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首页> 外文期刊>Revista ciencia agronomica >Production, water consumption and nutrient content of Chinese cabbage grown hydroponically in brackish water
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Production, water consumption and nutrient content of Chinese cabbage grown hydroponically in brackish water

机译:微咸水中水培大白菜的产量,耗水量和养分含量

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Underground water reserves in the semi-arid region of Brazil are stored in the crystal formations that in large part have high concentrations of salt. However, the scarcity of this resource makes the use of this water necessary for various activities, including agriculture. The aim of this study was to evaluate the use of brackish water on the electrical conductivity and pH of the nutrient solution, and on the production, water consumption and the uptake of nutrients in Chinese cabbage (Brassica pekinensis L.) under a hydroponic system. The experimental design was completely randomised, with four replications and six levels of water salinity (0.2, 1.2, 2.2, 3.2, 4.2 and 5.2 dS m-1), obtained by adding NaCl to the local water supply, with this water being used to prepare the nutrient solution and to make up the volume lost through evapotranspiration. The results showed that with the exception of the treatment at the lowest salinity, there was a tendency to increased electrical conductivity of the nutrient solution with the increasing salinity of the water; that the pH of the nutrient solution remained within the normal range throughout the cycle; that with the increasing salinity of the solution there was a reduction in all growth and production variables under analysis, in water consumption, and in leaf N, K, Ca and Mg, and an increase in leaf concentrations of Na and Cl. It is possible to use brackish water for the production of Chinese cabbage when grown hydroponically as an alternative for those producers who have an available supply of brackish water and a restricted supply of fresh water, however with a reduction in productivity.
机译:巴西半干旱地区的地下水储备存储在大部分盐含量高的晶体地层中。但是,这种资源的稀缺性使这种水的使用成为包括农业在内的各种活动所必需的。这项研究的目的是评估在水培条件下,咸水对营养液的电导率和pH值的使用,以及对大白菜(Brassica pekinensis L.)的生产,耗水量和营养吸收的影响。实验设计是完全随机的,通过向当地供水中添加氯化钠获得四次重复和六次水盐度(0.2、1.2、2.2、3.2、4.2和5.2 dS m-1)。准备营养液并弥补因蒸散而损失的体积。结果表明,除最低盐度处理外,营养盐溶液的电导率有随水盐度增加而增加的趋势。在整个循环过程中,营养液的pH值均保持在正常范围内;随着溶液盐度的增加,所分析的所有生长和生产变量,耗水量以及叶片中氮,钾,钙和镁的含量均降低,叶片中钠和氯的浓度升高。当以无水方式种植时,可以使用微咸水来生产大白菜,以替代那些既有微咸水供应又有淡水供应受限但生产率降低的生产者。

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