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Evaluation of biomass-based production of below zero emission reducing gas for the iron and steel industry

机译:基于生物质的生产低排放减少气体的钢铁工业评价

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摘要

The present paper focuses on the production of a below zero emission reducing gas for use in raw iron production. The biomass-based concept of sorption-enhanced reforming combined with oxyfuel combustion constitutes an additional opportunity for selective separation of CO2. First experimental results from the test plant at TU Wien (100 kW) have been implemented. Based on these results, it could be demonstrated that the biomass-based product gas fulfills all requirements for the use in direct reduction plants and a concept for the commercial-scale use was developed. Additionally, the profitability of the below zero emission reducing gas concept within a techno-economic assessment is investigated. The results of the techno-economic assessment show that the production of biomass-based reducing gas can compete with the conventional natural gas route, if the required oxygen is delivered by an existing air separation unit and the utilization of the separated CO(2)is possible. The production costs of the biomass-based reducing gas are in the range of natural gas-based reducing gas and twice as high as the production of fossil coke in a coke oven plant. The CO(2)footprint of a direct reduction plant fed with biomass-based reducing gas is more than 80% lower compared with the conventional blast furnace route and could be even more if carbon capture and utilization is applied. Therefore, the biomass-based production of reducing gas could definitely make a reasonable contribution to a reduction of fossil CO(2)emissions within the iron and steel sector in Austria.
机译:本文侧重于生产低于零排放减少气体,用于原铁生产。基于生物质的吸附增强改革概念与奥氧燃烧燃烧相结合,构成了有关二氧化碳的选择性分离的额外机会。已经实施了TU WIEN(100 kW)的测试厂的首先实验结果。基于这些结果,可以证明基于生物质的产品气体满足在直接减少工厂中使用的所有要求,并且开发了商业规模使用的概念。此外,调查了在技术经济评估中降低了零排放降低气体概念的盈利能力。技术经济评估结果表明,基于生物质的还原气体可以与传统的天然气路线竞争,如果所需的氧气通过现有的空气分离单元输送和分离的CO(2)的利用是可能的。基于生物质的还原气体的生产成本在天然气的还原气体的范围内,两倍高,因为焦炉厂的化石焦炭的生产两倍。与常规高炉途径相比,饲喂生物质基还原气体的直接减肥厂的CO(2)占用额外减少80%以上,如果施加碳捕获和利用,则可能更加甚至更多。因此,基于生物质的还原气体生产绝对可能对奥地利钢铁部门内的化石CO(2)排放进行了合理贡献。

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