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Evaluation of the synergies in cogeneration with steel waste gases based on Life Cycle Assessment: A combined coke oven and steelmaking gas case study

机译:基于生命周期评估的钢铁废气热电联产协同效应评估:炼焦炉和炼钢气联合案例研究

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Steel making processes dispose large volumes of waste gases whose potential energy can be transformed into heat and electricity by means of cogeneration. A case study using coke oven and Linz-Donawitz converter gas is presented here. The data is obtained from an existing plant located in Northern Spain. The engines are adapted for its operation with converter gas, and steam is generated in boilers that consume coke gas, converter gas and natural gas in the absence of waste gases. The actual influence on the environmental behaviour of the process is analysed considering the benefits but also the drawbacks derived from the gases low calorific value, toxicity and polluting. The work constitutes the first study in an installation with these characteristics and burning this combination of gases. The functional unit is represented by 1 MWh of thermal energy. The analysis has been developed mainly on the bases of the following sources: site-specific measured or calculated data directly from the process of cogeneration, life-cycle inventory databases and bibliographical information. Operating parameters, as well as production data (thermal and electric energy), emissions of NOx, SO2 and CO2, discharges and wastes associated with this process are exposed. The system boundaries were considered gate to gate, so the results are useful for the integration with other global scenarios. Midpoint and endpoint characterisation factors for humans, ecosystems and resources are given. The main effects are related to Climate change, Ionising radiation, Human toxicity and Fossil and Ozone depletion. The results indicate that the usage of these gases implies an environmental benefit. The operational data belonging to 2014 shows a reduction of more than 100 points in the global impact of the functional unit. In the best scenario, 169.42 Nm(3)/MWh of natural gas may be saved with the consequent reduction in natural resources and ozone depletion. (C) 2019 Elsevier Ltd. All rights reserved.
机译:炼钢工艺处理大量的废气,其潜在的能量可以通过热电联产转化为热能和电能。本文介绍了使用焦炉和林茨-多纳威茨转化器气体的案例研究。数据来自西班牙北部的现有工厂。这些发动机适合在转炉气下运行,并且在锅炉中产生蒸汽,这些锅炉在没有废气的情况下消耗焦炭气,转炉气和天然气。在分析过程中对环境行为的实际影响时,应考虑气体的低热量,低毒性和高污染的优点,同时也要考虑缺点。这项工作构成了具有这些特征并燃烧这种气体组合的装置中的第一项研究。功能单元以1 MWh的热能表示。该分析的主要依据是以下几个方面:直接来自热电联产过程的现场特定测量或计算数据,生命周期清单数据库和书目信息。暴露了操作参数以及生产数据(热能和电能),NOx,SO2和CO2的排放,与此过程相关的排放和废物。系统边界被认为是门对门,因此结果对于与其他全局方案进行集成很有用。给出了人类,生态系统和资源的中点和终点特征因子。主要影响与气候变化,电离辐射,人类毒性以及化石和臭氧消耗有关。结果表明,这些气体的使用暗含环境效益。属于2014年的业务数据表明,该职能部门的全球影响减少了100多点。在最佳情况下,可以节省169.42 Nm(3)/ MWh天然气,从而减少自然资源和消耗臭氧层。 (C)2019 Elsevier Ltd.保留所有权利。

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