高炉煤气洗涤水处理的综合优化,再利用和成本节约,第一部分:方法方法

M. Saiepour, Kokil Jain, Yuhang Lou
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摘要

在一个旨在提高炼钢厂资源效率和环境可持续性的欧洲合作研究项目中,模拟应用于评价高炉煤气洗涤厂水的回收、再利用和处理的综合解决办法。炼钢厂高炉煤气洗涤过程是用水大户,也是造成水污染的重要因素。两篇系列论文描述了在塔塔钢铁高炉厂(英国)与过程集成有限公司(英国)合作进行的研究,以模拟和模拟过程集成选项,以改善水质,通过再利用增加水资源保护,最大限度地提高能源效率,降低处理和运营成本。本文构成了第一部分,介绍了该系统,并描述了本研究中所考虑的潜在问题和机会。它还提供了一个方法框架,并定义了研究的基本案例。然后讨论了循环再用分析(不加处理)的模拟结果,并得出结论,为了实现所述目标,某种形式的处理是必不可少的。在这方面,反渗透和磁过滤处理被认为是合适的选择。本文第二部分讨论了它们的现场试验和各种再生-再利用方案的后续分析及其技术经济评价。
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Integrated optimisation of blast furnace gas wash water treatment, reuse and cost savings Part I: Methodological approach
Within a European collaborative research project aimed at improving resource efficiency and environmental sustainability in steelmaking plants, simulations have been applied to evaluate integrated solutions for water recycling, reuse and treatment at a blast furnace gas wash plant. The blast furnace gas washing process, in steelworks, is a major water consumer and significant contributor to water pollution. A two paper series describes the research undertaken at a Tata Steel blast furnace plant (UK) in collaboration with Process Integration Limited (UK) to model and simulate process integration options for improving water quality, increasing water conservation by reuse, maximising energy efficiency and reducing treatment and operating costs. This paper constitutes the first part which introduces the system and describes the underlying issues and opportunities that have been considered in this study. It also provides a methodological framework and defines the base case for the study. Thereafter simulation results for recycle-reuse analysis (without treatment) are discussed and it has been concluded that some form of treatment is essential in order to achieve the stated objectives. Reverse osmosis and magnetic filtration treatment are identified as the suitable options in this regard. Their field trials and subsequent analysis of various regeneration-reuse scenarios and their techno-economic evaluation have been discussed in the second part of the paper.
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