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Direct Transformation of Muskmelon Seeds Meal into Biodegradable Films and Their Characterization

机译:直接将麝香种子用餐进入可生物降解的薄膜及其表征

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摘要

Work was planned to develop and characterize packaging films using ultrasound treated muskmelon seed meal. Nine films were prepared by treating solution of muskmelon seed meal with varying ultrasound treatment time and power. The films were designated as A (30min, 100W), B (30min, 150W), C (30min, 200W), D (45min, 100W), E (45min, 150W), F (45min, 200W), G (60min, 100W), H (60min, 150W) and I (60min, 200W) and a control film was prepared without ultrasound treatment, keeping the ratio of muskmelon seeds meal and water a constant of 6g/100ml. Mechanical properties, barrier properties and optical properties were analyzed for all the films. Tensile strength was found the highest 1134.70kPa in film I and elongation of 18.86% in film C. The water vapor permeability was found to be the lowest in film A (30min, 100W). Both ultrasound treatment time and power significantly affects the properties of the developed films.[GRAPHICS].
机译:计划使用超声处理的Muskmelon种子膳食开发和表征包装薄膜。通过对不同超声处理时间和功率进行不同的超声处理时间和功率来治疗麝摩洛种子膳食的溶液来制备九部电影。将薄膜指定为(30min,100w),b(30min,150w),c(30min,200w),d(45min,100w),e(45min,150w),f(45min,200w),g(60min在没有超声处理的情况下制备100W),H(60min,150W)和I(60min,200W)和对照膜,保持Muskmelon种子膳食的比例和水的常数为6g / 100ml。针对所有薄膜分析机械性能,阻隔性能和光学性质。在薄膜I中发现拉伸强度最高1134.70kPa,薄膜C中的伸长率为18.86%。发现水蒸气渗透率是薄膜a(30min,100w)中最低的水蒸气渗透性。超声处理时间和功率均显着影响开发薄膜的性质。[图形]。

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