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Climate change adaptation and water saving by innovative irrigation management applied on open field globe artichoke

机译:通过创新的灌溉管理方法将气候变化适应和节水应用于露天朝鲜蓟

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The setting up of innovative irrigation water management might contribute to the mitigation of negative issues related to climate change. Our hypothesis was that globe artichoke irrigated with a traditionally drip system could be converted to an innovative water management system based on precision irrigation techniques and on evaporative cooling application in order to improve crop physiological status with positive impacts on earliness, total heads yield and water saving. Over two experiments carried out at plot- and field-scale, two litigation management systems, differing in type and application lime, were compared: (i) conventional, and (ii) canopy-cooling. Plant physiological status at a weekly sampling interval and the head atrophy incidence (as the ratio of the total primary heads collected) were monitored. We also recorded and determined heads production, and yield components. In both experiments, throughout the application period of evaporative cooling (three months), canopy-cooling showed the lowest value of leaf temperature and the highest photosynthesis values compared with the conventional one (+3 degrees C and -30%, respectively). The physiological advantage gained by the crop with evaporative cooling has led to a higher production both in terms of total yield (+30%), and in terms of harvested first order heads that from an economic viewpoint are the most profitable for farmers. At farm-scale, the canopy-cooling treatment resulted in a higher earliness (35 days) and water productivity (+36%) compared with conventional one. Our findings show that by combining evaporative cooling practice with precision irrigation technique the heads yield can be optimized also leading to a relevant water saving (-34%). Moreover, the study proved that canopy-cooling set up might be a winning strategy in order to mitigate climatic changes and heat stress conditions. (C) 2018 The Authors. Published by Elsevier B.V.
机译:建立创新的灌溉水管理制度可能有助于减轻与气候变化有关的负面问题。我们的假设是,用传统滴灌系统灌溉的朝鲜蓟可以转换为基于精密灌溉技术和蒸发冷却应用的创新水管理系统,以改善作物的生理状况,并对早熟,总穗数和节水产生积极影响。在地块规模和现场规模进行的两个实验中,比较了两种类型和应用范围不同的诉讼管理系统:(i)常规,和(ii)机盖冷却。每周一次的采样间隔监测植物的生理状况和头部萎缩的发生率(以所收集的初级头的总比例)。我们还记录并确定了机头产量以及产量构成。在两个实验中,在整个蒸发冷却的应用期间(三个月),与常规的相比,冠层冷却显示出最低的叶片温度值和最高的光合作用值(分别为+3摄氏度和-30%)。作物通过蒸发冷却获得的生理优势导致总产量(+ 30%)和收获的一级头的产量提高,从经济角度来看,一级头对农民而言是最有利可图的。在农场规模上,与传统的相比,冠层降温处理的早期(35天)和水生产率(+ 36%)更高。我们的发现表明,通过将蒸发冷却实践与精密灌溉技术相结合,可以优化水头产量,还可以节省相关的水(-34%)。此外,研究证明树冠冷却系统可能是缓解气候变化和热应力条件的一种成功策略。 (C)2018作者。由Elsevier B.V.发布

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