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A process systems engineering approach to designing a solar/biomass hybrid energy system for dairy farms in Argentina

机译:一种工艺系统工程方法,用于在阿根廷乳制品农场设计太阳能/生物量混合能源系统

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Argentina targets a 20% share of renewables in the energy mix by 2025 and a 15% emissions reduction by 2030, while at the same time removing subsidies for grid electricity.This paper aims to provide a feasible solution for small farm owners for sustainable and affordable energy: a grid-connected hybrid system able to fulfill the demand in a cheaper, reliable and sustainable way.The case study of an existing dairy farm in Carmen de Areco, Buenos Aires, is taken.A grid-connected hybrid system with solar photovoltaics, unheated anaerobic digestion (AD) coupled to an internal combustion engine and storage system, was selected.The size of the hybrid system was optimized via a mathematical model that compared different technologies.The interrelation between sources was economically optimized in order to match the demand on an hourly basis.The scenario comparison defined the optimal solution for this case study, which was the installation of an unheated AD plant with 2.4 kW capacity, and 16 solar panels with a capacity of 5.2 kW, added to a shift in the demand profile.The initial investment required is 17,042 USD, with a payback of 3.4 years and a GHG reduction of 275.9 tons of CO2 eq per year.
机译:阿根廷的目标份额在能源结构中可再生能源的20%,到2025年和2030年15%的减排,而在同一时间消除了对电网electricity.This本文旨在补贴提供小农场主可持续和负担得起的一个可行的解决方案能源:电网连接的混合系统能够以更便宜,可靠和可持续的方式满足需求。拍摄了布宜诺斯艾利斯Carmen de Areco的现有乳制品农场的案例研究。带有太阳能光伏的网格连接混合系统耦合到内燃发动机和存储系统不加热的厌氧消化(AD),是混合动力系统的selected.The大小通过数学模型源之间比较了不同technologies.The相互关系,以便匹配的需求在经济上最优化进行了优化每小时为基础。场景比较为这种案例研究定义了最佳解决方案,该研究是安装了2.4千瓦容量的未加热的广告厂和16秒可容纳5.2千瓦,添加到所需要的需求profile.The初始投资的转变OLAR板是17042美元,3.4年,投资回收期和温室气体减排的275.9吨每年二氧化碳当量。

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