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首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Lifecycle Assessment of Steel Rebar Production with Induction Melting Furnace: Case Study in Turkey
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Lifecycle Assessment of Steel Rebar Production with Induction Melting Furnace: Case Study in Turkey

机译:感应熔炼炉生产钢筋的生命周期评估:土耳其的案例研究

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摘要

Abstract>This paper demonstrates the utilization of the lifecycle assessment (LCA) methodology to determine the environmental burdens of steel rebar production with induction melting furnace technology. The data were obtained from an existing steel plant. The functional unit was selected as 1 t of steel rebar production. System boundaries were studied as cradle to gate. The lifecycle impact assessment analyses were considered in 11 impact categories. Analyses results summarized that the global warming potential of steel rebar production is approximately720  kgCO2eq/tproduct. Electricity consumption was the major impact with effects on greenhouse gas emissions, fossil fuels–based abiotic depletion, ozone layer depletion, human toxicity, freshwater toxicity, marine aquatic ecotoxicity, terrestrial ecotoxicity, photochemical oxidation, acidification, and eutrophication. Most of the impacts of steel rebar have resulted from steel billet because the steel billet is a semifinished product of steel rebar production.
机译: 摘要 >本文演示了生命周期评估(LCA)方法在确定感应加热钢筋生产的环境负担中的应用熔炉技术。数据来自现有的钢铁厂。功能单元被选为1吨钢筋。研究了系统边界,从摇篮到大门。在11个影响类别中考虑了生命周期影响评估分析。分析结果总结出,钢筋生产的全球变暖潜力约为 720 kg CO 2 eq / t < / mml:mrow> 产品。电力消耗是对温室气体排放,基于化石燃料的非生物消耗,臭氧层消耗,人类毒性,淡水毒性,海洋水生生态毒性,陆地生态毒性,光化学氧化,酸化和富营养化影响的主要影响。钢筋的大部分影响都来自钢坯,因为钢坯是钢坯生产的半成品。

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