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首页> 外文期刊>Journal of Cleaner Production >From animals to machines. The impact of mechanization on the carbon footprint of traction in Spanish agriculture: 1900-2014
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From animals to machines. The impact of mechanization on the carbon footprint of traction in Spanish agriculture: 1900-2014

机译:从动物到机器。机械化对西班牙农业牵引碳足迹的影响:1900-2014年

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Mechanization of agriculture drastically increases labour productivity in crop production, playing a major role in industrialization by freeing up workforce for industry and services. These historical processes are well studied, but there is much less knowledge on their environmental implications, particularly the carbon footprint.In this work, we aimed to reconstruct the complete historical process of mechanization in Spanish agriculture at the national scale, estimating the carbon footprint of traction through a life cycle assessment approach. The assessment includes greenhouse gas emissions from working animals and feed production, and accounts for the historical changes in the energy efficiency of the industrial production of machinery and fuels.The results reveal an increase in the carbon footprint of traction from 3.1 Pg CO(2)e yr(-1) in 1900 to 11-12 Pg CO(2)e yr(-1) in the 1970s and 1980s, decreasing to 7-8 Pg CO(2)e yr(-1) in 2010-2014. Area-based emissions ranged 185-242 kg CO(2)e ha(-1) yr(-1) in 1900-1933, when the practical totality of traction was animal, and 503-540 kg CO(2)e ha(-1) yr(-1) in the 21st century, when animal traction had almost completely disappeared. Product-based emissions were similar at the beginning and at the end of the study period, as the productivity growth offset the area-based emissions growth. The results show a large peak in emissions during the main decades of the mechanization process. Thus, the large savings observed in the last three decades start from a very high emission level. The carbon footprint of traction could be reduced by mimicking the logic of traditional organic systems but still benefiting from modern technological efficiency, through the self-production of the fuel. Our analysis, however, shows that a simple shift to biofuels may actually increase greenhouse gas emissions and consume a large share of the current agricultural output. Therefore, its combination with significant reductions in fuel and feed demand would be necessary to achieve its mitigation potential. (C) 2019 Elsevier Ltd. All rights reserved.
机译:农业机械化极大地提高了作物生产中的劳动生产率,通过释放工业和服务业的劳动力在工业化中发挥了重要作用。对这些历史过程进行了很好的研究,但是对它们的环境影响(尤其是碳足迹)的了解却很少。在这项工作中,我们旨在在国家规模上重建西班牙农业机械化的完整历史过程,从而估算西班牙的碳足迹。通过生命周期评估方法进行牵引。该评估包括工作动物和饲料生产产生的温室气体排放量,并说明了机械和燃料工业生产的能源效率的历史变化,结果表明牵引力的碳足迹从3.1 Pg CO(2)增加了1900年的e yr(-1)到1970年代和1980年代的11-12 Pg CO(2)e yr(-1),在2010-2014年降至7-8 Pg的CO(2)e yr(-1)。 1900-1933年,当牵引力的实际总量为动物时,基于区域的排放范围为185-242 kg CO(2)e ha(-1)yr(-1),以及503-540 kg CO(2)e ha( -1)yr(-1)在21世纪,那时动物的牵引力几乎完全消失了。在研究期的开始和结束时,基于产品的排放量相似,因为生产力的增长抵消了基于区域的排放量的增长。结果表明,在机械化过程的主要几十年中,排放量出现了很大的峰值。因此,在过去的三十年中观察到的大量节省源于很高的排放水平。可以通过模仿传统有机系统的逻辑来减少牵引的碳足迹,但仍可通过燃料的自产而受益于现代技术效率。然而,我们的分析表明,向生物燃料的简单转换实际上可能会增加温室气体排放并消耗当前农业产出的很大一部分。因此,将其与大量减少燃料和饲料需求相结合对于实现其缓解潜力很有必要。 (C)2019 Elsevier Ltd.保留所有权利。

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