Kök Yüzdürme Yöntemi ile yüzeysel su kalitesinin iyileştirilmesinde Japon şemsiyesi ve Vetiverin fitoremediasyon kapasitesi

Arzu Yucel, Erdal Örtel
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Abstract

Surface water is polluted due to many reasons, mainly wastewater and irrigation discharges, and loses their value for potential uses. In this study, phytoremediation was applied to improve the surface water, provided from a branch of the Gediz River, which supplies the fresh water of Izmir Bird Paradise, but not qualified as a quality source in terms of ecosystem. For this purpose, the removal efficiency for total phosphorus (TP), total nitrogen (TN) and total organic carbon (TOC) of Cyperus Alternifolius L. (umbrella palm) and Vetiveria zizanioides (L.) Nash (vetiver) were tested in the tanks, which were set with the floating treatment wetland (FTW) with a control group.TP, TN and TOC were measured in water on the 1st, 3rd, 7th and 14th days, macro and micronutrients were measured in the plants at the beginning and at the end of the study. According to the results, TP removal was 92%, 82%, 45%, TN removal was 62%, 52%, 24% and TOC removal was 79%, 66%, 13% in umbrella palm, vetiver and control tanks, respectively. The translocation factors (TF) that were expected >1 in plants were determined as Cd (1.55), Pb (1.27), B (1.19) and Cr (1.11) in vetiver, and in umbrella palm B (1.33) and Pb (1.14). Considering the increase in biomass, it can be said that the umbrella palm will remove metal at a higher rate. Overall, this study demonstrates that with the usage of umbrella palm and vetiver, FTW has the potential to be used as a green treatment method.
当通过库克喷雾法改善地表水质量时,日本隔膜和兽医照片流容量
地表水受到污染的原因有很多,主要是废水和灌溉排放,失去了潜在的利用价值。在本研究中,采用植物修复的方法来改善地表水,该地表水来自Gediz河的一条支流,为伊兹密尔鸟类天堂提供淡水,但在生态系统方面不合格。为此,考察了伞棕榈(Cyperus Alternifolius L.)和香根草(veltiveria zizanioides)对总磷、总氮和总有机碳的去除效率。在装有浮式处理湿地(FTW)的水箱中测试纳什(香根草),并以对照组为对照组。分别于试验第1、3、7、14天测定水分总磷、总氮和总TOC,在试验开始和结束时测定植株体内宏量和微量元素含量。结果表明,在伞掌、香根草和对照池中,TP去除率分别为92%、82%、45%,TN去除率分别为62%、52%、24%,TOC去除率分别为79%、66%、13%。结果表明,香根草的转位因子为Cd(1.55)、Pb(1.27)、B(1.19)、Cr(1.11),伞棕榈的转位因子为B(1.33)、Pb(1.14)。考虑到生物量的增加,可以说伞棕榈将以更高的速度去除金属。总的来说,本研究表明,在伞棕榈和香根草的使用下,FTW具有作为绿色治疗方法的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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