首页> 外文期刊>Acta Horticulturae >Heads production in Cynara cardunculus L. subsp. scolymus (L.) Hegi as affected by plant density and arrangement.
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Heads production in Cynara cardunculus L. subsp. scolymus (L.) Hegi as affected by plant density and arrangement.

机译:负责Cynara cardunculus L. subsp。的生产。受植物密度和排列影响的sco。

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摘要

Economic sustainability of today's artichoke cultivation aims, to some extent, to process innovation. Among the various steps of the productive chain, harvesting still done by hand, absorbs a large need of labor, resulting in the most expensive one. In order to develop mechanization of some cropping steps and with the aim of exploiting secondary heads production for industrial process, experiments were carried out in an area highly representative for globe artichoke cultivation (Niscemi, Sicily, Italy). The cultivar 'Violet de Provence' was grown using three different plant densities 0.6, 0.9 and 1.2 plant m-2. At 0.6 and 0.9 plant m-2 were used single row, while at 1.2 plant m-2 were used twin rows. Results showed solutions which allow to introduce mechanical harvest, able to reduce production costs, and to increase yield. Among the limits to overcome contemporary maturation of the heads is highlighted. With the highest plant density valid results were achieved for the purpose of process innovation. However, the adoption of alternative plant density instead of the traditional one should be assessed in relation to an increase of costs for crop managements, mainly due to the higher number of propagation material per hectare, energy inputs and other economic aspects. In order to optimize the innovation should be carefully assessed cases where the individual and take account of the cost advantages also in consideration of possible differences due to damage of the product during the stages of harvesting.
机译:当今朝鲜蓟种植的经济可持续性在某种程度上旨在进行创新。在生产链的各个步骤中,仍然是手工完成的收割工作吸收了大量劳动力,因此成本最高。为了发展某些播种步骤的机械化并以将二次head头生产用于工业加工为目的,在极具代表性的朝鲜蓟栽培地区(尼西米,西西里岛,意大利)进行了实验。使用三种不同的植物密度0.6、0.9和1.2植物m -2 培育'Violet de Provence'品种。在0.6和0.9处,植物m -2 用于单行,而在1.2处,植物m -2 用于双行。结果显示了可以引入机械收割的解决方案,能够降低生产成本并提高产量。突出了克服当今头部成熟的局限性。为了达到工艺创新的目的,以最高的工厂密度获得了有效的结果。但是,应根据作物管理成本的增加来评估采用替代植物密度代替传统植物密度的主要原因,这主要是由于每公顷繁殖材料,能源投入和其他经济方面的数量增加。为了优化创新,应仔细评估个体情况,并考虑成本优势,同时还要考虑到收获阶段产品损坏可能造成的差异。

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