Use of eggshell as an alternative substrate for biofilters in recirculation aquaculture systems

Viviane dos Santos Marques, Juliana Sguerçoni de Oliveira Vieira, Amanda Pimentel Alves, João Antônio Vieira de Oliveira, Natália de Souza Pires Costa, Taís da Silva Lopes, Pedro Pierro Mendonça
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Abstract

One of the biggest challenges of recirculating systems (RAS) is keeping levels of toxic compounds, such as ammonia, low. This work sought to evaluate the use of eggshell as a biofilter substrate in the cultivation of juvenile Oreochromis niloticus. The experiment lasted 90 days, using four treatments: A) 100% expanded clay, A+CO) 50% expanded clay and 50% eggshell, PC) MBBR3 and NC) without substrate, with three replications each, storing 15 juveniles with an initial weight of 1.26±0.08g. Feeding occurred three times a day with commercial food offered until apparent satiety. The following parameters were monitored: pH, temperature (ºC), dissolved oxygen (mg L-1), electrical conductivity (µS cm-1) and total soluble solids (ppm); and zootechnical performance indices: survival rate (%), weight gain (g), specific growth rate (% day-1) and condition factor. Water samples were collected at the inlet and outlet of the biofilters on days 0, 30 and 60 of the experiment. Means were compared using the 5% Tukey test. All biofilters used maintained water quality parameters within those recommended for production, with emphasis on A+CO. The concentrations of ammonia at the inlet of the A+CO biofilter were lower than the others, providing lower levels of this substance in the system and high concentrations of nitrate. It was concluded that the biofilter composed of 50% expanded clay and 50% eggshell showed better efficiency in maintaining water quality compared to the others, revealing its potential as an alternative biological substrate.
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在循环水产养殖系统中使用蛋壳作为生物过滤器的替代基质
再循环系统(RAS)面临的最大挑战之一是将氨等有毒化合物的含量保持在较低水平。这项工作旨在评估蛋壳作为生物滤池基质在培育黑线鲈幼鱼过程中的应用。实验持续了 90 天,采用了四种处理方法:A) 100% 膨润土;A+CO) 50% 膨润土和 50% 蛋壳;PC)MBBR3和NC)无基质,每种处理三次重复,共饲养 15 尾幼鱼,初始体重为 1.26±0.08 克。每天投喂三次商品饲料,直至明显饱腹。监测参数包括:pH 值、温度( ºC)、溶解氧(mg L-1)、电导率(µS cm-1)和总可溶性固体(ppm);以及动物技术性能指标:存活率(%)、增重(g)、特定生长率(% day-1)和状态因子。在实验的第 0 天、第 30 天和第 60 天,分别在生物滤池的入口和出口采集水样。采用 5% Tukey 检验比较平均值。所有使用的生物滤池都能将水质参数维持在生产所建议的范围内,重点是 A+CO。A+CO 生物滤池入口处的氨浓度低于其他生物滤池,因此系统中的氨浓度较低,而硝酸盐浓度较高。结论是,与其他生物滤池相比,由 50%膨胀粘土和 50%蛋壳组成的生物滤池在保持水质方面表现出更高的效率,显示出其作为替代生物基质的潜力。
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