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Reduction in GHG Emission of Steel Production by Direct Injection of Renewable Biocarbon

机译:通过直接注射可再生生物碳的钢铁生产GHG发射

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Substitution of pulverized coal injection by solid biocarbon fuel has the potential to achieve substantial reduction in GHG emissions associated with blast furnace ironmaking. A systematic evaluation was conducted on the performance of solid bio-carbons produced from a single raw biomass source using different pyrolysis technologies. The potential of solid biocarbon in reducing GHG emission of the blast furnace ironmaking process is strongly influenced by its O/C mass ratio. In order to achieve substantial GHG reduction, it is necessary to replace coal injection by solid biocarbon having a low O/C mass ratio. The pyrolysis technology and conditions employed are key parameters influencing O/C mass ratio of the resultant solid biocarbon. Close collaboration between steelmakers and solid biocarbon producers is critical for producing suitable solid biocarbon fuel to replace pulverized coal injection. A successful partnership should pave the way in achieving substantial reduction in GHG emissions of the blast furnace ironmaking process.
机译:通过固体生物碳燃料取代粉煤喷射有可能在与高炉炼铁相关相关的温室气体排放的可能性。对使用不同热解技术的单根原料生物量来源生产的固体生物碳的性能进行了系统评价。固体生物碳的潜力在降低高炉炼铁过程的温室气体发射时受其O / C质量比的影响强烈影响。为了实现大幅度的温室气体,需要通过具有低O / C质量比的固体生物碳来替换煤注射。采用的热解技术和条件是影响所得固体生物碳酸钴的关键参数。钢制造商和实心生物碳生产者之间的密切合作对于生产合适的固体生物碳燃料至关重要,以更换粉煤液注射。成功的伙伴关系应该铺平了实现高炉炼铁工艺温室气体排放量的大幅减少。

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