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Using a glass-fibre reinforced polymer composite in the production of sustainable water storage vessels

机译:在可持续的储水容器生产中使用玻璃纤维增​​强的聚合物复合材料

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摘要

The quest for sustainability by rethinking materials, products and production strategies is an enormous challenge currently laid upon the economic sector. Materials selection plays a critical role in this challenge. The present work describes a technological, environmental and economic study of the production of a water storage glass-fibre reinforced composite vessel. The vessel was evaluated via a Life Cycle Assessment/Life Cycle Costing (LCA/LCC) integrated model. The most significant life cycle phase was found to be the raw materials production, in which the Fossil fuels, Respiratory inorganics and Climate change were the relevant impact categories. The vessel environmental and economic performances could be improved if an end of life (EoL) option different from landfill had been chosen. The present work describes a new integrated way of analysing the environmental and economic performances of a structural product full life cycle. It also highlights the role and importance of fibre reinforced polymer composites in the quest for sustainable products.
机译:通过重新思考材料,产品和生产策略来寻求可持续性是当前经济部门面临的巨大挑战。材料选择在这一挑战中起着至关重要的作用。本工作描述了储水玻璃纤维增​​强复合材料容器生产的技术,环境和经济研究。通过生命周期评估/生命周期成本(LCA / LCC)集成模型对船舶进行了评估。发现生命周期中最重要的阶段是原材料生产,其中化石燃料,呼吸性无机物和气候变化是相关的影响类别。如果选择了与垃圾填埋场不同的寿命终止(EoL)选项,则可以改善船舶的环境和经济绩效。本工作描述了一种分析结构产品整个生命周期的环境和经济绩效的新的集成方式。它还强调了纤维增强聚合物复合材料在寻求可持续产品中的作用和重要性。

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