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An economic and environmental assessment of carbon capture and storage (CCS) power plants: a case study for the City of Kiel

机译:碳捕集与封存(CCS)发电厂的经济和环境评估:以基尔市为例

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摘要

In the not too distant future several power plants throughout Europe will have to be replaced and the decision has to be made whether to build coal-fired power plants with carbon capture and storage (CCS). In a study for the city of Kiel in northern Germany only an 800�MW coal power plant reaches a required minimum for rentability. This study looks at an additional economic and environmental evaluation of a coal plant with CCS. We find that in two out of three carbon and energy price scenarios integrated gasification combined cycle (IGCC) plants with CCS have the greatest rentability. Pulverised coal (PC) plants with CCS can only compete with other options under very favourable assumptions. Life-cycle emissions from CCS are less than 70% of a coal plant - compared with at least more than 80% when only considering direct emissions from plants. However, life-cycle emissions are lower than in any other assessed option.
机译:在不久的将来,整个欧洲的几座发电厂将不得不更换,并且必须决定是否建造具有碳捕集与封存(CCS)功能的燃煤发电厂。在针对德国北部基尔市的一项研究中,只有800兆瓦的燃煤电厂达到了最低的可出租性要求。本研究着眼于采用CCS的燃煤电厂的另一项经济和环境评估。我们发现,在三分之二的碳和能源价格情景中,具有CCS的集成气化联合循环(IGCC)工厂的可出租性最高。具有CCS的粉煤(PC)厂只能在非常有利的假设下与其他选择竞争。 CCS的生命周期排放量不到燃煤电厂的70%,而仅考虑燃煤电厂的直接排放,则至少超过80%。但是,生命周期的排放量低于任何其他评估方案。

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