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The Comparison Study On The Operating Condition Of Gasification Power Plantwith Various Feedstocks

机译:各种原料气化电厂运行条件的比较研究

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Gasification technology, which converts fossil fuels into either combustible gas or synthesis gas (syngas) for subsequent utilization, offers the potential of both clean power and chemicals. Especially, IGCC is recognized as next power generation technology which can replace conventional coal power plants in the near future, ft produces not only power but also chemical energy sources such as H_2, DME and other chemicals with simultaneous reduction of CO,. This study is focused on the determination of operating conditions for a 300 MW scale IGCC plant with various feedstocks through ASPEN plus simulator. The input materials of gasification are chosen as 4 representative cases of pulverized dry coal (Ulinois#6), coal water slurry, bunker-C and naphtha. The gasifier model reflects on the reactivity among the components of syngas in the gasification process through the comparison of syngas composition from a real gasifier. For evaluating the performance of a gasification plant from developed models, simulation results were compared with a real commercial plant through approximation of relative error between real operating data and simulation results. The results were then checked for operating characteristics of each unit process such as gasification, ash removal, acid gas (CO_2, H_2S) removal and power islands. To evaluate the performance of the developed model, evaluated parameters are chosen as cold gas efficiency and carbon conversion for the gasifier, power output and efficiency of combined cycle. According to simulation results, pulverized dry coal which has 40.93% of plant net efficiency has relatively superiority over the other cases such as 33.45% of coal water slurry, 35.43% of bunker-C and 30.81% of naphtha for generating power in the range of equivalent 300 MW.
机译:气化技术可将化石燃料转化为可燃气体或合成气(合成气)以供后续利用,它具有清洁能源和化学品的潜力。尤其是,IGCC被公认为是下一代发电技术,可以在不久的将来取代传统的燃煤发电厂,不仅可以发电,还可以生产化学能源,例如H_2,DME和其他化学物质,同时减少CO。这项研究的重点是通过ASPEN plus模拟器确定具有各种原料的300兆瓦规模IGCC电厂的运行条件。气化的输入材料选择为4种代表性的粉状干煤(Ulinois#6),水煤浆,Bunker-C和石脑油。气化炉模型通过比较真实气化炉中合成气的组成,反映了气化过程中合成气各组分之间的反应性。为了从已开发的模型评估气化厂的性能,通过逼近实际运行数据与模拟结果之间的相对误差,将模拟结果与实际的商业工厂进行了比较。然后检查结果的每个单元过程的操作特性,例如气化,除灰,去除酸性气体(CO_2,H_2S)和功率岛。为了评估开发模型的性能,选择评估参数作为气化炉的冷气效率和碳转化率,功率输出和联合循环效率。根据模拟结果,粉煤干净效率为40.93%的煤粉在其他情况下具有相对优势,如33.45%的煤水浆,35.43%的煤ker石和30.81%的石脑油可在相当于300兆瓦

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