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A Cost Analysis of Fully Solution-Processed ITO-Free Organic Solar Modules

机译:完全溶液处理的无ITO有机太阳能组件的成本分析

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摘要

Organic photovoltaics (OPVs) have become a potential candidate for clean and renewable photovoltaic productions. This work examines the current cost drivers and potential avenues to reduce costs for organic solar modules by constructing a comprehensive bottom-up cost model. The direct manufacturing cost (MC) and the minimum sustainable price (MSP) for an opaque single solar module (SSM) (MC = 187 yen m(-2), MSP = 297 yen m(-2)) and for a tandem solar module (MC = 224 yen m(-2), MSP = 438 yen m(-2)) are analyzed in detail. Within this calculation, the most expensive layers and processing steps are identified and highlighted. Importantly, the low levelized cost of energy (LCOE) value for an SSM with a 10% power conversion efficiency in a 20-year range from 0.185 to 0.486 yen kWh(-1), with a national average of 0.324 yen kWh(-1) in China under an average solar irradiance of 1200 kWh m(-2) year(-1). Moreover, the impact on the cost of alternative materials and constructions, process throughputs, module efficiency, and module lifetime, etc., is presented and avenues to further reduce the MSP and LCOE values are indicated. The analysis shows that OPVs can emerge as a competitive alternative to established power generation technologies if the remaining issues (e.g., active layer material cost, module efficiency, and lifetime) can be resolved.
机译:有机光伏(OPV)已成为清洁和可再生光伏产品的潜在候选者。这项工作通过构建一个全面的自下而上的成本模型,研究了当前的成本驱动因素和减少有机太阳能电池组件成本的潜在途径。不透明单太阳能模块(SSM)(串联= 187日元m(-2),MSP = 297日元m(-2))的直接制造成本(MC)和最低可持续价格(MSP)详细分析模块(MC = 224日元m(-2),MSP = 438日元m(-2))。在此计算中,将标识并突出显示最昂贵的层和处理步骤。重要的是,对于20年内功率转换效率为10%的SSM,其低水平的能源成本(LCOE)值在0.185至0.486日元kWh(-1)之间,全国平均水平为0.324日元kWh(-1) )在中国的平均太阳辐照度为1200 kWh m(-2)年(-1)。此外,提出了对替代材料和结构的成本,工艺产量,模块效率和模块寿命等的影响,并指出了进一步降低MSP和LCOE值的途径。分析表明,如果可以解决其余问题(例如,有源层材料成本,模块效率和使用寿命),那么OPV可以成为现有发电技术的竞争替代品。

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