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Hybridisation optimization of concentrating solar thermal and biomass power generation facilities

机译:集中式太阳能热能和生物质能发电设施的混合优化

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Recently, the first concentrating solar power-biomass hybrid power plant commenced operation in Spain and the combination of both energy sources is promising to lower plant investment. This assessment investigates 17 different concentrating solar power-biomass hybrid configurations in regards their technical, economic and environmental performance. The integration of molten salt thermal storage is considered for the best performing hybrid configuration. While thermal storage can increase plant output significantly even 7 h full-load thermal storage plants would generate the majority of the electricity, 70%, from the biomass resource. Only mature technologies with references >5 MWe are considered in this assessment to ensure that the scenarios are bankable. The concentrating solar power technologies selected are parabolic trough, Fresnel and solar tower while the biomass systems include grate, fluidised bed and gasification with producer gas use in a boiler. A case study approach based on the annual availability of 100,000 t of wood biomass is taken to compare the different plant configurations but the results are transferable to other locations when updating site and cost conditions. Results show that solar tower-biomass hybrids reach the highest net cycle efficiency, 32.9%, but that Fresnel-biomass hybrids have the lowest specific investment, AU$ 4.5 m/ MWe. The investment difference between the 17 scenarios is with up to 31% significant. Based on the annual electricity generation CSP-biomass hybrids have an up to 69% lower investment compared to standalone concentrating solar power systems. The scenario with the best technical performance, being solar tower and gasification, is at this point in time not necessarily the best commercial choice, being Fresnel and fluidised bed, as the lower Fresnel investment outweighs the additional electricity generation potential solar towers offer. However, other scenarios with different benefits rank closely.
机译:最近,西班牙第一个集中式太阳能-生物质混合发电厂开始运行,两种能源的结合有望降低电厂投资。该评估调查了17种不同的集中式太阳能-生物质混合动力配置的技术,经济和环境绩效。熔融盐热量存储的集成被认为是性能最佳的混合配置。尽管蓄热可以显着提高工厂的产量,即使7小时满负荷的蓄热工厂也将从生物质资源中产生大部分电力,即70%。在此评估中,仅考虑参考值大于或等于5 MWe的成熟技术,以确保这些方案可兑现。选择的集中式太阳能发电技术为抛物线槽,菲涅耳和太阳能塔,而生物质系统包括炉排,流化床和气化炉,并在锅炉中使用生产气。采取了基于每年10万吨木材生物量的案例研究方法,以比较不同的植物配置,但是当更新场地和成本条件时,结果可以转移到其他位置。结果表明,太阳能塔-生物质混合燃料的净循环效率最高,为32.9%,但菲涅尔-生物质混合燃料的最低单位投资为450万澳元/ MWe。这17种方案之间的投资差异高达31%。基于年发电量,与独立的集中式太阳能发电系统相比,CSP-生物质混合发电的投资降低多达69%。目前,具有最佳技术性能的方案是太阳能塔和气化,但不一定是最佳的商业选择,是菲涅耳和流化床,因为菲涅尔投资的减少超过了潜在的太阳能塔发电能力。但是,其他具有不同利益的方案排名靠前。

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