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首页> 外文期刊>Ecotoxicology and Environmental Safety >Accumulation of trace elements by corn (Zea mays) under irrigation with treated wastewater using different irrigation methods
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Accumulation of trace elements by corn (Zea mays) under irrigation with treated wastewater using different irrigation methods

机译:使用不同的灌溉方式在处理过的废水灌溉下玉米(Zea mays)中微量元素的积累

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摘要

Treated wastewater reuse for irrigation has gained a greater significance as an alternative resource to meet the growing water demands for agriculture and reduce the pressure on limited existing fresh water. However, this reuse needs adapted management in order to avoid environmental and health risks. An experiment was conducted in a greenhouse to evaluate the effect of different irrigation methods on the Metallic Trace elements and metals concentrations of a Tunisian soil (pH = 8.6) and corn when using treated wastewater. Four irrigation methods: surface irrigation, sprinkler irrigation, drip irrigation and subsurface drip irrigation, and two water qualities were used: treated wastewater and fresh water. Samples of soil and corn were analyzed for several Metallic Trace elements. Results for soil showed that treated wastewater increased electrical conductivity, nutrients and metallic trace elements. The highest levels of salinity and Metallic Trace elements were recorded with using surface irrigation and the lowest were noticed by using subsurface drip irrigation. Whereas the highest levels of nutrients elements were recorded by using subsurface drip irrigation. Results for corn showed that irrigation with treated wastewater improved corn biomass, increased nutrient elements, nitrate reductase activity and chlorophyll content. The concentrations of Metallic Trace elements in different parts of corn were significantly higher under treated wastewater irrigation than fresh water irrigation and were reduced in case of subsurface drip irrigation. Among studied metals, Nickel concentration exceeded the permissible limits of 10 mg kg(-1). Bio-concentration factor values were, in order, Iron Zinc Nickel Copper lead Cadmium, whereas, translocation factor values were, in order, Copper Zinc Cadmium iron lead Nickel. Because of translocation factor 1 and bio-concentration factor = 0.2, maize could be considered as both an excluder and an accumulator plant. Results of this study indicate that the use of subsurface drip irrigation decreased the amount of soil and corn contamination by Metallic Trace elements.
机译:经过处理的废水再利用用于灌溉已具有更大的意义,它可以满足农业对水的日益增长的需求,并减轻对有限的现有淡水的压力。但是,这种重用需要进行适当的管理,以避免环境和健康风险。在温室中进行了一项实验,以评估使用处理后的废水时,不同灌溉方法对突尼斯土壤(pH = 8.6)和玉米中金属微量元素和金属浓度的影响。四种灌溉方法:地表灌溉,喷头灌溉,滴灌和地下滴灌,并使用两种水质:处理后的废水和淡水。分析了土壤和玉米样品中的几种金属微量元素。土壤的结果表明,处理后的废水增加了电导率,养分和金属微量元素。使用表面灌溉记录了最高的盐度和金属痕量元素,而使用地下滴灌记录了最低的盐度和金属痕量元素。而使用地下滴灌法则记录了最高水平的营养元素。玉米的结果表明,用处理过的废水灌溉可以改善玉米生物量,增加营养元素,硝酸还原酶活性和叶绿素含量。处理过的废水灌溉下玉米不同部位的金属微量元素浓度明显高于淡水灌溉,而在地下滴灌条件下则降低。在研究的金属中,镍浓度超过了10 mg kg(-1)的允许极限。生物富集因子值依次为铁>锌>镍>铜>铅>镉,而易位因子值依次为铜>锌>镉>铁>铅>镍。由于易位因子<1和生物富集因子> = 0.2,因此可以将玉米视为排斥植物和蓄积植物。这项研究的结果表明,地下滴灌的使用减少了金属微量元素对土壤和玉米的污染。

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