迈向光伏与农业温室系统的可持续实践:一个生态系统服务框架

Toward sustainable practices in photovoltaic and agricultural greenhouse systems: An ecosystem services framework

Energy Economics · 2025
被引 3
人大 A-ABS 3

中文导读

运用生态系统服务框架评估透明太阳能板在农业光伏系统中的应用,通过以色列蔬菜农业的部分均衡模型,发现该技术可转化1.3%耕地并贡献7%全国电力,每年每公顷生态系统服务价值增加864美元,为政策制定者优化土地分配提供依据。

Abstract

Policies promoting agrivoltaics face the challenge of balancing between mitigating climate change and farmland preservation. This study applies an ecosystem-services (ESS) approach to evaluate the introduction of transparent solar panels (TSP) as photovoltaic and agricultural greenhouse systems (PVGs) with low impact on agricultural activities. Using a partial equilibrium model of Israel's vegetative agriculture, we simulate the introduction of TSP on farmers' optimal land allocation between open-field and covered crops and its sustainability. The model accounts for food and energy production as provisioning vegetative-agriculture ESS (VAESS), and for greenhouse-gas (GHG) emissions and open-field landscape as non-provisioning VAESS. Our findings suggest that TSP represents an economically viable and sustainable PVG technology. The adoption of TSP, alongside policies that internalize the value of non-provisioning ESS, is projected to convert 1.3 % of Israel's cultivable land from open fields to covered crops, contributing approximately 7 % to the nation's electricity supply. The estimated annual increase in VAESS per hectare is valued at $864, comprising $812 from electricity generation, $259 from GHG emission reductions, $277 in consumer surplus from agricultural products, offset by a $441 reduction in agricultural output, and a $43 decrease in landscape value. Our analysis demonstrates how an ecosystem services framework can guide policy decisions toward optimal land-use allocation in agrivoltaic systems. • Transparent solar panels enable sustainable agrivoltaics with minimal farming impact. • Adoption of TSP in Israel converts 1.3 % of farmland, adding 7 % to national electricity. • Annual ecosystem-service gains of $864/ha include energy and GHG benefits. • Policies internalizing non-provisioning ESS enhance land allocation sustainability. • Ecosystem-services framework aids in optimizing agrivoltaic land-use decisions.

农业光伏生态系统服务透明太阳能板温室气体减排