钙钛矿/硅串联太阳能电池生命周期评价与可持续性分析综述

Waseem Akram, Xikang Li, Shakeel Ahmed, Zhengbiao Ouyang and Guijun Li
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摘要

钙钛矿/硅(Si)串联太阳能电池(tsc)由于其能够大大提高功率转换效率(PCE),超过单结太阳能电池的Shockley-Queisser极限,已成为光伏技术中有前途的候选技术。然而,钙钛矿材料的耐用性和其生命周期的环境后果方面的障碍对其广泛的商业应用构成了显著的障碍。本文的目的是对钙钛矿/硅TSCs的生命周期评估(LCA)和可持续性分析进行综述:首先,重点介绍了钙钛矿/硅TSCs的工作原理、结构、组成和最新进展,然后概述了钙钛矿/硅TSCs的生命周期评估和可持续性研究。最后,本综述强调了成功开发这种卓越的钙钛矿/硅TSC光伏技术所需的未来LCA和可持续性研究的重要方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A review of life cycle assessment and sustainability analysis of perovskite/Si tandem solar cells

Perovskite/silicon (Si) tandem solar cells (TSCs) have emerged as a promising candidate among PV technologies due to their capability to greatly increase power conversion efficiency (PCE) exceeding the Shockley–Queisser limit of single-junction solar cells. Nevertheless, obstacles to the durability of perovskite materials and the environmental consequences of their life cycle present notable barriers to their widespread commercial deployment. The objective of this article is to deliver a review of life cycle assessment (LCA) and sustainability analysis of perovskite/Si TSCs: first, focusing on their working principle, configuration, components and recent progress and then presenting an overview of the LCA and sustainability study performed on perovskite/Si TSCs. Finally, this review highlights important directions for future LCA and sustainability studies required for the successful development of this remarkable perovskite/Si TSC PV technology.

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Inside back cover Back cover Afterglow quenching in plasma-based dry reforming of methane: a detailed analysis of the post-plasma chemistry via kinetic modelling. Showcasing the technological advancements of carbon dioxide conversion: a pathway to a sustainable future From lead–acid batteries to perovskite solar cells – efficient recycling of Pb-containing materials†
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