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Hybridizing concentrated solar power (CSP) with biogas and biomethane as an alternative to natural gas: Analysis of environmental performance using LCA

机译:用沼气和沼气代替天然气替代集中太阳能(CSP):使用LCA分析环境绩效

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摘要

Concentrating Solar Power (CSP) plants typically incorporate one or various auxiliary boilers operating in parallel to the solar field to facilitate start up operations, provide system stability, avoid freezing of heat transfer fluid (HTF) and increase generation capacity. The environmental performance of these plants is highly influenced by the energy input and the type of auxiliary fuel, which in most cases is natural gas (NG). Replacing the NG with biogas or biomethane (BM) in commercial CSP installations is being considered as a means to produce electricity that is fully renewable and free from fossil inputs. Despite their renewable nature, the use of these biofuels also generates environmental impacts that need to be adequately identified and quantified. This paper investigates the environmental performance of a commercial wet-cooled parabolic trough 50 MWe CSP plant in Spain operating according to two strategies: solar-only, with minimum technically viable energy non-solar contribution; and hybrid operation, where 12 % of the electricity derives from auxiliary fuels (as permitted by Spanish legislation). The analysis was based on standard Life Cycle Assessment (LCA) methodology (ISO 14040-14040). The technical viability and the environmental profile of operating the CSP plant with different auxiliary fuels was evaluated, including: NG; biogas from an adjacent plant; and BM withdrawn from the gas network. The effect of using different substrates (biowaste, sewage sludge, grass and a mix of biowaste with animal manure) for the production of the biofuels was also investigated. The results showed that NG is responsible for most of the environmental damage associated with the operation of the plant in hybrid mode. Replacing NG with biogas resulted in a significant improvement of the environmental performance of the installation, primarily due to reduced impact in the following categories: natural land transformation, depletion of fossil resources, and climate change. However, despite the renewable nature of the biofuels, other environmental categories like human toxicity, eutrophication, acidification and marine ecotoxicity scored higher when using biogas and BM.
机译:集中式太阳能发电站(CSP)通常包含一个或多个与太阳能场平行运行的辅助锅炉,以促进启动操作,提供系统稳定性,避免传热流体(HTF)冻结并提高发电量。这些工厂的环境绩效在很大程度上受到能量输入和辅助燃料类型(大多数情况下为天然气(NG))的影响。在商用CSP装置中,用沼气或生物甲烷(BM)代替NG被认为是生产完全可再生且无化石输入的电力的一种手段。尽管这些生物燃料具有可再生的特性,但它们的使用也会产生对环境的影响,需要对其进行适当的识别和量化。本文研究了西班牙某商业湿式抛物槽式50 MWe CSP装置的环保性能,该装置根据以下两种策略进行操作:仅采用太阳能,技术上的可行能源最少,对太阳能的贡献最小;混合动力运行,其中12%的电力来自辅助燃料(西班牙法律允许)。该分析基于标准生命周期评估(LCA)方法(ISO 14040-14040)。评估了使用不同的辅助燃料运行CSP工厂的技术可行性和环境概况,包括:邻近工厂的沼气; BM从燃气网络中撤出。还研究了使用不同底物(生物废物,污水污泥,草以及生物废物与动物粪便的混合物)生产生物燃料的效果。结果表明,NG是与混合模式下工厂运营有关的大部分环境损害的原因。用沼气代替天然气可以大大改善该装置的环境性能,这主要是由于减少了以下类别的影响:自然土地转化,化石资源枯竭和气候变化。然而,尽管生物燃料具有可再生性质,但在使用沼气和BM时,其他环境类别(如人类毒性,富营养化,酸化和海洋生态毒性)的得分更高。

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