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Interactions between salinity and irrigation frequency in greenhouse pepper grown in closed-cycle hydroponic systems

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dc.contributor.author Savvas, D en
dc.contributor.author Stamati, E en
dc.contributor.author Tsirogiannis, IL en
dc.contributor.author Mantzos, N en
dc.contributor.author Barouchas, PE en
dc.contributor.author Katsoulas, N en
dc.contributor.author Kittas, C en
dc.date.accessioned 2014-06-06T06:47:51Z
dc.date.available 2014-06-06T06:47:51Z
dc.date.issued 2007 en
dc.identifier.issn 03783774 en
dc.identifier.uri http://dx.doi.org/10.1016/j.agwat.2007.05.001 en
dc.identifier.uri http://62.217.125.90/xmlui/handle/123456789/3820
dc.subject Capsicum annum en
dc.subject Closed hydroponics en
dc.subject Irrigation frequency en
dc.subject Nutrient solution en
dc.subject Salt stress en
dc.subject Soilless culture en
dc.subject.other Concentration (process) en
dc.subject.other Effluents en
dc.subject.other Nutrients en
dc.subject.other Salts en
dc.subject.other Capsicum annum en
dc.subject.other Closed hydroponics en
dc.subject.other Irrigation frequency en
dc.subject.other Nutrient solution en
dc.subject.other Salt stress en
dc.subject.other Soilless culture en
dc.subject.other Water management en
dc.subject.other Concentration (process) en
dc.subject.other Effluents en
dc.subject.other Nutrients en
dc.subject.other Salts en
dc.subject.other Water management en
dc.subject.other accumulation en
dc.subject.other concentration (composition) en
dc.subject.other crop yield en
dc.subject.other drainage en
dc.subject.other fruit en
dc.subject.other irrigation en
dc.subject.other nutrient cycling en
dc.subject.other rhizosphere en
dc.subject.other salinity en
dc.subject.other sodium chloride en
dc.subject.other vine en
dc.subject.other Capsicum en
dc.subject.other Capsicum annuum en
dc.title Interactions between salinity and irrigation frequency in greenhouse pepper grown in closed-cycle hydroponic systems en
heal.type journalArticle en
heal.identifier.primary 10.1016/j.agwat.2007.05.001 en
heal.publicationDate 2007 en
heal.abstract Two different irrigation regimes with two different salinity levels were applied to peppers (Capsicum annum L.) grown in closed hydroponic systems in a glasshouse. The two salinity levels were attained by adding NaCl to the irrigation water used to prepare nutrient solution to obtain concentrations of 0.8 and 6 mol m-3, and allowing the salts to progressively accumulate in the recycled nutrient solution. The two salinity levels were combined with two different levels of irrigation frequency in a two-factorial experimental design. Initially, the Na and Cl concentrations increased rapidly in the recycled effluents, but nearly three months after treatment initiation they converged gradually to maximal levels depending on the NaCl treatment. The low irrigation frequency imposed a more rapid salt accumulation in the root zone, which was ascribed to restriction of the volume of drainage solution. However, the maximal salt concentrations in the root zone were independent of the watering schedule. This finding agrees with previous research revealing that the maximal salt accumulation in the root zone of plants, grown in closed hydroponics, is dictated merely by the NaCl concentration in the irrigation water. Total and Class I yields were suppressed by salt accumulation but the high irrigation frequency significantly mitigated the deleterious salinity effects. At low salinity, the low irrigation frequency raised significantly the weight percentage of fruits with blossom-end rot (BER), whereas at high salinity the incidence of BER was further increased without significant differences due to the irrigation regime. Frequent irrigation resulting in high drainage fractions in closed hydroponic systems may delay the rate of salt accumulation in the root zone, thereby enhancing yield and improving fruit quality, without increasing the discharge of polluting fertigation effluents to the environment. © 2007 Elsevier B.V. All rights reserved. en
heal.journalName Agricultural Water Management en
dc.identifier.issue 1-3 en
dc.identifier.volume 91 en
dc.identifier.doi 10.1016/j.agwat.2007.05.001 en
dc.identifier.spage 102 en
dc.identifier.epage 111 en


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