S. 2022. Synergistic effect of bacterial cellulose and halloysite nanotubes on the properties of the sodium caseinate-based nanobiocomposites. Appl. Clay Sci. 222:106493. | 미소장 |
2 | Picchio, M.L., Linck, Y.G., Monti, G.A., Gugliotta, L.M., Minari, R.J. and Igarzabal, C.I.A. 2018. Casein films crosslinked by tannic acid for food packaging applications. Food Hydrocoll. 84: 424-434. | 미소장 |
3 | Liu, K., Xu, X., Liu, H., Liu, Z., Zhao, K., Ma, Y. and Zhang, K. 2021. Mechanical properties and water sensitivity of soybean protein isolate film improved by incorporation of sodium caseinate and transglutaminase. Prog. Org. Coat. 153:106154. | 미소장 |
4 | Kansal, D., Hamdani, S.S., Ping, R., Sirinakbumrung, N. and Rabnawaz, M. 2020. Food-safe chitosan–zein dual-layer coating for water- and oil-repellent paper substrates. ACS Sustain. Chem. Eng. 8: 6887-6897. | 미소장 |
5 | Hwang, J. and Kim, D. 2022. Preparation and characterization of sodium caseinate (CasNa)/transglutaminase (TG)-coated papers for packaging. Korean J. Packag. Sci. Tech. 28: 81-87. | 미소장 |
6 | Zhang, W., Xiao, H. and Qian, L. 2014. Enhanced water vapour barrier and grease resistance of paper bilayer-coated with chitosan and beeswax. Carbohydr. Polym. 101: 401-406. | 미소장 |
7 | Rastogi, V.K. and Samyn, P. 2015. Bio-based coatings for paper applications. Coatings. 5: 887-930. | 미소장 |
8 | Kim, D. and Hwang, J. 2023. Preparation and characterization of sodium caseinate-coated papers based on glycerol and sorbitol contents for packaging application. Foods. 12: 940. | 미소장 |
9 | Chambi, H. and Grosso, C. 2006. Edible films produced with gelatin and casein cross-linked with transglutaminase. Food Res. Int. 39: 458-466. | 미소장 |
10 | Li, X., Nie, X., Chen, J. and Wang, Y. 2019. Preparation of epoxidized cardanol butyl ether as a novel renewable plasticizer and its application for poly(vinyl chloride). Polym. Int. 66:337-491. | 미소장 |
11 | Mele, G., Bloise, E., Cosentino, F., Lomonaco, D., Avelino, F., Marciano, T., Massaro, C., Mazzetto, S. E., Tammaro, L., Scalone, A. G., Schioppa, M. and Terzi, R. 2019. Influence of cardanol oil on the properties of poly(lactic acid) films produced by melt extrusion. ACS Omega. 4: 718-726. | 미소장 |
12 | Liang, H., Long, Z., Yang, S. and Dai, L. 2015. Organic modification of bentonite and its effect on rheological properties of paper coating. Appl. Clay Sci.104: 106-109. | 미소장 |
13 | Ham, M., Kim, J-C. and Chang, J-H. 2013. Characterization of poly(vinyl alcohol) nanocomposite films with various clays. Polymer. 37: 225-231. | 미소장 |
14 | Sapalidis, A.A., Katsaros, F.K. Steriotis, T.A. and Kanellopoulos, N.K. 2011. Properties of poly(vinyl alcohol)—bentonite clay nanocomposite films in relation to polymer–clay interactions. J. Appl. Polym. 123: 1812-1821. | 미소장 |
15 | KS M ISO 1924-2:2008, Paper and board-determination of tensile properties-Part 2: Constant rate of elongation method (20 mm/min). | 미소장 |
16 | Kim, D., Kim, I., Seo, J. and Seo, J. 2012. Preparation of polyurushiol (PUOH) using urushiol and property of LDPE/PUOH composite films. Appl. Chem. Eng. 23: 546-553. | 미소장 |
17 | Chen, S., Wei, X., Sui, Z., Guo, M., Geng, J., Xiao, J. and Huang, D. 2021. Preparation of antioxidant and antibacterial chitosan film from Periplaneta Americana. Insects. 12: 53. | 미소장 |
18 | Pereda, M., Amica, G., Rácz, I. and Marcovich, N.E. 2011. Structure and properties of nanocomposite films based on sodium caseinate and nanocellulose fibers. J. Food Eng. 103:76-83. | 미소장 |
19 | Saberi-Rise, R. and Moradi-Pour, M. 2020. The effect of Bacillus subtilis Vru1 encapsulated in alginate-bentonite coating enriched with titanium nanoparticles against Rhizoctonia solani on bean. Int. J. Biol. Macromol. 152: 1089-1097. | 미소장 |
20 | Koosha, M. and Hamedi, S. 2019. Intelligent Chitosan/PVA nanocomposite films containing black carrot anthocyanin and bentonite nanoclays with improved mechanical, thermal and antibacterial properties. Prog. Org. Coat. 127: 338-347. | 미소장 |
21 | Azevedo, V.M., Dias, M.V., Borges, S.V. Costa, A.L.R., Silva, E.K., Medeiros, E.A.A. and Soares, N.D.F.F. 2015. Development of whey protein isolate bio-nanocomposites:Effect of montmorillonite and citric acid on structure, thermal, morphological and mechanical properties. Food Hydrocoll. 48: 179-188. | 미소장 |
22 | Rhim, J-W., Lee, J-H. and Kwak, H-S. 2005. Mechanical and water barrier properties of soy protein and clay mineral composite films. Food Sci. Biotechnol. 14: 112-116. | 미소장 |
23 | Islam, H.B.M.Z. and Susan, M.A.B.H.M. 2020. Effects of plasticizers and clays on the physical, chemical, mechanical, thermal, and morphological properties of potato starch-based nanocomposite films. ACS Omega. 5: 17543−17552. | 미소장 |
24 | Cho, S.K., Cho, T.Y., Ham, D.S., Lee, S.J. and Lee, J.H. 2016. Gas permeation mechanism and technical trend for high shielding properties of plastic films. J. Adhes. Interface. 17: 155-162. | 미소장 |
25 | Akhila, V. and Badwaik, L.S. 2022. Recent advancement in improvement of properties of polysaccharides and proteins based packaging film with added nanoparticles: A review. Int. J. Biol. Macromol. 203: 515-525. | 미소장 |
26 | Dogaru, B-I., Simionescu, B. and Popescu, M-C. 2020. Synthesis and characterization of κ-carrageenan bio-nanocomposite films reinforced with bentonite nanoclay. Int. J. Biol. Macromol. 154: 9-17. | 미소장 |
27 | Maia, F.J.N., Ribeiro, F.W.P., Rangel, J.H.G., Lomonaco, D., Luna, F.M.T., Lima-Neto, P.D. Correia, A.N., and Mazzetto, S.E. 2015. Evaluation of antioxidant action by electrochemical and accelerated oxidation experiments of phenolic com pounds derived from cashew nut shell liquid. Ind. Crops Prod. 67: 281-286. | 미소장 |
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