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Analysis of Water Consumption Intensity for Steel Production in China

机译:中国钢铁生产水消耗强度分析

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The water consumption intensity of steel production through BF-BOF technology was decomposed by an innovative process-based water-accounting model, i.e., water-balance model. One ton of steel product was chosen to be the functional unit. The system boundary of the case study included the production processes of coking, sintering, iron making, steel making, continuous casting and rolling. The results showed that the water consumption intensity of steel production was 3.969t/t in this case. The water consumption of evaporation, solidification and wastewater were 2.373t, 0.013t and 1.583t, accounting for 59.79%, 0.33% and 39.88% of the total water consumption, respectively. Steel rolling is the largest contributor to water consumption, and the amount of water consumption is 1.523t, accounting for 38.37% of the total water consumption; followed by coking process and continuous casting process, the amounts of which are 0.814t (20.50%) and 0.634t (15.97%), respectively. This finding can push the utilization of advanced technologies to save water resource in steel industry.
机译:通过BF-BOF技术的钢铁产量的耗水强度由基于创新的基于过程的水核算模型分解,即水平模型。选择一吨钢产品是功能单元。案例研究的系统边界包括焦化,烧结,铁制造,钢制造,连续铸造和轧制的生产过程。结果表明,在这种情况下,钢铁产量的水消耗强度为3.969t / t。蒸发,凝固和废水的用水量为2.373T,0.013T和1.583T,分别占总耗水量的59.79%,0.33%和39.88%。钢轧是耗水量最大的因素,水消耗量为1.523T,占总用水量的38.37%;其次是焦化过程和连续铸造过程,其量分别为0.814t(20.50%)和0.634t(15.97%)。这一发现可以推动利用先进技术,以节省钢铁行业的水资源。

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