商业化
光伏
温室气体
可扩展性
光伏系统
业务
持续性
电
标杆管理
电力市场
环境科学
发电
环境经济学
计算机科学
电气工程
经济
工程类
数据库
物理
生物
营销
功率(物理)
量子力学
生态学
作者
Alessandro Martulli,Neethi Rajagopalan,Fabrizio Gota,Toby Meyer,Ulrich W. Paetzold,Steven Claes,Alberto Salone,Jordy Verboven,Robert Malina,Bart Vermang,Sebastien Lizin
摘要
Abstract Many economic and environmental studies on novel perovskite solar cells (PSCs), published ex post the development stage to investigate the market competitiveness, have focused on laboratory‐scale PSC architectures that are not amenable for upscaling. In this paper, we evaluate the market potential and environmental sustainability of a scalable carbon‐electrode‐based PSC by benchmarking it to the market dominating c‐Si photovoltaics and CIGS thin film photovoltaics. The analysis covers the PSCs full lifecycle, at the module and system levels (residential and utility scale), and is based on realistic annual energy output data derived from energy yield calculations. We find that this PSC can produce electricity at low cost (3–6 €cents/kWh), with lowest energy payback (0.6–0.8 years) and greenhouse gas emissions (15–25g CO 2 eq./kWh) compared with grid‐connected PV market alternatives, assuming 25years of lifetime, expected PV system cost reductions, and PSC module recycling and refurbishment.
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