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Economic assessment of solar electricity production from organic-based photovoltaic modules in a domestic environment

机译:在家庭环境中对有机光伏组件的太阳能发电进行经济评估

摘要

The primary driver for development of organic photovoltaic (OPV) technologies is the prospect of very low cost module manufacture leading to affordable solar electricity. This paper presents an economic assessment of OPV based on an existing pre-industrial manufacturing process and the associated detailed material inventory. Using life cycle costing techniques, the life cycle investment cost for a 1kW p, grid-connected OPV system is calculated, taking into account the materials, direct process energy, labour, balance of system components, design and maintenance costs. Assuming values for the performance ratio of the PV system, insolation level, inflation and interest rates, the levelised electricity cost (LEC) is calculated. Under an average solar irradiance of 1700 kWh/m 2/year, typical of southern Europe, a LEC of between 0.19 €/kWh and 0.50 €/kWh was calculated for a 1kW p system, based on modules containing 7% efficient cells and assuming a 5 year module lifetime. The OPV module is found to make up the majority of the system cost while the material costs constitute the largest contribution to the cost of the OPV module. The influence of OPV module lifetime is studied using sensitivity. This paper demonstrates that competitive solar electricity from OPV is within reach if efficiencies of ca. 7% already demonstrated in lab scale devices can be achieved in large area modules and if lifetimes of at least 5 years can be achieved. © 2011 The Royal Society of Chemistry.
机译:开发有机光伏(OPV)技术的主要动力是极低成本的模块制造前景,可产生负担得起的太阳能。本文基于现有的工业化前制造工艺和相关的详细材料清单,对OPV进行了经济评估。使用生命周期成本技术,计算出1kW p并网OPV系统的生命周期投资成本,其中要考虑到材料,直接过程能源,人工,系统组件的平衡,设计和维护成本。假设光伏系统的性能比,日照水平,通货膨胀率和利率的值计算出平准化的电费(LEC)。在南欧典型的平均太阳辐射为1700 kWh / m 2 /年的情况下,基于包含7%高效电池的模块并假设1kW p系统,LEC计算得出的LEC在0.19€/ kWh和0.50€/ kWh之间5年的模块寿命。发现OPV模块占系统成本的大部分,而材料成本则是OPV模块成本的最大贡献。使用灵敏度研究了OPV模块寿命的影响。本文证明,如果效率大约为1,则来自OPV的竞争性太阳能发电是可以实现的。如果能够达到至少5年的使用寿命,则在大面积模块中可以达到实验室规模设备已证明的7%。 ©2011皇家化学学会。

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