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Environmental Assessment of a HYSOL CSP Plant Compared to a Conventional Tower CSP Plant

机译:HYSOL CSP工厂与常规塔式CSP工厂的环境评估

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摘要

The aim of this paper is to evaluate the environmental performance of a Concentrating Solar Power (CSP) plant based on HYSOL technology. The plant under investigation is a solar tower system with 14 hours thermal energy storage using biomethane as auxiliary fuel and using a 100 MWe steam turbine and a 80 MWe gas turbine in the combined cycle (Brayton and Rankine) characteristic of the HYSOL technology. The results evidence that HYSOL technology performs significantly better in environmental terms than conventional CSP. This evidence is particularly relevant in the climate change category where HYSOL plants presents 43.0 kg CO2 eq /MWh. In contrast, the hybrid CSP plant operating with natural gas emits 370 kg CO2 eq /MWh. This difference is attributable primarily to the nature of the auxiliary fuel (biomethane in HYSOL and natural gas in conventional CSP), but also to the higher thermal efficiencies achieved in the HYSOL configuration, which prevents the emission of 106 kg CO2 eq /MWh. The environmental significance of the additional components and infrastructure associated with the Brayton cycle in the HYSOL technology (gas turbine, Heat Recovery System and Low Temperature Energy Storage) are negligible.
机译:本文的目的是评估基于HYSOL技术的聚光太阳能发电厂(CSP)的环境绩效。所研究的工厂是一个太阳能塔系统,该系统具有14小时的热能存储,使用生物甲烷作为辅助燃料,并使用100 MWe的蒸汽轮机和80 MWe的燃气轮机,具有HYSOL技术的联合循环(布雷顿和兰金)特性。结果表明,HYSOL技术在环境方面的性能明显优于常规CSP。该证据在气候变化类别中尤为重要,在该类别中,HYSOL工厂的二氧化碳当量/ MWh为43.0 kg。相比之下,使用天然气的混合式CSP工厂排放的二氧化碳当量为370千克/兆瓦时。这种差异主要归因于辅助燃料的性质(HYSOL中的生物甲烷和常规CSP中的天然气),还归因于HYSOL配置中实现的较高热效率,这阻止了106 kg CO2当量/ MWh的排放。与HYSOL技术中的布雷顿循环相关的其他组件和基础设施(燃气轮机,热回收系统和低温储能)对环境的重要性可以忽略不计。

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