Mahajan Aditi, Singh Inderdeep, Arora Navneet
Mechanical and Industrial Engineering Department, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand 247667 India.
Environ Dev Sustain. 2023 Mar 6:1-22. doi: 10.1007/s10668-023-03052-z.
Manifold aspects, such as the booming market for superior quality food items with increased shelf life and the escalating concern to mitigate plastic trash due to plastic packaging have motivated researchers and food industrialists to explore sustainable eco-friendly packaging solutions extensively. Biodegradable polymers are being rigorously investigated to replace conventional plastics that are toxic, non-biodegradable, and detrimental to the marine ecosystem. The scientific methodology for the prudent selection of biodegradable polymer among the frequently used biopolymers for food packaging is being reported here. The data were extracted from the available literature. A hybrid multi-criteria decision-making framework has been developed to address the problem of material selection owing to the multiple conflicting criteria involved. Assignment of equal weights to primary criteria was selected to establish the criteria weights. Different decision-making techniques (weighted sum method (WSM), weighted product method (WPM), weighted aggregated sum product assessment method (WASPAS), and technique for order of preference by similarity to ideal solution (TOPSIS)) were used for the comparative analysis. Thereon, the different ranks obtained for each alternative were aggregated using the degree of membership technique. The robustness of the solution was checked using sensitivity analysis which was conducted by varying weights of importance using the entropy method, the CRITIC method, and the equal weights to secondary criteria. The analysis reported polylactic acid (PLA) as the most reliable polymer for food packaging applications. The sensitivity analysis concluded that the solution was without prejudice, and water vapor permeation rating was the most critical decision criterion in deciding the optimal polymer.
多方面的因素,比如优质食品市场的蓬勃发展以及食品保质期的延长,还有因塑料包装导致的对减少塑料垃圾的日益关注,促使研究人员和食品工业家广泛探索可持续的环保包装解决方案。目前正在对可生物降解聚合物进行深入研究,以取代那些有毒、不可生物降解且对海洋生态系统有害的传统塑料。本文报道了在食品包装常用生物聚合物中谨慎选择可生物降解聚合物的科学方法。数据从现有文献中提取。由于涉及多个相互冲突的标准,已开发出一种混合多标准决策框架来解决材料选择问题。选择对主要标准赋予相等权重来确定标准权重。使用不同的决策技术(加权和法(WSM)、加权积法(WPM)、加权聚合和积评估法(WASPAS)以及与理想解相似性排序技术(TOPSIS))进行比较分析。在此基础上,使用隶属度技术汇总每个备选方案获得的不同排名。通过使用熵方法、CRITIC方法以及对次要标准赋予相等权重来改变重要性权重,进行敏感性分析,以检验解决方案的稳健性。分析报告聚乳酸(PLA)是食品包装应用中最可靠的聚合物。敏感性分析得出该解决方案是无偏见的,并且水蒸气透过率等级是决定最佳聚合物时最关键的决策标准。