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全球耕地范围内的食物供应和生物能源生产。

Food supply and bioenergy production within the global cropland planetary boundary.

机构信息

School of Geosciences, University of Edinburgh, Edinburgh, United Kingdom.

Department of Physical Geography and Ecosystem Science, Lund University, Sölvegatan 12, Lund, Sweden.

出版信息

PLoS One. 2018 Mar 22;13(3):e0194695. doi: 10.1371/journal.pone.0194695. eCollection 2018.

Abstract

Supplying food for the anticipated global population of over 9 billion in 2050 under changing climate conditions is one of the major challenges of the 21st century. Agricultural expansion and intensification contributes to global environmental change and risks the long-term sustainability of the planet. It has been proposed that no more than 15% of the global ice-free land surface should be converted to cropland. Bioenergy production for land-based climate mitigation places additional pressure on limited land resources. Here we test normative targets of food supply and bioenergy production within the cropland planetary boundary using a global land-use model. The results suggest supplying the global population with adequate food is possible without cropland expansion exceeding the planetary boundary. Yet this requires an increase in food production, especially in developing countries, as well as a decrease in global crop yield gaps. However, under current assumptions of future food requirements, it was not possible to also produce significant amounts of first generation bioenergy without cropland expansion. These results suggest that meeting food and bioenergy demands within the planetary boundaries would need a shift away from current trends, for example, requiring major change in the demand-side of the food system or advancing biotechnologies.

摘要

在不断变化的气候条件下,为预计到 2050 年的全球 90 多亿人口提供食物是 21 世纪面临的主要挑战之一。农业的扩张和集约化导致了全球环境变化,并威胁到地球的长期可持续性。有人提议,全球无冰陆地表面不应有超过 15%被转化为耕地。用于土地气候缓解的生物能源生产给有限的土地资源带来了额外的压力。在这里,我们使用一个全球土地利用模型,在耕地的行星边界内检验食物供应和生物能源生产的规范性目标。结果表明,在不超过行星边界的情况下,为全球人口提供充足的食物是可能的。然而,这需要增加粮食产量,特别是在发展中国家,并减少全球作物产量差距。然而,根据对未来粮食需求的假设,不进行耕地扩张,也不可能生产大量第一代生物能源。这些结果表明,要在行星边界内满足粮食和生物能源的需求,就需要从当前的趋势转变,例如,需要对粮食系统的需求方进行重大改变,或者推进生物技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ec1/5864037/bb087dd82871/pone.0194695.g001.jpg

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