Socio-Economic and Environmental Implications of Bioenergy Crop Cultivation on Marginal African Drylands and Key Principles for a Sustainable Development

IF 1.6 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Paola Varela Pérez, Beatrice E. Greiner, M. von Cossel
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引用次数: 3

Abstract

Africa has been a hotspot for the development of food and bioenergy crop cultivation since the 2000s, leading to systematic challenges towards its ability to become a bioeconomy. To reduce land-use conflicts with food crop cultivation, marginal African drylands (MADs) are proposed for sustainable bioenergy cropping systems (BCSs). This study reviews the foremost socio-economic and environmental challenges for BCSs on MADs, and the development of key principles for minimizing adverse outcomes towards a sustainable bioeconomy. Socio-economic prosperity in Africa depends on several systematic solutions, and BCSs that are based on perennial bioenergy crops are promising strategies as they provide a renewable and sustainable energy source for rural areas. However, critical multidimensional challenges such as poverty, food security, gender equality, access to energy, and environmental impact must also be considered to ensure long-term sustainability. This review argues for more transparent land sales/usage (considering the agricultural work of women) and more perennial bioenergy crops. In this context, key principles were derived for a people-centered bottom-up approach that is considered fundamental to ensure the sustainable development of BCSs on MADs in the future.
非洲边缘旱地生物能源作物种植的社会经济和环境影响及可持续发展的关键原则
自2000年代以来,非洲一直是粮食和生物能源作物种植发展的热点,导致其成为生物经济的能力面临系统性挑战。为了减少土地利用与粮食作物种植的冲突,建议在非洲边缘旱地(MADs)建立可持续生物能源种植系统(BCSs)。本研究回顾了生物多样性生物多样性生物系统面临的最重要的社会经济和环境挑战,以及为实现可持续生物经济而最大限度地减少不利后果的关键原则的发展。非洲的社会经济繁荣取决于几种系统的解决方案,而基于多年生生物能源作物的bcs是有前途的战略,因为它们为农村地区提供了可再生和可持续的能源。然而,还必须考虑贫困、粮食安全、性别平等、获得能源和环境影响等关键的多维挑战,以确保长期可持续性。这篇综述主张更透明的土地销售/使用(考虑到妇女的农业工作)和更多的多年生生物能源作物。在此背景下,制定了以人为本的自下而上方法的关键原则,这被认为是确保未来MADs上的bcs可持续发展的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Earth Interactions
Earth Interactions 地学-地球科学综合
CiteScore
2.70
自引率
5.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: Publishes research on the interactions among the atmosphere, hydrosphere, biosphere, cryosphere, and lithosphere, including, but not limited to, research on human impacts, such as land cover change, irrigation, dams/reservoirs, urbanization, pollution, and landslides. Earth Interactions is a joint publication of the American Meteorological Society, American Geophysical Union, and American Association of Geographers.
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