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首页> 外文期刊>International Journal of Greenhouse Gas Control >Long-term coal gasification-based power plants with near-zero emissions. Part A: Zecomix cycle
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Long-term coal gasification-based power plants with near-zero emissions. Part A: Zecomix cycle

机译:长期以煤气化为基础的发电厂,排放几乎为零。 A部分:Zecomix周期

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摘要

These two part papers analyse three plant configurations for high efficiency, near-zero emissions power generation from coal, suitable for long-term installations. In the first part the Zecomix cycle, a novel power plant based on various innovative processes, is presented. Zecomix plant is based on a coal hydrogasification process, using recycled steam and hydrogen as gasifying agents, to produce a CH4 rich syngas. Methane is then converted to an H_2/H_2O based syngas and CO_2 is captured, by reacting in two carbonator reactors with CaO-based solid sorbent. CaCO_3 produced in carbonators is thermally regenerated in a calciner. The synthetic fuel is burned with oxygen in a semi-closed high temperature steam cycle, with a supercritical heat recovery.The paper presents a detailed analysis of the thermodynamic aspects of the process, with the scope of assessing its potential performance in terms of efficiency and emissions. Main operating parameters of the chemical island (e.g. hydrogasifier and calciner pressure, steam flow rates to carbonators, syngas recycle fraction) and of the power island (e.g. pressure ratio, turbine inlet temperature and reheat pressure) were varied in order to evaluate their effect on plant performance and to optimize the process. Critical issues are specifically discussed: the calcination process, the calcium oxide utilization in carbonators, the cooling requirement of the high temperature turbine, the presence of incondensable species in the steam cycle. An accurate performance estimation is therefore developed by considering advanced components, as an evolution of today's technology, excluding unproven devices whose feasibility cannot be anticipated. Depending on sorbent utilization, a net plant efficiency of 44-47% with a virtually complete carbon capture was obtained, a very interesting result with respect to other proposed coal-fired power plants with carbon capture. The high complexity of the chemical island and the importance of a good sorbent performance should be however taken into account for a fair comparison with other plant concepts. Further experimental investigations are mandatory Jo demonstrate the technical and economical feasibility of the Zecomix plant.
机译:这两部分的论文分析了三种电厂配置,以实现高效,接近零排放的煤炭发电,适用于长期安装。在第一部分Zecomix循环中,展示了一种基于各种创新工艺的新型发电厂。 Zecomix工厂是基于煤的加氢气化工艺,使用循环蒸汽和氢气作为气化剂,以生产富含CH4的合成气。然后通过在两个碳酸化器反应器中与基于CaO的固体吸附剂反应,将甲烷转化为基于H_2 / H_2O的合成气,并捕获CO_2。碳化器中产生的CaCO_3在煅烧炉中进行热再生。合成燃料在半封闭的高温蒸汽循环中与氧气一起燃烧,具有超临界热回收。本文对过程的热力学方面进行了详细分析,并评估了其在效率和效率方面的潜在性能。排放。改变化学岛的主要运行参数(例如加氢气化炉和煅烧炉的压力,通向碳酸化器的蒸汽流量,合成气再循环分数)和动力岛的主要运行参数(例如压力比,涡轮进口温度和再热压力),以评估其对并优化工厂性能。具体讨论了一些关键问题:煅烧过程,碳酸化器中氧化钙的利用,高温涡轮机的冷却要求,蒸汽循环中存在不可冷凝的物质。因此,通过考虑高级组件作为当今技术的发展,可以开发出准确的性能估算,其中不包括无法预料其可行性的未经验证的设备。根据吸附剂的利用情况,获得的碳净效率几乎为44-47%,并且几乎完全实现了碳捕集,这与其他提议的具有碳捕集功能的燃煤电厂相比是非常有趣的结果。但是,为了与其他工厂概念进行公平比较,应考虑到化学岛的高度复杂性和良好的吸附剂性能的重要性。 Jo必须进行进一步的实验研究,以证明Zecomix工厂的技术和经济可行性。

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