Ahmed Selena, Warne Teresa, Smith Erin, Goemann Hannah, Linse Greta, Greenwood Mark, Kedziora Jeremy, Sapp Meghan, Kraner Debra, Roemer Kelli, Haggerty Julia H, Jarchow Meghann, Swanson David, Poulter Benjamin, Stoy Paul C
Food and Health Lab, Department of Health and Human Development, Montana State University, Bozeman, MT, USA.
Chemical and Biological Engineering Department, Montana State University, Bozeman, MT, USA.
NPJ Sci Food. 2021 May 4;5(1):9. doi: 10.1038/s41538-021-00091-6.
Achieving food security is a critical challenge of the Anthropocene that may conflict with environmental and societal goals such as increased energy access. The "fuel versus food" debate coupled with climate mitigation efforts has given rise to next-generation biofuels. Findings of this systematic review indicate just over half of the studies (56% of 224 publications) reported a negative impact of bioenergy production on food security. However, no relationship was found between bioenergy feedstocks that are edible versus inedible and food security (P value = 0.15). A strong relationship was found between bioenergy and type of food security parameter (P value < 0.001), sociodemographic index of study location (P value = 0.001), spatial scale (P value < 0.001), and temporal scale (P value = 0.017). Programs and policies focused on bioenergy and climate mitigation should monitor multiple food security parameters at various scales over the long term toward achieving diverse sustainability goals.
实现粮食安全是人类世面临的一项关键挑战,这可能与能源获取增加等环境和社会目标相冲突。“燃料与粮食”的争论以及减缓气候变化的努力催生了下一代生物燃料。这项系统综述的结果表明,略超过一半的研究(224篇出版物中的56%)报告了生物能源生产对粮食安全的负面影响。然而,可食用与不可食用的生物能源原料与粮食安全之间未发现关联(P值 = 0.15)。生物能源与粮食安全参数类型(P值 < 0.001)、研究地点的社会人口指数(P值 = 0.001)、空间尺度(P值 < 0.001)和时间尺度(P值 = 0.017)之间存在密切关联。专注于生物能源和减缓气候变化的计划与政策应长期在不同尺度上监测多个粮食安全参数,以实现多样化的可持续发展目标。