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Optimizing Location of Bulk Metallic Minerals Processing Based on Greenhouse Gas Avoidance

机译:基于避免温室气体的大宗金属矿物加工位置的优化

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The bulk minerals iron ore and bauxite cause significant greenhouse emissions in their processing to steel and aluminum respectively. The level of these emissions is highly dependent on the source of electrical and thermal energy. However, they also cause significant greenhouse gas emissions from their transportation across the globe for processing. This study examines these minerals from the perspective of greenhouse gas avoidance, examining the location of processing as an option for reducing transportation-based and process-based emissions. The analysis proposes a “radius of reduction” to define the potential for transporting ore to reduce emissions by offshore processing. Overall scenarios for localized steel production indicate potential for 85% reduction of transport emissions in the steel industry and 14% of overall industry emissions. Local high-carbon electricity grids and inefficient production mean that the benefit of reduced transportation is partially counteracted by increased processing emissions. The transportation of all global bauxite to Norway and other nations with low-emissions electricity for production of aluminum could result in an overall reduction of industry emissions of up to 44%.
机译:大量矿物铁矿石和铝土矿在加工过程中分别向钢和铝造成大量温室气体排放。这些排放的水平高度取决于电能和热能的来源。但是,它们也会因在全球范围内运输进行加工而导致大量温室气体排放。这项研究从避免温室气体的角度研究了这些矿物,并研究了加工的位置,以减少基于运输和基于过程的排放。该分析提出了“减少半径”,以定义运输矿石以减少近海加工产生的排放的潜力。本地化钢铁生产的总体方案表明,钢铁行业的运输排放量有望减少85%,占整个行业排放量的14%。当地的高碳电网和生产效率低下,意味着运输减少所带来的收益在一定程度上被加工排放量的增加所抵消。将所有全球​​铝土矿运输到挪威和其他低排放电力的国家生产铝,可以使行业排放总体减少多达44%。

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