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Geotextile incorporated permeable pavement system as potential source of irrigation water: Effects of re-used water on the soil, plant growth and development

机译:土工布结合渗透性路面系统作为灌溉水的潜在来源:回用水对土壤,植物生长和发育的影响

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摘要

Permeable pavement systems are important part of the sustainable urban drainage system (SUDS). Over a decade ago, it was proposed that the pervious pavement system (PPS) has the capability to store water for reuse, the possibility of using the SUDS device simultaneously in source control and water recycling applications have not been holistically investigated by previous studies. This paper reports experiments where water from geotextile incorporated permeable pavement system models on which 24 mL/m2 of hydrocarbon was applied as a pollutant. A single dose of 17 g of nitrogen, phosphorus and potassium slow release nutrients (applied to encourage biodegradation) was administered to the surface. The PPS recycled water was used to irrigate tomato plants (Lycopersicon esculentum (Fantasio hybrid)) and rye grass (Lolium perenne) for ten weeks. The growth, development, and heavy metal content of the organs of these plants were compared to that of plants from untreated rigs and with plants treated with de-ionized water (DI) as well as the pH, sodium adsorption ratio, and electrical conductivity. The comparative performance of the plants indicated that the water from the treated rigs supported plant growth more than the water from the untreated test rigs and DI. Heavy metal analysis of the plants organs indicated that the metals were at normal levels and below toxicity levels for plants and livestock. Soil structure tests showed that there were no salinity or soil structure issues. Heavy metal analysis of soil also indicated that the metals were within normal range and below toxicity levels. These results further demonstrate the water recycling capability of the PPS and its potential use for irrigation purposes.
机译:渗透性路面系统是可持续城市排水系统(SUDS)的重要组成部分。十多年前,有人建议透水的路面系统(PPS)具有存储水以供再利用的能力,以前的研究尚未全面研究过在源头控制和水循环应用中同时使用SUDS设备的可能性。本文报道了一些实验数据,其中土工布的水结合了渗透性路面系统模型,在该模型中将24?mL / m2的碳氢化合物用作污染物。向表面施用单剂量的17微克氮,磷和钾缓释营养素(用于促进生物降解)。 PPS循环水用于灌溉番茄植物(番茄(Lycopersicon esculentum)(Fantasio杂种))和黑麦草(黑麦草)。将这些植物的器官的生长,发育和重金属含量与未经处理的钻机以及经过去离子水(DI)处理的植物以及pH,钠吸附率和电导率的植物进行比较。植物的比较性能表明,经过处理的钻机所提供的水比未经处理的试验台和DI所提供的水对植物生长的支持更大。对植物器官的重金属分析表明,金属对植物和牲畜的含量处于正常水平且低于毒性水平。土壤结构测试表明没有盐度或土壤结构问题。对土壤的重金属分析还表明,金属在正常范围内且低于毒性水平。这些结果进一步证明了PPS的水循环能力及其潜在的灌溉用途。

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  • 作者

    Nnadi E.O.; Newman A.; Coupe S.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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