化肥依赖性:氮利用效率之外评估农业系统可持续性的新指标

IF 6.4 1区 农林科学 Q1 AGRONOMY
Miguel Quemada, Luis Lassaletta
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引用次数: 0

摘要

种植系统依赖外部氮(N)来生产粮食。然而,尽管氮肥施用量的过度增加会损害人类和环境健康,但我们却缺乏衡量标准来说明社会对肥料的依赖程度。本研究的目的是提出一个新指标--氮肥依赖性,计算方法是人为可控外部投入与总氮投入之间的比率。氮肥依赖性有坚实的数学基础,是通过关闭氮利用效率(NUE)方程得出的。本研究还测试了氮肥依赖性概念在种植系统(植物-土壤)尺度和不同空间尺度(从田间到国家)的价值,作为促进可持续生产的补充指标。以谷物为主要作物进行的田间试验表明,当以豆科植物取代大麦前茬作物时,氮肥依赖性占土壤遗产的比例在施肥处理中减少了 15%。在一个农场群体中,氮肥依赖度从 47% 到 95% 不等,并考虑了生物固氮和灌溉水氮投入的相关性,为绩效指标(即氮利用效率)增加了相关信息。在国家范围内,氮肥依赖性呈现出不同的时间模式,主要取决于大气生物固氮的相关性。在过去的五十年中,全球种植系统的氮肥依赖度已上升至≈83%,尽管地区间的氮交换量有所增加。氮肥依赖性在监测旨在提高系统自主性的工作成果方面具有巨大潜力,在类似的农业系统中,氮肥依赖性还可用于确定可减少肥料需求的做法。总之,氮肥依存度是一个新指标,可用于评估不同规模种植系统的农业环境可持续性,并为氮利用效率、氮产量和氮盈余等传统指标提供了一个补充维度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fertilizer dependency: a new indicator for assessing the sustainability of agrosystems beyond nitrogen use efficiency

Fertilizer dependency: a new indicator for assessing the sustainability of agrosystems beyond nitrogen use efficiency

Cropping systems depend on external nitrogen (N) to produce food. However, we lack metrics to account for society’s fertilizer dependency, although excessive increases in N application damage human and environmental health. The objective of this study is to propose a novel indicator, N fertilizer dependency, calculated as the ratio between human-controllable external inputs and total N inputs. Nitrogen fertilizer dependency has a solid mathematical base being derived from closing the nitrogen use efficiency (NUE) equation. This study also tests the value of the N fertilizer dependency concept at the cropping system (plant-soil) scale and at different spatial scales, from field to country, as a complementary indicator to promote sustainable production. The field experiments conducted with grain cereals as a main crop showed that when replacing the barley precedent crop with a legume, N fertilizer dependency accounted for soil legacy and was reduced by 15% in fertilized treatments. In a farm population, N fertilizer dependency ranged from 47 to 95% and accounted for the relevance of biological fixation and irrigation water N inputs, adding pertinent information to performance indicators (i.e., NUE). At the country scale, N fertilizer dependency showed different temporal patterns, depending mainly on the relevance of biological atmospheric N fixation. Nitrogen fertilizer dependency of global cropping systems has risen to ≈83% in the last five decades, even though the N exchange among regions has increased. Nitrogen fertilizer dependency has great potential to monitor the achievements of efforts aiming to boost system autonomy, and within similar agricultural systems, it can be used to identify practices that lead to a reduction of fertilizer needs. In summary, N fertilizer dependency is a new indicator to evaluate the agroenvironmental sustainability of cropping systems across the scales and provides a complementary dimension to the traditional indicators such as NUE, N output, and N surplus.

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来源期刊
Agronomy for Sustainable Development
Agronomy for Sustainable Development 农林科学-农艺学
CiteScore
10.70
自引率
8.20%
发文量
108
审稿时长
3 months
期刊介绍: Agronomy for Sustainable Development (ASD) is a peer-reviewed scientific journal of international scope, dedicated to publishing original research articles, review articles, and meta-analyses aimed at improving sustainability in agricultural and food systems. The journal serves as a bridge between agronomy, cropping, and farming system research and various other disciplines including ecology, genetics, economics, and social sciences. ASD encourages studies in agroecology, participatory research, and interdisciplinary approaches, with a focus on systems thinking applied at different scales from field to global levels. Research articles published in ASD should present significant scientific advancements compared to existing knowledge, within an international context. Review articles should critically evaluate emerging topics, and opinion papers may also be submitted as reviews. Meta-analysis articles should provide clear contributions to resolving widely debated scientific questions.
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