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Combined power and hydrogen production from coal. Part B: Comparison between the IGHP and CPH systems

机译:煤炭发电和制氢相结合。 B部分:IGHP和CPH系统之间的比较

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Currently, plants for hydrogen production from coal are based on IGCC (Integrated Gasification Combined Cycle) technologies with CO_2 capture and electrical power is also produced by using the purge gas coming from the hydrogen separation unit as fuel in a gas turbine combined cycle. The combined power and hydrogen systems (CPH systems), investigated and analysed in this two-part paper, have been designed to co-generate electrical power already within the gasification island by a steam power section in which the losses due to the steam condensation are reduced because the steam needed for the gasification is bled, at the gasifier operating pressure, from the expansion line. In this Part B, a sensitivity analysis of CPH systems has been carried out, varying two operating parameters: the steam to carbon ratio at the gasifier, S/C, and the gasification pressure. Therefore, the performances of the CPH plants have been evaluated and the plant configurations have been compared by using new parameters, the apparent and marginal efficiencies. Results show that, in the pressurized configurations, even if less hydrogen is produced with respect to the IGHP (Integrated Gasifier for Hydrogen Production) reference plant, defined in the Part A (~21.6 vs. 23.1 MW_(HHV)). electrical power is generated with efficiencies higher than both the conversion efficiency of hydrogen in a fuel cell system (for CPH,70 the apparent efficiency, referred to the higher heating value, is 92.6%) and the conversion efficiency of coal in an IGCC (for CPH,70 the marginal efficiency, referred to the HHV, is 81.9%). The hydrogen production efficiency is 67.5% (HHV) and the cogeneration ratio reaches a value of 10.2%.
机译:当前,用于由煤生产氢气的工厂基于具有CO_2捕集的IGCC(整体气化联合循环)技术,并且还通过使用来自氢气分离单元的吹扫气作为燃气轮机联合循环中的燃料来生产电力。在此分为两部分的文章中进行了研究和分析的联合动力和氢气系统(CPH系统)的设计目的是通过蒸汽动力部分在气化岛内已经共产生电力,其中蒸汽冷凝产生的损失为由于气化器所需的蒸汽在气化器的工作压力下从膨胀管线排出,因此减少了气化率。在此B部分中,已经对CPH系统进行了灵敏度分析,改变了两个操作参数:气化炉的蒸汽碳比,S / C和气化压力。因此,已经通过使用新参数,表观效率和边际效率对CPH设备的性能进行了评估,并对设备配置进行了比较。结果表明,在加压配置下,即使相对于A部分中定义的IGHP(制氢综合气化炉)参考装置产生的氢气更少(〜21.6 vs. 23.1 MW_(HHV))。发电效率高于燃料电池系统中氢气的转化效率(对于CPH,70,表观效率,指的是较高的热值,为92.6%)和IGCC中煤的转化效率(对于CPH,70 CPH,70的边际效率(称为HHV)为81.9%。制氢效率为67.5%(HHV),热电联产率达到10.2%。

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