首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Parametric optimization and kinetic elucidation of degradation of starch blended LDPE films through central composite design approach towards application in packaging
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Parametric optimization and kinetic elucidation of degradation of starch blended LDPE films through central composite design approach towards application in packaging

机译:通过中央复合设计方法在包装中展望淀粉混合LDPE薄膜降解的参数优化和动力学阐明

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摘要

The present investigation emphasizes on the parametric optimization of degradation of starch blended LDPE films towards the development of an optimum composition for its utilization as a biodegradable packaging film. The individual effect of the essential parameters influencing the degradability determined by loss in weight and loss in tensile and tear strength were reported. Optimization of the process parameters was done using Central Composite Design approach of Response Surface Methodology. ANOVA (Analysis of variance) study suggested that the obtained equation for the degradation of the films is quadratic in nature and is significant for the process. The produced films were extensively characterized by SEM, XRD and EDAX analysis. The addition of starch by 60% in the matrix reduces the tensile strength from 13.25 MPa to 3.82 MPa and MFI and tear strength to a value of 0.3 g/10 min and 59.62 N/mm respectively, however the Young's modulus and stiffness increased to 469.37 MPa and 33851.78 N/m respectively. The degradation rate constant (k) calculated in both garden soil and vegetable waste increased as starch content increased. Thus the obtained kinetics and optimized conditions suggests the optimum content of the biofiller needed for superior mechanical properties with enhanced biodegradation. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:本研究强调了淀粉混合LDPE薄膜降解的参数优化,朝向其利用作为可生物降解包装膜的最佳组合物的开发。报道了影响降解性的基本参数的个性效果,通过重量损失和拉伸强度的损失损失确定。使用响应表面方法的中央复合设计方法完成工艺参数的优化。 ANOVA(方差分析)研究表明,所获得的薄膜降解的等式本质上是二次的,并且对于该过程具有重要意义。通过SEM,XRD和EDAX分析广泛地表征生产的薄膜。在基质中加入60%的淀粉将拉伸强度降低到13.25MPa至3.82MPa和MFI的拉伸强度,分别为0.3g / 10min的值和59.62n / mm,然而杨氏模量和刚度增加到469.37 MPA和33851.78 n / m。随着淀粉含量的增加,园林土壤和蔬菜废物中计算的降解速率常数(k)增加。因此,所获得的动力学和优化条件表明,具有增强的生物降解的优异机械性能所需的生物渗漏所需的最佳含量。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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