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Reduction of Energy Consumption and GHGs Emission in Conventional Sand Casting Process by Application of a New CRIMSON Process

机译:通过采用新的CRIMSON工艺减少常规砂型铸造工艺中的能耗和温室气体排放

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摘要

In conventional foundry, engineers generally consider the quality of casting part as the most essential issue and regard the energy consumption and Green House Gas (GHGs) emission as the auxiliary ones. This usually causes large amount of energy consumption as a result of the inefficient casting processes used and increases the production costs and environmental pollution. This paper presents the new CRIMSON process where its facility and melting process were compared with conventional melt furnaces and aluminium alloy melting process. An actual case was investigated to reveal quantitatively how the conventional foundry wastes energy and increases GHGs emission, and what the improvement of energy efficiency and the GHGs emission reduction can be achieved using the new CRIMSON process. The results of this investigation will help the foundry engineer recognize the importance of energy saving and environmental protection and show how to utilise this new process to reduce production costs and carbon footprint without decreasing the quality of the cast part.
机译:在传统的铸造厂中,工程师通常将铸件的质量视为最重要的问题,并将能耗和温室气体(GHG)排放视为辅助问题。由于使用的铸造工艺效率低下,这通常会导致大量能源消耗,并增加生产成本和环境污染。本文介绍了一种新的CRIMSON工艺,将其设施和熔化工艺与传统的熔炉和铝合金熔化工艺进行了比较。调查了一个实际案例,定量地揭示了传统铸造厂如何浪费能源并增加温室气体排放,以及使用新的CRIMSON工艺可以实现哪些能源效率的提高和温室气体排放的减少。这项调查的结果将帮助铸造工程师认识到节能和环境保护的重要性,并展示如何利用这一新工艺来降低生产成本和碳足迹,而又不降低铸件的质量。

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