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A Functional Land Management conceptual framework under soil drainage and land use scenarios

机译:土壤排水和土地利用情景下的功能性土地管理概念框架

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Agricultural soils offer multiple soil functions, which contribute to a range of ecosystem services, and the demand for the primary production function is expected to increase with a growing world population. Other key functions on agricultural land have been identified as water purification, carbon sequestration, habitat biodiversity and nutrient cycling, which all need to be considered for sustainable intensification. All soils perform all functions simultaneously, but the variation in the capacity of soils to supply these functions is reviewed in terms of defined land use types (arable, bio-energy, broadleaf forest, coniferous forest, managed grassland, other grassland and Natura 2000) and extended to include the influence of soil drainage characteristics (well, moderately/imperfect, poor and peat). This latter consideration is particularly important in the European Atlantic pedo-climatic zone; the spatial scale of this review. This review develops a conceptual framework on the multi-functional capacity of soils, termed Functional Land Management, to facilitate the effective design and assessment of agri-environmental policies. A final functional soil matrix is presented as an approach to show the consequential changes to the capacity of the five soil functions associated with land use change on soils with contrasting drainage characteristics. Where policy prioritises the enhancement of particular functions, the matrix indicates the potential trade-offs for individual functions or the overall impact on the multi-functional capacity of soil. The conceptual framework is also applied by land use area in a case study, using the Republic of Ireland as an example, to show how the principle of multi-functional land use planning can be readily implemented. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:农业土壤具有多种土壤功能,可为一系列生态系统服务做出贡献,随着世界人口的增长,对初级生产功能的需求预计会增加。已经确定了农业土地上的其他关键功能是水净化,固碳,生境生物多样性和养分循环,所有这些都需要考虑以进行可持续集约化。所有土壤同时执行所有功能,但根据定义的土地利用类型(可耕种,生物能源,阔叶林,针叶林,管理草地,其他草地和Natura 2000)来审查土壤提供这些功能的能力的变化。并扩展到包括土壤排水特性的影响(良好,中等/不完美,较差和泥炭)。后面的考虑在欧洲大西洋的古气候区特别重要。此评论的空间范围。这项审查针对土壤的多功能能力建立了一个概念框架,称为功能性土地管理,以促进有效设计和评估农业环境政策。提出了最终的功能性土壤矩阵作为一种方法,以显示与土地利用变化相关的五种土壤功能的能力的相应变化,并具有相反的排水特性。在政策优先考虑增强特定功能的情况下,矩阵显示了各个功能的潜在权衡或对土壤多功能功能的总体影响。在案例研究中,以爱尔兰共和国为例,在土地利用领域也应用了概念框架,以说明如何能够轻松实施多功能土地利用规划的原则。 (C)2015作者。由Elsevier Ltd.发布

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