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Differential Nitrogen and Phosphorus Recovery by Five Aquatic Garden Species in Laboratory-scale Subsurface-constructed Wetlands.

机译:实验室规模的地下人工湿地中五种水生花园物种对氮和磷的差异回收。

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摘要

Intensive production of container-grown nursery and greenhouse crops in soilless substrate may result in significant leaching of nutrients and pesticides. The resulting runoff can escape from production areas and negatively impact surface and ground water. Constructed wetlands (CWs) have been shown to be a simple, low-technology method for treating agricultural, industrial, and municipal wastewater. We investigated the nitrogen (N) and phosphorus (P) removal potential by a vegetated, laboratory-scale subsurface flow (SSF) CW system. Over an 8-week period, five commercially available aquatic garden plants received a range of N and P (0.39 to 36.81 mgp"L-1 N and 0.07 to 6.77 mgp"L-1 P) that spanned the rates detected in nursery runoff. Whole plant dry weight was positively correlated with N and P supplied. Highest N and P recovery rates were exhibited by Thalia geniculata f. rheumoides Shuey and Oenenathe javanica (Blume) DC. 'Flamingo', Phyla lanceolata (Michx.) Greene also had high P recovery rates. The potential exists for using SSF CWs to concomitantly produce aquatic garden plants and attenuate nutrients in a sustainable nursery enterprise.
机译:在无土基质上集约种植容器育苗和温室作物可能会导致大量养分和农药浸出。产生的径流会从生产区域逸出,并对地表水和地下水产生负面影响。人工湿地(CW)已被证明是一种用于处理农业,工业和市政废水的简单,低技术的方法。我们研究了植被丰富的实验室规模的地下流(SSF)连续波系统对氮(N)和磷(P)去除的潜力。在8周的时间内,五种市售水生园林植物收到的N和P范围(0.39至36.81 mgp“ L-1 N和0.07至6.77 mgp” L-1 P)跨越了苗圃径流中检测到的比率。全株干重与所供应的氮和磷呈正相关。 Thalia geniculata f表现出最高的N和P回收率。 Rheumoides Shuey和Oenenathe Javanica(Blume)DC。 Phyla lanceolata(Michx。)Greene的'Flamingo'也具有较高的P回收率。在可持续的苗圃企业中,使用SSF CW伴随生产水生园林植物和减少养分的潜力存在。

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