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首页> 外文期刊>Acta Horticulturae >Nutrient uptake concentrations in a cucumber crop grown in a closed hydroponic system under Mediterranean climatic conditions as influenced by irrigation schedule.
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Nutrient uptake concentrations in a cucumber crop grown in a closed hydroponic system under Mediterranean climatic conditions as influenced by irrigation schedule.

机译:受灌溉计划的影响,在地中海气候条件下,在封闭的水培系统中生长的黄瓜作物中的养分吸收浓度。

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Preliminary observations have indicated that the nutrient-to-water uptake ratios in crops grown hydroponically in Mediterranean greenhouses may be substantially different than in north-European greenhouses, due to differences in climatic conditions. Furthermore, irrigation schedule may also have an impact on nutrient and water uptake. In the present study, the nutrient to water uptake ratios, commonly termed uptake concentrations (UC), were estimated in a spring crop of cucumber grown in a closed hydroponic system with zero discharge of drainage solution using pumice as growing medium. Three different irrigation schedules aimed at obtaining three target drainage percentages (DP), specifically 15%, 30%, or 45% of the total nutrient solution supply, were compared. Mean UC of macro- and micro-nutrients were determined following two alternative methods. According to the first method, apparent UC were estimated for three successive time intervals by measuring the nutrient and water removal from the recirculating nutrient solution. According to the second method, mean UC for the entire growing season were estimated on the basis of total nutrient recovery from the whole plant biomass and total water consumption. The UC of K, Ca, Mg and Fe, when calculated on the basis of nutrient and water removal from the nutrient solution, were significantly higher than those estimated by measuring the amounts of nutrients in the total plant biomass and the water consumption. Possible explanations for these differences, which were more marked for Mg and Fe, are discussed. When the calculations were based on nutrient and water removal from the nutrient solution, the UC was significantly lower for K, but higher for Mg, than those found under north-European (Dutch) climatic conditions. With respect to Ca, the UC obtained before the start of harvesting were higher than under north-European climatic conditions, but tended to decrease to values similar with the latter after the start of harvesting. The irrigation treatments did not have a consistent effect on the UC of K, Ca, Mg, and Fe, although a slight decrease was observed in some cases, as the DP increased.
机译:初步观察表明,由于气候条件的差异,地中海大棚采用水培法种植的作物中养分与水分的吸收率可能与北欧大棚中的有所不同。此外,灌溉时间表也可能对养分和水分吸收产生影响。在本研究中,估计了在封闭水培系统中以浮石为生长介质的排水溶液为零排放的黄瓜春季作物中养分与水的吸收比,通常称为吸收浓度(UC)。比较了旨在获得三个目标排水百分比(DP)的三种不同灌溉计划,特别是营养液总供应量的15%,30%或45%。两种替代方法确定了常量和微量营养素的平均UC。根据第一种方法,通过测量从循环营养液中去除的营养物和水分,在三个连续的时间间隔内估算了表观UC。根据第二种方法,根据从整个植物生物量中回收的总养分和总耗水量估算出整个生长期的平均UC。基于从养分溶液中去除养分和水分计算出的K,Ca,Mg和Fe的UC显着高于通过测量植物总生物量中养分的含量和用水量估算的UC。讨论了这些差异的可能解释,这些差异以Mg和Fe更为明显。当基于营养物和营养物溶液中的水分进行计算时,与在北欧(荷兰)气候条件下发现的值相比,K的UC值显着降低,而Mg的UC值显着增加。关于Ca,收获开始前获得的UC高于北欧气候条件下的UC,但在收获开始后趋于降低至与后者相似的值。灌溉处理对钾,钙,镁和铁的UC含量没有持续的影响,尽管随着DP的增加,在某些情况下观察到略有下降。

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