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Journal : AJARCDE (Asian Journal of Applied Research for Community Development and Empowerment)

Chemical-Physical Characteristics of Edible Film Incorporated Bali Cattle Hide Gelatin and Encapsulated Gaharu Leaf Extract Miwada Sumirtha; Sumadi Ketut; Wrasiati Wrasiati; Sutama Sutama; Tirta Ariana; Bulkaini Bulkaini
AJARCDE (Asian Journal of Applied Research for Community Development and Empowerment) Vol. 7 No. 1 (2023)
Publisher : Asia Pacific Network for Sustainable Agriculture, Food and Energy (SAFE-Network)

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (205.145 KB) | DOI: 10.29165/ajarcde.v7i1.228

Abstract

The objectives of this study were to analyze the potential of incorporating bali cattle hide gelatin and gaharu leaf extract encapsulated as an edible film with antioxidant potential. The research method was using Completely Randomized Design, ie concentration of gaharu leaf extract encapsulated (G0 = 0%, G1 = 5%, G2 = 10%, G3 = 15% and G4 = 20%). The results showed that the characteristics of edible films were significantly different (P <0.05), such as moisture content (7.37%) in G4; protein (86.25%) in G0, phenol (10.84 mg / 100 g GAE) in G4 and antioxidant (150.36 mg / L. GAEAC) in G4, and the effect was not significant on ash content of the film. It film thickness, tensile strength, elongation, and water vapor transmission rate of edible film were significant (P <0.05) influence with results for 0.04 mm (G0); 1.64 Mpa (G0); 54.86% (G1) and 11.20 g.mm/m2.day in G4, respectively. The conclusion of the research is edible film of incorporation of balicattle skin bali gelatin and gaharu leaf extract encapsulated with 20% concentration yielding functional characteristics (potency antioxidant) with the highest value. Indicators of chemical characteristics include moisture content (7.37%); ash content (0.49%); protein content (71,98%); phenol (10.84 mg / 100 g GAE) and antioxidant (150.36 mg / L GAEAC). While physical indicators include film thickness (0.02 mm); tensile strength (1.54 MPa); elongation (71.48%) and water vapor transmission rate (11.20 g.mm/m2.day).
Chemical-Physical Characteristics of Edible Film Incorporated Bali Cattle Hide Gelatin and Encapsulated Gaharu Leaf Extract Miwada Sumirtha; Sumadi Ketut; Wrasiati Wrasiati; Sutama Sutama; Tirta Ariana; Bulkaini Bulkaini
AJARCDE (Asian Journal of Applied Research for Community Development and Empowerment) Vol. 7 No. 1 (2023)
Publisher : Asia Pacific Network for Sustainable Agriculture, Food and Energy (SAFE-Network)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29165/ajarcde.v7i1.228

Abstract

The objectives of this study were to analyze the potential of incorporating bali cattle hide gelatin and gaharu leaf extract encapsulated as an edible film with antioxidant potential. The research method was using Completely Randomized Design, ie concentration of gaharu leaf extract encapsulated (G0 = 0%, G1 = 5%, G2 = 10%, G3 = 15% and G4 = 20%). The results showed that the characteristics of edible films were significantly different (P <0.05), such as moisture content (7.37%) in G4; protein (86.25%) in G0, phenol (10.84 mg / 100 g GAE) in G4 and antioxidant (150.36 mg / L. GAEAC) in G4, and the effect was not significant on ash content of the film. It film thickness, tensile strength, elongation, and water vapor transmission rate of edible film were significant (P <0.05) influence with results for 0.04 mm (G0); 1.64 Mpa (G0); 54.86% (G1) and 11.20 g.mm/m2.day in G4, respectively. The conclusion of the research is edible film of incorporation of balicattle skin bali gelatin and gaharu leaf extract encapsulated with 20% concentration yielding functional characteristics (potency antioxidant) with the highest value. Indicators of chemical characteristics include moisture content (7.37%); ash content (0.49%); protein content (71,98%); phenol (10.84 mg / 100 g GAE) and antioxidant (150.36 mg / L GAEAC). While physical indicators include film thickness (0.02 mm); tensile strength (1.54 MPa); elongation (71.48%) and water vapor transmission rate (11.20 g.mm/m2.day).
Co-Authors A. W. Puger Abasana, I Gusti Ketut Adi Wirawan, I Made Akhyar Sutaryono Anak Agung Putu Putra Wibawa Ariana, Tirta Ashari Astawa I P.A. B. R. T. Putri Baiq Rani Dewi Wulandani BRD. Wulandani Budarsa, I Gde Ketut Sri Budi Indarsih Budiadnyana I G. Bulkaini (Bulkaini) Bulkaini , Bulkaini Bulkaini Bulkaini CANDRADIARTA I P. M. Candradiarta IP.M Dioksa I M. R. Djoko Kisworo Djoko Kisworo Djoko Kisworo Djokowoerjo Sastradipradja Emiliana Mariyah Fahrullah , Fahrullah Febrianti N. G.A.M.K Dewi Galang K. I P. Ginting, Regina Bonifasia Br HARYANTO I Gede Mahardika I Gede Suwindia I Gusti Lanang Oka I Gusti Nyoman Gde Bidura I Kadek Yoga Kertiyasa I Ketut Berata I Ketut Mangku Budiasa I Ketut Sukada I Komang Budaarsa I M. Mudita I M. Suasta I Made Darma Oka I Made Nuriyasa I Made Sajayasa I N. T. ARIANA I Nengah Alit Nuriawan I Nyoman Kutha Ratna I Nyoman Sulabda I Nyoman Sumerta Miwada I NYOMAN SUTARPA SUTAMA I P. A. Astawa I Putu Ari Astawa I W. Wijana I Wayan Ardika I WAYAN WIRAWAN Ida Ayu Okarini Lewis I K. L. Luh Putu Wrasiati Mastur Miwada Sumirtha N. L. G. Sumardani N. S., Yosua Ni Luh Eka Setiasih Ni Luh Putu Sriyani Ni Nyoman Sulastri Ni Wayan Tatik Inggriati NUGRAHA I K. P. P.A. Astawa Paraningtyas, Alya Diasti Permana K. P. Putra, I Putu Aditya Prawira Putri R.O.E. Putu Widya Darmayanti S Siswanto Sangka, I Gde Nyoman Sangka, I Nyoman Gde Saputri, Meidhea Reforma Sri Budarsa, I Gde Ketut Suasta I M. Sugara Yasa, I Wayan Sukabawa, I Wayan Sunaya, I Nengah Suputra Widharma, I Gede Suranjaya I .Gd Sutama Sutama Sutaryono, Yusuf Ahkyar Tirta Ariana Twen O. Dami Dato Utama I A.P.P Utama I P.S.Y Wahid Yulianto Wulandani, Baiq Rani Dewi Yuliyanti N. N.