光伏系统
环境科学
生态系统
人口
环境工程
农业
环境资源管理
土壤碳
生态学
农林复合经营
营养物
可持续发展
光伏
生物量(生态学)
屋顶光伏电站
环境保护
农业工程
人口增长
土壤水分
太阳能
可再生能源
发电
土地利用
作者
Yanzhen Hou,Jingyi Ding,Wenwu Zhao,Lizhi Jia,Ting Hua,Xuan Gao
摘要
ABSTRACT Ecosystems are facing multiple pressures from limited natural resources, population growth, and climate change, which challenges the achievement of sustainable development goals. The combination of agriculture and photovoltaic power generation can mitigate multiple societal challenges. However, it is still poorly understood whether photovoltaic benefits multiple ecosystem functions and the impact of different types of photovoltaic panels on ecological functions. To quantify the ecosystem impact of photovoltaic systems, we conducted a field study under and outside the photovoltaic panels, and we measured plant structure, carbon stocks, soil stability, and soil nutrients to represent the characterization of the whole ecosystem function. We found that photovoltaic panels facilitated plant structure recovery (e.g., height, cover, and aboveground biomass) due to the shade effect and the input of clean water. However, the photovoltaic panels' construction had a negative impact on soil properties, with soil stability decreasing and soil nutrient loss. Fixed panels had greater carbon stock and soil water content, whereas rotating panels proved more effective in controlling plant growth and reducing fire hazards. The differences between fixed and rotating panels mainly lay in the difference in shade effect and the ease of access for sheep entering under the photovoltaic panels. Our study indicated that the “photovoltaic‐grass‐sheep” land management facilitated multiple sustainable development goals and provided a win‐win situation for herders and solar operators.
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