Evaluation of Agricultural Non-point Source Pollution Infiltration on Clogging and Nitrogen Leaching Effects in BRCs with Different Plants in Dryland Areas.

Shouhua Zhang, Letong Ma, Taolue Gao, Xin Fu, Bei Zhang
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Abstract

As high-standard farmland rapidly expands, agricultural non-point source pollution has emerged as a main environmental issue in China. To tackle nitrogen pollution, green infrastructure (GI), especially bioretention cells (BRCs), has been extensively adopted. However, the long-term effectiveness of these systems may be hindered by clogging and nitrogen leaching. In this study, we designed three BRCs simulation devices to investigate the effects of different plants on the removal of TSS TN and NO3-N from runoff through simulated pollutant infiltration experiments. To address this issue, laboratory research has explored the contributions of woody plants like Buxus and herbaceous plants such as Ophiopogon in BRCs, concentrating on their impact on system clogging and nitrogen leaching. The results indicated that, although the total suspended solids (TSS) removal rates in the Buxus and Ophiopogon treatment groups were slightly lower than in the control group, permeability experienced a notable enhancement, with the Buxus group showing a 24.47% increase in permeability. The removal rates of TN and NO3-N in the Buxus group were significantly reduced, decreasing by 31.82% and 41.25%, respectively, in comparison to the control group. After five months, Ophiopogon demonstrated considerably better root growth, with its root length, volume, and surface area all significantly exceeding those of the Buxus group. The choice of plants significantly influenced nitrogen cycling and system clogging, with the reduced removal rates in the Buxus group potentially linked to its weaker root system, lower abundance of actinomycetes, and reduced soil enzyme activity.

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评估农业非点源污染渗透对旱地不同植物 BRC 的堵塞和氮浸出效应的影响。
随着高标准农田的迅速扩大,农业非点源污染已成为中国的主要环境问题。为解决氮污染问题,绿色基础设施(GI),尤其是生物滞留池(BRCs)已被广泛采用。然而,这些系统的长期有效性可能会受到堵塞和氮沥滤的影响。在本研究中,我们设计了三个生物蓄渗池模拟装置,通过模拟污染物入渗实验来研究不同植物对径流中总悬浮微粒 TN 和氮氧化物 NO3-N 的去除效果。为解决这一问题,实验室研究探讨了 BRCs 中木质植物(如银杏)和草本植物(如麦冬)的贡献,重点关注它们对系统堵塞和氮浸出的影响。结果表明,虽然欧鼠李和麦冬处理组的总悬浮固体(TSS)去除率略低于对照组,但渗透性却显著提高,欧鼠李处理组的渗透性提高了 24.47%。欧鼠李组对 TN 和 NO3-N 的去除率明显降低,与对照组相比,分别降低了 31.82% 和 41.25%。五个月后,鹅掌楸的根系生长情况明显好转,其根系长度、体积和表面积均明显超过欧鼠李组。植物的选择对氮循环和系统堵塞有很大影响,欧鼠李组的去除率降低可能与其根系较弱、放线菌数量较少以及土壤酶活性降低有关。
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