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首页> 外文期刊>Aquaculture Research >Constructed wetlands for treatment of harvest effluents from grow-out ponds of the Amazon river prawn
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Constructed wetlands for treatment of harvest effluents from grow-out ponds of the Amazon river prawn

机译:人工湿地用于处理亚马逊河虾养殖池塘的收获废水

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摘要

Effluent discharges from aquaculture can reduce water quality in receiving water bodies and that strategies or practices to reduce this are necessary. One possibility is to reduce, or eliminate, water renewal in grow-out ponds. In this study, we eliminated water renewal in grow-out ponds associated with the culture of 40 individualsm(-2) of Amazon river prawn (Macrobrachium amazonicum). At the end of the culture period it was, however, necessary to drain the pond to harvest the prawns. An experiment was performed in triplicate, in which the water supply characteristics and harvest water characteristics of ponds were evaluated. To reduce these concentrations of total N and P, an aquatic macrophyte (Eichhornia crassipes, water hyacinth) treatment system (CWs) was adopted. The water characteristics in the CWs were evaluated after 1, 3, 7, 14 and 21days. The water supply of ponds presented the average concentrations of 0.67 +/- 0.32mgL(-1) and 17.4 +/- 14.7gL(-1) of total-N and total-P respectively. The harvest effluent of ponds had elevated concentrations of different forms of nitrogen (4.44mgL(-1) of total-N) and phosphorous (100.9gL(-1) of total-P). After 1day of the experiment we found the following reductions in key nutrients in treatment system containing E. crassipes: 90%, 78% and 45% reductions in the concentrations of particulate matter, orthophosphates and nitrates respectively. We noted that after 3days the nitrates had been reduced by 53%. We concluded that 3days of this treatment was sufficient for the removal of the additional nutrients that had accumulated in the Amazon river prawn ponds.
机译:水产养殖的废水排放会降低接收水体的水质,因此必须采取降低水质的策略或措施。一种可能性是减少或消除成年池塘的水更新。在这项研究中,我们消除了与亚马逊河虾(Macrobrachium amazonicum)40个个体m(-2)的养殖相关的成年池塘的水更新。但是,在养殖期结束时,有必要排干池塘来收获虾。一式三份地进行实验,评估池塘的供水特性和收获水特性。为了减少这些总氮和磷的浓度,采用了水生植物(凤眼棘,水葫芦)处理系统(CWs)。在1、3、7、14和21天后评估连续水的水分特性。池塘的供水分别表示总氮和总磷的平均浓度分别为0.67 +/- 0.32mgL(-1)和17.4 +/- 14.7gL(-1)。池塘的收获废水中不同形式的氮(总氮为4.44mgL(-1))和磷(总磷为100.9gL(-1))的浓度较高。实验1天后,我们发现含有十字形大肠杆菌的处理系统中的关键营养素减少了以下:颗粒物,正磷酸盐和硝酸盐的浓度分别减少了90%,78%和45%。我们注意到,三天后硝酸盐减少了53%。我们得出的结论是,经过3天的处理足以清除亚马逊河虾塘中积累的其他养分。

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