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Development And Environmental Improvements Of Plastics For Hydrophilic Catheters In Medical Care: An Environmental Evaluation

机译:医疗用亲水性导管塑料的开发和环境改进:一项环境评估

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Single-use medical devices have been under close scrutiny for several years, especially the choice of plastic materials. Many different requirements such as medical safety, treatment functionality and efficiency, environmental performance, etc. have to be fulfilled. Today, the most commonly used materials for hydrophilic urinary catheters are polyvinylchloride (PVC) and thermoplastic polyurethane (TPU). In this research study, these two materials' environmental performance was evaluated. In light of the knowledge gained in that study a new plastic material for use in urinary catheters was developed. The aim of the development of this new material was to design a high performance material with superior environmental performance. The newly developed plastic material is a polyolefin-based elastomer. The ecological environmental performance of the new material was evaluated and compared to the existing plastic materials. The study focused exclusively on the choice of plastic materials and their ecological environmental performance. The analysis has been performed using a system perspective and a life cycle assessment (LCA) methodology. The functional unit has been set to the treatment of one patient during one year. The results from the LCA models have been presented both in terms of direct inventory data, such as energy use and formed emissions, and in terms of the results from four different impact assessment methods. Analysis of the results based on direct inventory data, i.e. common inventory results such as energy resource uses and emissions of CO_2, NO_x and SO_2 show an overall better environmental performance for the new polyolefin-based elastomer compared to the existing PVC and TPU plastic materials. The normalization and weighting steps in the analyzes have indicated the importance of energy resource uses and global warming as indicator for the environmental performance even if other impact categories also can play a role. In the environmental impact assessment, the polyolefin-based elastomer showed a clearly better environmental performance than the TPU material. Compared to PVC plastic material the new polyolefin-based elastomer showed an almost equivalent environmental performance. This can be mainly explained by the different materials' energy use. The new material has thus also shown to be an environmentally good alternative to PVC if a PVC-free material is requested. Basing the plastic formula, on simple bulk plastics with low energy use in the production of single-use medical devices, has been shown to be a successful method of producing high quality products with superior environmental performance.
机译:一次性医疗器械已经受到严格审查,尤其是塑料材料的选择。必须满足许多不同的要求,例如医疗安全性,治疗功能和效率,环境性能等。如今,用于亲水性导尿管的最常用材料是聚氯乙烯(PVC)和热塑性聚氨酯(TPU)。在本研究中,对这两种材料的环境性能进行了评估。根据在该研究中获得的知识,开发了一种用于导尿管的新型塑料。开发这种新材料的目的是设计一种具有优异环保性能的高性能材料。新开发的塑料是基于聚烯烃的弹性体。对新材料的生态环境性能进行了评估,并与现有的塑料材料进行了比较。该研究专门针对塑料材料的选择及其生态环境性能。使用系统角度和生命周期评估(LCA)方法进行了分析。该功能单元已设置为在一年内治疗一名患者。 LCA模型的结果既以直接清单数据(例如能源使用和形成的排放量)形式,又以四种不同影响评估方法的结果形式呈现。基于直接库存数据进行的结果分析,即能源资源使用和CO_2,NO_x和SO_2排放等常规库存结果显示,与现有的PVC和TPU塑料材料相比,新型聚烯烃基弹性体的总体环保性能更高。分析中的归一化和加权步骤表明,即使其他影响类别也可以发挥作用,能源使用和全球变暖作为环境绩效指标的重要性。在环境影响评估中,聚烯烃基弹性体比TPU材料表现出明显更好的环境性能。与PVC塑料材料相比,新型聚烯烃基弹性体具有几乎相同的环保性能。这主要可以通过不同材料的能源使用来解释。因此,如果要求使用不含PVC的材料,那么这种新材料也可以证明是PVC的环保替代品。在一次性医疗器械的生产中,以塑料配方为基础,以低能耗的简单大块塑料为基础,已被证明是生产具有优异环保性能的高质量产品的成功方法。

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