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Water purification by oyster shell bio-medium in a recirculating aquaponic system

机译:牡蛎壳生物介质在循环水培系统中进行水质净化

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In this study, water purification for cultivating water spinach (WS) or sweet basil (SB) by a recirculating aquaponic system (RAS) was investigated using either an oyster shell (OS) or ceramic ring (CR) biomedium. Four combinations of OS + WS, OS + SB, CR + WS, and CR + SB were evaluated. The results show that the bio-medium affects both the transfer of NH3-N to NO3-N and the biodegradation of organic matter. OS significantly increased the pH and calcium in the effluent. The SEM results revealed that OS has a layer-by-layer structure which supports the growth of a biofilm; the main component CaCO3 of OS released to the solution increases the pH, leading to good nitrification. The total organic carbon (TOC) measurement shows that both bio-media decompose organic matter to smaller than 1 k Da TOC, which provides nutrients that are readily absorbable by the vegetables. Furthermore, the water purification efficiency of RAS is OS + WS > OS + SB > CR + WS > CR + SB. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,使用牡蛎壳(OS)或陶瓷环(CR)生物介质研究了通过循环水培系统(RAS)培养水菠菜(WS)或甜罗勒(SB)的水净化技术。评估了OS + WS,OS + SB,CR + WS和CR + SB的四个组合。结果表明,生物介质既影响NH3-N向NO3-N的转移,又影响有机质的生物降解。 OS显着增加了废水中的pH和钙。 SEM结果表明OS具有层层结构,支持生物膜的生长。释放到溶液中的OS的主要成分CaCO3会增加pH值,从而导致良好的硝化作用。总有机碳(TOC)测量表明,两种生物介质都将有机物分解为小于1 k Da TOC,这提供了易于被蔬菜吸收的养分。此外,RAS的净水效率为OS + WS> OS + SB> CR + WS> CR + SB。 (C)2016 Elsevier B.V.保留所有权利。

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