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Performance of wheat-based cropping systems and economic risk of low relative productivity assessment in a sub-dry Mediterranean environment

机译:亚干燥地中海环境中小麦的种植系统和低相对生产力评估的经济风险

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The promotion of optimum rotations and agricultural management of winter wheat-based cropping systems is very critical, as wheat is considered an essential component in the Mediterranean diet. Considering the delicate economic situation of farmers in the Mediterranean area, recommending a low risk, sustainable farming system is desirable. In this study, an innovative application of a multi-criteria field-level approach is presented, targeting food security, farmer profitability and environmental sustainability. The CropSyst biophysical simulation model was calibrated and implemented for the study site. It was chosen for its agro-environmental robustness to simulate four rotations (wheat-wheat, wheat-fallow, wheat-potato, and wheat-fava bean). Four types of wheat agricultural management systems (full fertilization and full irrigation, full fertilization and zero irrigation, zero fertilization and full irrigation, and zero fertilization and irrigation) were tested in low and high soil water holding capacity (WHC) types. The effects of soil conditions, management practices and rotation type on wheat grain yields were assessed. Furthermore, the performance of each winter wheat-based cropping system was evaluated in terms of productivity (protein production and profitability) and the efficient use of resources (nitrogen and water), as well as the economic risk of low relative productivity each one engenders. The results show that there is no particular optimal scenario that can simultaneously ensure high productivity, reduce economic risk of low relative productivity, and achieve high wheat- water- and nitrogen-use efficiency. However, the wheat-fava bean rotation cultivated with no wheat fertilization appeared to be a better substitute to the wheatwheat rotation in terms of protein production (0.93 t/ha versus 0.8 t/ha in low WHC soil and 1.34 t/ha versus 1.17 t/ha in high WHC). This cropping system achieved a higher net profit (2111 US$/ha versus 1222US$/ha in low WHC and 3550 US$/ha versus 2450 US$/ha in high WHC), showing high resource-use efficiency and was less risky for farmers. Moreover, a very high profit could only be attained with the wheat-potato rotation (8640 US$/ha and 12,170 US$/ha in low and high WHC, respectively), yet with low input-efficiency and high economic risk of low relative productivity.
机译:由于小麦被认为是地中海饮食中的一个重要组成部分,促进冬季小麦种植系统的最佳转动和农业管理是非常关键的。考虑到地中海地区农民的微妙经济形势,建议低风险,可持续的农业制度是可取的。在这项研究中,提出了一种创新应用,旨在实现粮食安全,农民盈利能力和环境可持续性。校准和实施了作物的生物物理模拟模型为研究现场实施。它被选为其农业环境稳健性,以模拟四个旋转(小麦小麦,小麦休耕,小麦 - 马铃薯和小麦小豆类)。在低土壤水持有能力(WHC)类型中测试了四种小麦农业管理系统(全施肥和全灌水,全施肥,零施肥和零施肥,零施肥和灌溉)。评估了土壤条件,管理实践和旋转类型对小麦籽粒产量的影响。此外,根据生产率(蛋白质生产和盈利能力)和资源(氮气和水)的有效利用,以及每一个参与者的低相对生产力的经济风险,评估每个冬季小麦种植系统的性能。结果表明,没有特别的最佳情景,可以同时确保高生产率,降低相对生产率低的经济风险,并实现高小麦 - 水和氮气利用效率。然而,没有小麦施肥的小麦 - 美洲豆旋转似乎是蛋白质产量(0.93T / HA在低WHC土壤中的0.8T / ha而不是0.8t / ha的0.8 t / ha而不是1.17 t的情况下更好地替代/ ha高whc)。这种裁剪系统实现了较高的净利润(2111美元US $ /公顷,低WHC和3550美元/公顷的高速公路,高速公路的2450美元/公顷),呈现出高的资源利用效率,风险较小农民。此外,只有在小麦 - 马铃薯旋转(8640美元/公顷和12,170美元,分别为12,170美元,分别为12,170美元,分别为12,170美元,分别为12,170美元),较低的投入效率和高相对的高度经济风险生产率。

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