首页> 外文期刊>Aquacultural Engineering: An International Journal >Use of vegetated drainage ditches and low-grade weirs for aquaculture effluent mitigation: I. Nutrients.
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Use of vegetated drainage ditches and low-grade weirs for aquaculture effluent mitigation: I. Nutrients.

机译:使用植被排水沟和低等级堰来缓解水产养殖废水:I.营养物质。

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Implementation of water management practices could be a strategy for reducing mass discharge from aquaculture production. Of greatest concern is the delivery via discharge of excess loads of nitrogen and phosphorus to downstream systems and their effects on ecological impairments. This study assessed effects of consecutive low-grade weirs on chemical retention of aquaculture pond effluent in a single, vegetated drainage ditch. Two control (without weirs) and nine treatment (with weirs) discharges were conducted September to October 2012 at the Mississippi State University South Farm Aquaculture Facility. From discharge to drainage ditch outlet, control discharges had a 154% increase in soluble reactive phosphorus (SRP) load, whereas total phosphorus (TP), total ammonia nitrogen (TAN), and nitrate (NO3--N) loads decreased (47%, 43%, and 63%, respectively). Additionally, concentrations of TP (F=4.59, P=0.02) and TAN (F=6.70, P<0.001) in control discharges were significantly decreased. In treatment discharges, nutrient mass loads decreased across all analytes (80% SRP, 86% TP, 89% TAN, 89% NO3--N). Treatment discharges' concentrations of TP, nitrite, and NO3--N (F=4.95, P=0.01; F=2.91, P=0.06; F=5.18, P=0.01, respectively), were significantly reduced while SRP concentrations increased significantly (F=12.60, P<0.001). Changes in concentration were further analyzed with additional fixed effects of distance to weir 1, number of discharges prior, initial effluent concentration, and flow rate; initial effluent concentrations were shown to have a significant negative effect on TP (F=4.28, P<0.001) and NO3--N (F=2.41, P=0.02) concentration decrease. Results of this study indicate utilizing a ubiquitous landscape feature such as a vegetated drainage ditch with installed low-grade weirs has the potential to reduce nutrient mass loads moving downstream and can be added as a promising effluent mitigation strategy for aquaculture.
机译:实施水管理做法可能是减少水产养殖生产中大量排放的一项战略。最令人担忧的是通过排放过量的氮和磷到下游系统,以及它们对生态损害的影响。这项研究评估了连续的低等级堰对单个植被排水沟中水产养殖池塘污水化学滞留的影响。 2012年9月至10月,在密西西比州立大学南部农场水产养殖场进行了两次对照(无堰)和九次处理(有堰)的排放。从排放到排水沟出口,控制排放的可溶性反应性磷(SRP)负荷增加了154%,而总磷(TP),总氨氮(TAN)和硝酸盐(NO 3 < sup>- -N)负载减少了(分别为47%,43%和63%)。另外,对照放电中TP(F = 4.59,P = 0.02)和TAN(F = 6.70,P <0.001)的浓度显着降低。在处理排放中,所有分析物的营养物质质量负荷降低(80%SRP,86%TP,89%TAN,89%NO 3 - -N)。处理排放物中TP,亚硝酸盐和NO 3 - -N的浓度(F = 4.95,P = 0.01; F = 2.91,P = 0.06; F = 5.18,分别显着降低P = 0.01),而SRP浓度显着提高(F = 12.60,P <0.001)。浓度变化的进一步分析与到堰口1的距离的其他固定影响有关,在先排放量,初始出水浓度和流速;初始废水浓度对TP(F = 4.28,P <0.001)和NO 3 - -N(F = 2.41,P = 0.02)有明显的负面影响)浓度降低。这项研究的结果表明,利用无处不在的景观特征,例如安装了低等级堰的植被排水沟,有可能减少向下游移动的营养物质负荷,并且可以作为有前途的水产养殖减缓策略添加。

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