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A systematic and quantitative approach to improve water use efficiency in agriculture

机译:一种系统和定量的方法来提高农业用水效率

摘要

As the competition for the finite water resources on earth increases due to growth in population and affluence, agriculture is faced with intensifying pressure to improve the efficiency of water used for food production. The causes for the relatively low water use efficiency in agriculture are numerous and complex, including environmental, biological, engineering, management, social, and economic facets. The complexity of the problem, with its myriads of local variations, requires a comprehensive conceptual framework of the underlying physical and biological processes as the basis to analyze the existing situation and quantify the efficiencies, and to plan and execute improvements. This paper proposes such a framework, based on the simple fact that the overall efficiency of any process consisting of a chain of sequential step is the product of the efficiency (i.e., output/input ratio) of its individual component steps. In most cases of water use, a number of process chains, both branching and merging, are involved. Means to integrate the diverging and converging chains are developed and presented as equations. Upscaling from fields to regions and beyond are discussed. This chain of efficiencies approach is general and can be applied to any process composed of chains of sequential steps. Here the framework is used to analyze the systems of irrigated and dryland crop production, and animal production on rangeland. Range of plausible efficiencies of each step is presented as tables, with values separately for the poor and for the good situation of circumstances, management and technology. Causes of the differences in efficiency of each step, going from water delivery to soil water extraction, transpiration, photosynthesis, and conversion to crop biomass and yield, and to animal product are briefly discussed. Sample calculations are made to demonstrate how modest differences in the efficiencies of the component steps are manifested as large to huge differences in the overall efficiency. Based on an equation quantifying the impact of changes in efficiency of component steps on the overall efficiency, it is concluded that generally, it is more effective to made modest improvements in several or more steps than to concentrate efforts to improve one or two steps. Hence, improvement efforts should be systematic and not overly concentrated on one or two components. The potential use of the same equation as the point of departure to optimize the allocation of economic resource among the component steps to maximize the improvement in the overall water use efficiency is elaborated on. The chain of efficiencies framework provides the means to examine the current levels of efficiency along the pathways of agricultural water use, to analyze where inefficiencies lie by comparing with the range of known efficiency values in the tables presented, to assess the potential improvements that may be achieved in various parts and their impact on the overall efficiency, and to aid in the optimal allocation of resources for improvements. © 2007 Springer-Verlag.
机译:由于人口和富裕程度的增长,对地球上有限的水资源的竞争越来越激烈,农业面临着不断提高生产食品用水效率的压力。农业用水效率较低的原因是多种多样的,包括环境,生物,工程,管理,社会和经济方面。问题的复杂性以及无数的局部变化,需要一个基本的物理和生物过程的综合概念框架,作为分析现有情况和量化效率以及计划和执行改进措施的基础。本文基于这样一个简单的事实提出了这样一个框架,即一个由一系列连续步骤组成的过程的总效率是其各个组成步骤的效率(即输出/输入比)的乘积。在大多数用水情况下,涉及分支和合并的许多过程链。开发了整合发散链和收敛链的方法,并将其表示为方程式。讨论了从字段到区域以及其他区域的升级。这种效率链方法是通用的,可以应用于由顺序步骤链组成的任何过程。在这里,该框架用于分析灌溉和旱地作物生产以及牧场上的动物生产系统。表中列出了每个步骤的合理效率范围,其中分别针对环境,管理和技术方面的较差和良好情况提供了值。简要讨论了从输水到土壤水提取,蒸腾,光合作用以及转化为作物生物量和产量以及转化为动物产品的每个步骤效率差异的原因。进行了样本计算,以证明各个步骤效率的适度差异是如何表现出总体效率的巨大差异。基于量化组成步骤效率变化对整体效率的影响的方程式,得出的结论是,通常,在几个或多个步骤中进行适度改进比集中精力改进一个或两个步骤更为有效。因此,改进工作应该是系统的,而不是过于集中在一个或两个组件上。详细阐述了可能使用与出发点相同的方程式来优化组成步骤之间的经济资源分配,以最大程度地提高整体用水效率的问题。效率链框架提供了一种手段,可以检查农业用水途径中当前的效率水平,通过与所示表格中的已知效率值范围进行比较来分析效率低下的地方,以评估可能的改进措施。在各个部分实现的目标及其对整体效率的影响,并有助于优化分配资源以进行改进。 ©2007年Springer-Verlag。

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