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Reduction in blast furnace operational costs through optimisation of auxiliary systems

机译:通过优化辅助系统降低高炉运行成本

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The process of steel making is very energy intensive. Across the world, steel plants are investigating ways to reduce energy cost. Although there are different approaches to energy management in the global steel sector, this study focusses on the South African steel industry, which is ranked the 25th largest producer within the global steel industry. The South African steel industry has experienced a number of challenges over the past few years, including, but not limited to, higher cost of energy. In order to continue producing competitively, energy cost saving measures are needed. The blast furnace is complex, but an important component of steel making. However, it has the highest energy intensity of all the integrated steel making processes. Previous blast furnace studies investigated the possibility of doing a load shift on a blast furnace cold blast system. It was found that due to the risks involved it was not possible. This study will focus on the optimisation of auxiliary systems of the blast furnace. In a case study, successful energy saving strategies were implemented on the cooling system and Pulverised coal injection plant. The total energy cost savings achieved was in excess of R750 000.
机译:钢制造过程非常能密集。全世界,钢铁厂正在调查降低能源成本的方法。虽然全球钢铁部门有不同的能源管理方法,但这项研究侧重于南非钢铁行业,占南非钢铁行业,该行业排名第二 th 全球钢铁行业中最大的生产国。南非钢铁行业在过去几年中经历了许多挑战,包括但不限于更高的能量成本。为了继续生产竞争力,需要节能措施。高炉很复杂,但钢制造的重要组成部分。然而,它具有所有集成钢制造工艺的最高能量强度。以前的高炉研究调查了在高炉冷爆系统上进行负荷转移的可能性。结果发现,由于涉及的风险是不可能的。本研究将专注于高炉辅助系统的优化。在一个案例研究中,在冷却系统和粉煤液注射厂实施了成功的节能策略。实现的总能源成本节约超过R750 000。

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