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Soil Functional Zone Management: A Vehicle for Enhancing Production and Soil Ecosystem Services in Row-Crop Agroecosystems

机译:土壤功能区管理:提高行间农业生态系统产量和土壤生态系统服务的工具

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摘要

There is increasing global demand for food, bioenergy feedstocks and a wide variety of bio-based products. In response, agriculture has advanced production, but is increasingly depleting soil regulating and supporting ecosystem services. New production systems have emerged, such as no-tillage, that can enhance soil services but may limit yields. Moving forward, agricultural systems must reduce trade-offs between production and soil services. Soil functional zone management (SFZM) is a novel strategy for developing sustainable production systems that attempts to integrate the benefits of conventional, intensive agriculture, and no-tillage. SFZM creates distinct functional zones within crop row and inter-row spaces. By incorporating decimeter-scale spatial and temporal heterogeneity, SFZM attempts to foster greater soil biodiversity and integrate complementary soil processes at the sub-field level. Such integration maximizes soil services by creating zones of ‘active turnover’, optimized for crop growth and yield (provisioning services); and adjacent zones of ‘soil building’, that promote soil structure development, carbon storage, and moisture regulation (regulating and supporting services). These zones allow SFZM to secure existing agricultural productivity while avoiding or minimizing trade-offs with soil ecosystem services. Moreover, the specific properties of SFZM may enable sustainable increases in provisioning services via temporal intensification (expanding the portion of the year during which harvestable crops are grown). We present a conceptual model of ‘virtuous cycles’, illustrating how increases in crop yields within SFZM systems could create self-reinforcing feedback processes with desirable effects, including mitigation of trade-offs between yield maximization and soil ecosystem services. Through the creation of functionally distinct but interacting zones, SFZM may provide a vehicle for optimizing the delivery of multiple goods and services in agricultural systems, allowing sustainable temporal intensification while protecting and enhancing soil functioning.
机译:全球对食品,生物能源原料和多种生物基产品的需求正在增长。作为回应,农业已经有了先进的生产,但正在日益消耗土壤调节和支持生态系统服务。出现了免耕等新的生产系统,可以提高土壤服务水平,但可能会限制单产。展望未来,农业系统必须减少生产与土壤服务之间的权衡。土壤功能区管理(SFZM)是一种开发可持续生产系统的新策略,该系统试图整合常规集约农业和免耕的收益。 SFZM在作物行和行间空间内创建不同的功能区。通过结合分米尺度的时空异质性,SFZM试图促进更大的土壤生物多样性,并在子领域层面整合互补的土壤过程。这种整合通过创建针对作物生长和单产进行优化的“主动周转”区域来最大化土壤服务(提供服务);以及邻近的“土壤建筑”区域,这些区域可促进土壤结构的发展,碳储量和水分调节(调节和支持服务)。这些区域使SFZM可以确保现有的农业生产力,同时避免或最小化与土壤生态系统服务之间的权衡。此外,SFZM的特定属性可能通过临时集约化(扩大一年中可收获作物的生长时间)来实现供应服务的可持续增长。我们介绍了“良性循环”的概念模型,说明了SFZM系统中作物产量的增加如何创建具有预期效果的自我强化反馈过程,包括减轻了产量最大化与土壤生态系统服务之间的取舍。通过创建功能独特但相互作用的区域,SFZM可以提供一种工具,用于优化农业系统中多种商品和服务的交付,从而在保护和增强土壤功能的同时实现可持续的时间集约化。

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