首页> 外文期刊>Ambio: A Journal of the Human Environment >The Quadruple Squeeze: Defining the safe operating space for freshwater use to achieve a triply green revolution in the Anthropocene
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The Quadruple Squeeze: Defining the safe operating space for freshwater use to achieve a triply green revolution in the Anthropocene

机译:四重挤压:定义淡水使用的安全操作空间,以实现人类世代的绿色革命

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摘要

Humanity has entered a new phase of sustainability challenges, the Anthropocene, in which human development has reached a scale where it affects vital planetary processes. Under the pressure from a quadruple squeeze—from population and development pressures, the anthropogenic climate crisis, the anthropogenic ecosystem crisis, and the risk of deleterious tipping points in the Earth system—the degrees of freedom for sustainable human exploitation of planet Earth are severely restrained. It is in this reality that a new green revolution in world food production needs to occur, to attain food security and human development over the coming decades. Global freshwater resources are, and will increasingly be, a fundamental limiting factor in feeding the world. Current water vulnerabilities in the regions in most need of large agricultural productivity improvements are projected to increase under the pressure from global environmental change. The sustainability challenge for world agriculture has to be set within the new global sustainability context. We present new proposed sustainability criteria for world agriculture, where world food production systems are transformed in order to allow humanity to stay within the safe operating space of planetary boundaries. In order to secure global resilience and thereby raise the chances of planet Earth to remain in the current desired state, conducive for human development on the long-term, these planetary boundaries need to be respected. This calls for a triply green revolution, which not only more than doubles food production in many regions of the world, but which also is environmentally sustainable, and invests in the untapped opportunities to use green water in rainfed agriculture as a key source of future productivity enhancement. To achieve such a global transformation of agriculture, there is a need for more innovative options for water interventions at the landscape scale, accounting for both green and blue water, as well as a new focus on cross-scale interactions, feed-backs and risks for unwanted regime shifts in the agro-ecological landscape.
机译:人类进入了可持续发展挑战的新阶段,即人类世,人类发展达到了影响重要星球进程的规模。在四倍紧缩的压力下(人口和发展压力,人为气候危机,人为生态系统危机以及地球系统中有害的临界点的风险),人类可持续开采地球的自由度受到严重限制。 。正是在这种现实中,世界粮食生产需要发生新的绿色革命,以实现未来几十年的粮食安全和人类发展。全球淡水资源已经并将日益成为养活世界的基本限制因素。在全球环境变化的压力下,最需要大幅度提高农业生产率的地区当前的水脆弱性预计将增加。必须在新的全球可持续性背景下应对世界农业的可持续性挑战。我们为世界农业提出了新的可持续性建议标准,在该标准中,世界粮食生产系统发生了变化,以使人类能够停留在行星边界的安全运行空间内。为了确保全球弹性,从而增加地球保持当前理想状态的机会,从长远来看有利于人类发展,必须尊重这些行星边界。这就要求进行三次绿色革命,这一革命不仅使世界许多地区的粮食产量增加一倍以上,而且在环境上也是可持续的,并投资未开发的机会将雨水农业中的绿水用作未来生产力的关键来源增强。为了实现这种全球农业转型,需要有更多创新的方案来进行景观尺度的水干预,同时考虑绿水和蓝水,并需要重新关注跨尺度的相互作用,反馈和风险农业生态领域中不必要的政权转移。

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