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Reconciling Pesticide Reduction with Economic and Environmental Sustainability in Arable Farming

机译:在耕作农业中减少农药与经济和环境的可持续发展

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摘要

Reducing pesticide use is one of the high-priority targets in the quest for a sustainable agriculture. Until now, most studies dealing with pesticide use reduction have compared a limited number of experimental prototypes. Here we assessed the sustainability of 48 arable cropping systems from two major agricultural regions of France, including conventional, integrated and organic systems, with a wide range of pesticide use intensities and management (crop rotation, soil tillage, cultivars, fertilization, etc.). We assessed cropping system sustainability using a set of economic, environmental and social indicators. We failed to detect any positive correlation between pesticide use intensity and both productivity (when organic farms were excluded) and profitability. In addition, there was no relationship between pesticide use and workload. We found that crop rotation diversity was higher in cropping systems with low pesticide use, which would support the important role of crop rotation diversity in integrated and organic strategies. In comparison to conventional systems, integrated strategies showed a decrease in the use of both pesticides and nitrogen fertilizers, they consumed less energy and were frequently more energy efficient. Integrated systems therefore appeared as the best compromise in sustainability trade-offs. Our results could be used to re-design current cropping systems, by promoting diversified crop rotations and the combination of a wide range of available techniques contributing to pest management.
机译:减少农药使用是追求可持续农业的高度优先目标之一。到目前为止,有关减少农药使用的大多数研究都比较了有限数量的实验原型。在这里,我们评估了法国两个主要农业地区的48个耕作系统的可持续性,包括常规,综合和有机系统,其农药使用强度和管理范围广泛(农作物轮作,土壤耕种,品种,施肥等)。 。我们使用一组经济,环境和社会指标评估了种植系统的可持续性。我们没有发现农药使用强度与生产力(排除有机农场时)和盈利能力之间的任何正相关。此外,农药使用与工作量之间没有关系。我们发现,在农药用量少的种植系统中,轮作多样性更高,这将支持轮作多样性在综合和有机战略中的重要作用。与常规系统相比,综合策略表明减少了农药和氮肥的使用,它们消耗的能量更少,并且通常更节能。因此,集成系统似乎是可持续性权衡的最佳折衷方案。我们的结果可用于通过促进多种作物轮作以及结合多种有助于病虫害管理的可用技术来重新设计当前的种植系统。

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