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A Study on Energy Consumption and CO_2 Emissions according to Manufacture of Recycled Rebar using Wasted Steel from Building Demolition

机译:使用浪费钢从建筑拆除的储存钢筋制造的能耗和CO_2排放研究

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In recent year, Korea relies on imports for most of the iron ore, the main raw material of rebar, resulting in CO_2 pollution with lots of energy consumption. Hereupon, this study carried out the research on the energy consumption and CO_2 emissions of the recycled rebar using the wasted steel from building demolition. For that, this study worked out the energy consumption and CO_2 emissions in the process of generation, transportation and production of wasted steel and, on the basis of which, it conducted the comparative study with virgin materials. The major research results are as follows: First, the energy consumption and CO_2 emissions of the recycled rebar were found to be highest in the process of its production at 89.2% and 85%, respectively. In addition, in the comparison between recycled rebar and virgin material, the former was found to be most advantageous in energy consumption. On the contrary, as for CO_2 emissions, the recycled rebar showed a 88.3% reduction possibility of greenhouse gas (GHG) emissions comparing to statistics of input-output analysis based on competition inducement coefficient, but it was found to be more disadvantageous from the perspective of GHG reduction than the statistics of input-output analysis based on non-competition inducement coefficient.
机译:近年来,韩国依靠进口到大部分铁矿石,钢筋主要原材料,导致CO_2污染与大量的能耗。此,本研究开展了使用浪费的钢铁建筑拆迁的再生钢筋的能耗和CO_2排放研究。为此,本研究制定了浪费钢铁工艺,运输和生产过程中的能耗和CO_2排放,并在其基础上进行了与原始材料进行的比较研究。主要的研究结果如下:首先,发现再生钢筋的能量消耗和CO_2排放在其产量下,分别为89.2%和85%。此外,在再生钢筋和原始材料之间的比较中,前者被发现是最有利的能耗。相反,对于CO_2排放来说,再生钢筋显示,根据竞争诱导系数的投入输出分析统计,对温室气体(GHG)排放的可能性降低了88.3%的可能性,但发现它从角度来看是更不利的基于非竞争诱导系数的投入输出分析统计的GHG减少。

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