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在用于农业光伏应用的实验室规模温室中,CsPbI钙钛矿屋顶下菊苣幼苗生长得到改善。

Improved radicchio seedling growth under CsPbI perovskite rooftop in a laboratory-scale greenhouse for Agrivoltaics application.

作者信息

Spampinato Carlo, Valastro Salvatore, Calogero Gaetano, Smecca Emanuele, Mannino Giovanni, Arena Valentina, Balestrini Raffaella, Sillo Fabiano, Ciná Lucio, La Magna Antonino, Alberti Alessandra

机构信息

National Research Council - Institute for Microelectronics and Microsystems (CNR-IMM), Zona Industriale - Strada VIII no. 5, Catania, 95121, Italy.

Dipartimento Scienze Matematiche e Informatiche, Scienze Fisiche e Scienze della Terra, Università Degli Studi di Messina, Viale Ferdinando Stagno d'Alcontres, 31, Messina, 98166, Italy.

出版信息

Nat Commun. 2025 Mar 11;16(1):2190. doi: 10.1038/s41467-025-56227-9.

Abstract

Agrivoltaics, integrating photovoltaic systems with crop cultivation, demands semitransparent solar modules to mitigate soil shadowing. Perovskite Solar Cells (PSC) offer competitive efficiency, low fabrication costs, and high solar transmittance, making them suitable for agrivoltaic applications. However, the impact of PSC light filtering on plant growth and transcriptomics remains underexplored. This study investigates the viability and agronomic implications of the growth of radicchio seedlings (Cichorium intybus var. latifolium) in laboratory-scale greenhouses integrating Perovskites-coated rooftops. Eu-enriched CsPbI layers are chosen to provide semi-transparency and phase stability while radicchio has limited size and grows in pots. Despite the reduced light exposure, radicchio seedlings exhibit faster growth and larger leaves than in the reference, benefiting from specific spectral filtering. RNA-sequencing reveals differential gene expression patterns reflecting adaptive responses to environmental changes. Simulations of full PSC integration demonstrate a positive energy balance in greenhouses to cover annual energy needs for lighting, irrigation, and air conditioning.

摘要

农用光伏发电将光伏系统与作物种植相结合,需要半透明太阳能模块来减少土壤阴影。钙钛矿太阳能电池(PSC)具有竞争力的效率、较低的制造成本和较高的太阳能透过率,使其适用于农用光伏应用。然而,PSC光过滤对植物生长和转录组学的影响仍未得到充分研究。本研究调查了在集成钙钛矿涂层屋顶的实验室规模温室中,菊苣幼苗(Cichorium intybus var. latifolium)生长的可行性和农艺学意义。选择富含铕的CsPbI层以提供半透明性和相稳定性,而菊苣尺寸有限且在花盆中生长。尽管光照减少,但菊苣幼苗比对照表现出更快的生长速度和更大的叶片,这得益于特定的光谱过滤。RNA测序揭示了反映对环境变化适应性反应的差异基因表达模式。全PSC集成的模拟表明,温室中的能量平衡为正,足以满足照明、灌溉和空调的年度能源需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab07/11897390/2199b5fefce0/41467_2025_56227_Fig2_HTML.jpg

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