Modern arable and diverse ley farming systems can increase soil organic matter faster than global targets

IF 2 3区 农林科学 Q2 AGRICULTURE, MULTIDISCIPLINARY Renewable Agriculture and Food Systems Pub Date : 2024-09-18 DOI:10.1017/s1742170524000103
Richard Gantlett, Jacob Bishop, Hannah E. Jones, Martin Lukac
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Abstract

Agriculture can be pivotal in mitigating climate change through soil carbon sequestration. Land conversion to pasture has been identified as the most effective method to achieve this. Yet, it creates a perceived trade-off between increasing soil carbon and maintaining arable food crop production. In this on-farm study, we assessed the potential of incorporating a 2-year diverse ley (consisting of 23 species of legumes, herbs, and grasses) within a 7-year arable crop rotation for soil organic matter accumulation. We established upper and lower boundaries of soil organic matter accumulation by comparing this approach to positive (permanent ley, akin to conversion to permanent pasture) and negative (bare soil) references. Our findings in the 2-year diverse ley treatment show greater soil organic matter accumulation in plots with lower baseline levels, suggesting a potential plateau of carbon sequestration under this management practice. In contrast, the positive reference consistently showed a steady rate of organic matter accumulation regardless of baseline levels. Moreover, we observed a concurrent increase in labile carbon content in the 2-year ley treatment and positive reference, indicating improved soil nutrient cycling and ecological processes that facilitate soil carbon sequestration. Our results demonstrate that incorporating a 2-year diverse ley within arable rotations surpasses the COP21 global target of a 0.4% annual increase in soil organic carbon. These findings, derived from a working farm's practical and economic constraints, provide compelling evidence that productive arable agriculture can contribute to climate change mitigation efforts.
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现代耕地和多样化列依耕作制度可以比全球目标更快地增加土壤有机质
农业可以通过土壤固碳在减缓气候变化方面发挥关键作用。将土地转为牧场被认为是实现这一目标的最有效方法。然而,在增加土壤碳含量和维持耕地粮食作物产量之间,我们认为需要权衡利弊。在这项农场研究中,我们评估了在 7 年耕地轮作中种植 2 年多样化牧草(由 23 种豆科植物、草本植物和禾本科植物组成)以积累土壤有机质的潜力。我们将这种方法与正向参考(永久列岛,类似于转换为永久牧场)和负向参考(裸土)进行比较,从而确定了土壤有机质积累的上限和下限。我们在为期 2 年的多样化沥青处理中发现,基线水平较低的地块土壤有机质积累量更大,这表明在这种管理方法下可能会出现固碳高原。相比之下,无论基线水平如何,正参比始终显示出稳定的有机质积累速度。此外,我们还观察到,在 2 年 Ley 处理和正向参照中,可变碳含量同时增加,这表明土壤养分循环和生态过程得到改善,从而促进了土壤固碳。我们的研究结果表明,在耕地轮作中加入 2 年期的多样化ley 超过了 COP21 全球目标,即土壤有机碳每年增加 0.4%。这些研究结果源于一个工作农场的实际和经济限制因素,提供了令人信服的证据,证明生产性耕地农业可以为减缓气候变化做出贡献。
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来源期刊
Renewable Agriculture and Food Systems
Renewable Agriculture and Food Systems 农林科学-农业综合
CiteScore
5.20
自引率
7.40%
发文量
39
审稿时长
>36 weeks
期刊介绍: Renewable Agriculture and Food Systems (formerly American Journal of Alternative Agriculture) is a multi-disciplinary journal which focuses on the science that underpins economically, environmentally, and socially sustainable approaches to agriculture and food production. The journal publishes original research and review articles on the economic, ecological, and environmental impacts of agriculture; the effective use of renewable resources and biodiversity in agro-ecosystems; and the technological and sociological implications of sustainable food systems. It also contains a discussion forum, which presents lively discussions on new and provocative topics.
期刊最新文献
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