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Abiotic depletion due to resource consumption in a steelwork assessed by five different methods

机译:通过五种不同方法评估钢铁资源消耗导致的非生物耗竭

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This paper assesses the relative contribution of the individual resources to abiotic depletion in the production of steel by ArcelorMittal Gent, a major Belgian Steelwork. The contribution of both energetic (natural gas, coke gas, fuel, cokes, anthracite, coal, powdered coal and electricity) and non-energetic resources (iron ore, iron scrap and lime(stone)) to the total abiotic depletion is calculated by the CML-, CExD-, EPS-,Eco-indicator 99- and mass and energy-methods. The results obtained by the five methods are compared. In addition the methods are evaluated taking into account three ISO-14042-based criteria. Some reflections on the applicability are dealt with for the specific case of steel production. According to the applied assessment method, ArcelorMittal should, in order to reduce abiotic depletion, either mainly focus on further improving energy efficiency (CML), further improve material efficiency (EPS) or focus on both energy and material efficiency improvement (Eco-indicator 99, CExD). For the EPS- and Eco-indicator 99-method the conclusion is based on events in the (far) future without consideration of technological improvements and therefore does not seem realistic for the actual steel production process.
机译:本文评估了比利时主要钢厂ArcelorMittal Gent在钢铁生产中个体资源对非生物消耗的相对贡献。高能(天然气,焦炭气,燃料,焦炭,无烟煤,煤炭,粉煤和电力)和非高能资源(铁矿石,铁屑和石灰(石))对非生物耗竭总量的贡献可通过下式计算: CML,CExD,EPS,生态指标99以及质量和能量方法。比较了通过五种方法获得的结果。另外,在评估方法时要考虑到三个基于ISO-14042的标准。针对钢铁生产的特定情况,对适用性进行了一些思考。根据应用的评估方法,安赛乐米塔尔为了减少非生物消耗,应主要集中于进一步提高能源效率(CML),进一步提高材料效率(EPS)或集中精力提高能源和材料效率(环保指标99 ,CExD)。对于EPS和Eco指标99的方法,结论是基于(远)将来发生的事件而未考虑技术改进的,因此对于实际的钢铁生产过程而言似乎并不现实。

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