保护性农业光伏技术促进可持续粮食能源生产

A. Time, N. Gomez‐Casanovas, Paul Mwebaze, Wilgince Apollon, Madhu Khanna, Evan H. DeLucia, Carl Bernacchi
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引用次数: 0

摘要

要在不断变化的气候条件下解决可持续能源和粮食生产这一紧迫的全球性问题,农业光伏技术(AV)等变革性农业战略至关重要。保护性光伏技术(Conservation-AV)有可能满足这些需求,同时加强自然资源和环境保护。它可以通过改善土壤健康和生物多样性来提高光伏的生态效益。它可以为农民创造经济机会,提高粮食作物在不断变化的气候条件下的适应能力和多样性。此外,它还可以让利益相关者了解在光伏农业中实施保护性农业管理方法(CAMP)的益处和挑战,并鼓励进一步探索和采用这种创新方法。需要在农业中实施变革性战略,以应对与能源和粮食生产有关的紧迫的全球挑战,同时加强自然资源和环境。在过去十年中,农业光伏技术(AV)已成为应对改善能源和粮食安全这一根本挑战的解决方案之一。农用光伏被定义为在同一块土地上将太阳能光伏板和农作物置于同一地点,以同时、可持续地优化粮食和能源生产。在此,我们提出,光伏农业与保护性农业管理实践(CAMP)战略相结合,有助于加强粮食安全和能源生产,同时强化自然资源和环境。我们在这篇观点文章中的主要论断是(1) 反车辆系统需要克服农艺、环境和生态方面的若干挑战,以可持续的方式加强粮食和能源生产;(2) 在反车辆系统中应用 CAMP 可保护环境,确保粮食生产具有气候适应性;(3) 在反车辆中实施 CAMP 可实现长期碳固存,降低温室气体排放,保持或提高作物产量,同时保护土壤健康和生物多样性;(4) 在反车辆中采用 CAMP 可带来经济效益,但仍需克服各种挑战。这篇观点文章提出了一种整合可再生能源和可持续粮食生产的新生态系统方法,并鼓励研究 CAMP 对反车辆地雷系统的影响。
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Conservation agrivoltaics for sustainable food‐energy production
Transformative agricultural strategies like agrivoltaics (AV) are essential for addressing the pressing global issues of sustainable energy and food production in a changing climate. Conservation‐agrivoltaics (Conservation‐AV) provides the potential to meet these needs while reinforcing natural resources and protecting the environment. It could enhance the ecological benefits of AV by improving soil health and biodiversity. It could create economic opportunities for farmers and increase the resilience and diversity of food crops under changing climate conditions. Furthermore, it could inform stakeholders about the benefits and challenges of implementing conservation agriculture management practices (CAMP) in AV and encourage further exploration and adoption of this innovative approach.Transformative strategies in agriculture are needed to address urgent global challenges related to energy and food production while reinforcing natural resources and the environment. Agrivoltaics (AV) has emerged in the past decade as one solution to this fundamental challenge of improving energy and food security. AV is defined as the co‐location of solar photovoltaic (PV) panels and crops on the same land to optimize food and energy production simultaneously and sustainably. Here, we propose that AV, together with conservation agriculture management practices (CAMP) strategies can help to intensify food security and energy production while reinforcing natural resources and the environment. Our main assertions in this opinion article are that: (1) AV systems need to overcome several agronomical, environmental, and ecological challenges to intensify food and energy production sustainably; (2) CAMP applied to AV systems can preserve the environment and ensure climate‐resilient food production; (3) implementation of CAMP in AV can lead to long‐term carbon sequestration, lower greenhouse gas emissions, and maintain or increase crop yields while preserving soil health and biodiversity; and (4) adoption of CAMP in AV can bring economic benefits, although challenges need to be overcome. This opinion article proposes a new ecosystem approach to integrate renewable energy and sustainable food production and encourages research on the effects of CAMP on AV systems.
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