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首页> 外文期刊>Journal of Cleaner Production >Extended TODIM method based on normal wiggly hesitant fuzzy sets for deducing optimal reinforcement condition of agro-waste fibers for green product development
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Extended TODIM method based on normal wiggly hesitant fuzzy sets for deducing optimal reinforcement condition of agro-waste fibers for green product development

机译:基于正常的Wiggly犹豫不决模糊组的扩展Todim方法,用于推导绿色产品开发的农用废纤维最优加固条件

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摘要

Green composites from agro-waste have gained exponential interests within the scientific domain owing to the increasing environmental concerns associated with the burning of crop residue. Such composites are being designed to produce green products (particleboards in the present case) that addresses the challenges confronted by the agricultural sector, meeting the technical, economic and environmental sustainability goals. However, there are challenges associated with the identification of optimum processing parameters to obtain the suitable green composites from agro-waste in accordance with the industrial requirements. The present work therefore aims to investigate the performance of bio-epoxy based composite particleboards derived using various weight percentages of punica-granatum agro waste treated with aqueous solution sodium bicarbonate for different time duration. To achieve the aforementioned objective, a novel decision making framework based on prospect theory has been proposed that makes decision under hesitant fuzzy environment by modeling the experts & rsquo; preferences using Normal Wiggly Hesitant Fuzzy Sets (NWHFS). Proposed decision making framework investigates to identify the optimal set of process parameters (wt% and time duration of chemical treatment) to achieve the best particleboard that meets optimally the technical, environmental and economic requirements. It has been revealed through the application of the proposed decision making framework that the green composite particleboards fabricated with 30% agro-waste and 5 days chemical treatment have the best achievable technical, environmental and economic indicators. The validity, correctness and the robustness of the rankings have been revealed through the sensitivity analysis approach and solving past case studies. The case under consideration has also been solved by other extant fuzzy TODIM approaches. Henceforth, the proposed decision making framework tends to provide the designers a tool to deduce the set of optimum parameters for the green composites from agro-waste that can be employed to explore the possibilities of designing green products and therefore aid in meeting the sustainable goals.(c) 2021 Elsevier Ltd. All rights reserved.
机译:由于与作物残留燃烧的燃烧相关的环境问题,农业废物的绿色复合材料在科学领域获得了指数利益。这种复合材料旨在产生创造绿色产品(本案例中的刨花板),解决农业部门面临的挑战,满足技术,经济和环境可持续性目标。然而,与识别最佳处理参数有关的挑战,以根据工业要求获得来自农业废物的合适的绿色复合材料。因此,目前的作品旨在研究使用用水溶液碳酸氢钠水溶液处理的不同百分比偏碳酸氢钠的Punica-Granatum Agro废物衍生的生物环氧基的复合刨花板的性能。为实现上述目标,提出了一种基于前景理论的新型决策框架,通过模拟专家&rsquo来说,在犹豫不决的环境下做出决定;使用正常的Wiggly犹豫不决的模糊集(NWHFS)的偏好。提出的决策框架调查,以确定最佳的过程参数(化学处理的WT%和时间持续时间),以实现最佳的技术,环境和经济要求的最佳刨花板。通过拟议的决策框架的应用揭示了用30%农业废物和5天化学处理制造的绿色复合刨花板具有最佳可实现的技术,环境和经济指标。通过灵敏度分析方法揭示了排名的有效性,正确性和鲁棒性,并解决了过去的案例研究。所考虑的案件也通过其他现存模糊Todim方法解决了。此后,拟议的决策框架倾向于为设计人员提供一种工具,用于从农业废物中推断出绿色复合材料的最佳参数,这些工具可以用于探索设计绿色产品的可能性,从而有助于满足可持续目标。 (c)2021 elestvier有限公司保留所有权利。

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