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在循环水培系统中水力负荷率和植物比例的最佳研究。

A study on the optimal hydraulic loading rate and plant ratios in recirculation aquaponic system.

机构信息

Faculty of Innovative Design and Technology, University Darul Iman Malaysia, KUSZA Campus, 21300 Kuala Terengganu, Malaysia.

出版信息

Bioresour Technol. 2010 Mar;101(5):1511-7. doi: 10.1016/j.biortech.2009.09.040. Epub 2009 Oct 9.

Abstract

The growths of the African catfish (Clarias gariepinus) and water spinach (Ipomoea aquatica) were evaluated in recirculation aquaponic system (RAS). Fish production performance, plant growth and nutrient removal were measured and their dependence on hydraulic loading rate (HLR) was assessed. Fish production did not differ significantly between hydraulic loading rates. In contrast to the fish production, the water spinach yield was significantly higher in the lower hydraulic loading rate. Fish production, plant growth and percentage nutrient removal were highest at hydraulic loading rate of 1.28 m/day. The ratio of fish to plant production has been calculated to balance nutrient generation from fish with nutrient removal by plants and the optimum ratio was 15-42 gram of fish feed/m(2) of plant growing area. Each unit in RAS was evaluated in terms of oxygen demand. Using specified feeding regime, mass balance equations were applied to quantify the waste discharges from rearing tanks and treatment units. The waste discharged was found to be strongly dependent on hydraulic loading rate.

摘要

在循环水养殖系统(RAS)中评估了非洲鲶鱼(Clarias gariepinus)和空心菜(Ipomoea aquatica)的生长情况。测量了鱼类生产性能、植物生长和养分去除,并评估了它们对水力负荷率(HLR)的依赖性。鱼类生产在水力负荷率之间没有显著差异。与鱼类生产相反,在较低的水力负荷率下,空心菜的产量显著更高。在水力负荷率为 1.28 米/天时,鱼类生产、植物生长和养分去除百分比最高。已经计算了鱼类与植物生产的比例,以平衡鱼类产生的养分与植物去除的养分,最佳比例为 15-42 克鱼饲料/平方米植物生长面积。根据需氧量评估了 RAS 中的每个单元。使用规定的喂养制度,应用质量平衡方程来量化养殖箱和处理单元的废物排放。发现废物排放量与水力负荷率密切相关。

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