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首页> 外文期刊>International Journal of Engineering Materials and Manufacture >Gate-to-Gate Life Cycle Assessment for Determining Carbon Footprint of Catalytic Converter Assembly Process
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Gate-to-Gate Life Cycle Assessment for Determining Carbon Footprint of Catalytic Converter Assembly Process

机译:门到门生命周期评估,以确定催化转化器组装过程的碳足迹

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With the pursuit of embracing the circular economy, having upward trend in vehicle sales and environmental concern, sustainability has become an imperative part of the global automotive manufacturing strategies. One of the tactics to achieve this sustainable goal is to conserve and enhance the resource base by salvaging the embedded values from end-of-life product and for which, the remanufacturing can be considered as one of the most prominent epitome. Even though many of the auto parts like engine, transmissions, starters, alternators and etc. have been assessed for remanufacturability since last few decades, being a major component of a car body the Catalytic Converter (CC) still remains unfocused in literature. However, to examine the remanufacturability of CC, a comprehensive study for assessing its economic, social, and environmental impact is inevitable. Therefore, with an underlying aim of designing the remanufacturable CC, in this endeavour an attempt has made to evaluate the environmental impact of its welding operations by means of energy consumption through gate-to-gate life cycle assessment. Real life data are collected from a Local Malaysian CC manufacturer. The obtained results show that the welding section has a carbon footprint of 0.203 kgCO2e/unit with major emission coming from the plasma arc welding. In addition to that, it is also observed that the value of carbon footprint is not only sensitive to the emission factor and processing time, but also it is responsive to the nature of the processing operations. Certainly, this observation will motivate to change the product design from the prospect of remanufacturing.
机译:随着对循环经济的追求,汽车销售和环境问题的上升趋势,可持续性已成为全球汽车制造战略中不可或缺的一部分。实现此可持续目标的策略之一是,通过挽救报废产品的内在价值来保护和增强资源基础,为此,再制造可被视为最突出的缩影之一。尽管自从过去的几十年以来,已经对许多汽车零部件(例如发动机,变速器,起动机,交流发电机等)进行了再制造性评估,但作为汽车主体的主要组成部分,催化转化器(CC)仍然没有集中在文献中。但是,要检查CC的可再制造性,不可避免的是要进行全面的评估以评估其经济,社会和环境影响。因此,为了设计可再制造的CC的基本目标,在这一努力中,已尝试通过门到门寿命周期评估来通过能耗来评估其焊接操作的环境影响。实际数据是从马来西亚当地CC生产商处收集的。所得结果表明,焊接部分的碳足迹为0.203 kgCO2e /单位,主要排放源于等离子弧焊。除此之外,还观察到碳足迹的值不仅对排放因子和处理时间敏感,而且对处理操作的性质也有响应。当然,这种观察将促使从再制造的前景改变产品设计。

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