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Performance Study of Ceramic Filter Module in Recirculated Aquaculture System (RAS)

机译:再循环水产养殖系统中陶瓷过滤器模块的性能研究(RAS)

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The growth of world population has led to significant increase in seafood demand over the world. Aquaculture has been widely accepted by many countries to increase the seafood production owing to the decline of natural seafood resources. The aquaculture productivity, however, is directly linked to the pond water quality. In this study, attempts were made to employ ceramic micro-filter to improve the pond water quality through filtration processes. There were two batches of filtration processes, short term (1 hour) and long term (48 hours). Significant improvements on real pond water quality were recorded through the short term microfiltration process, which reduced turbidity (96%), total suspended solids (TSS) (80%), biochemical oxygen demand (BOD) (72%), chemical oxygen demand (COD) (55%), ammonia (60%), nitrate (96%) and phosphorus (83%). The long term filtration process also showed high efficiency in the removal of solid particle and organic matters. The results showed that all of the parameters were successfully reduced to acceptable ranges (turbidity<80 NTU, TSS<400 mg/L, BOD<5 mg/L, COD<70 mg/L, phosphate<3 mg/L and ammonia<0.05 mg/L) for fish culturing activity. Based on current study, there was a drastic increase in nitrate content after 24 hours due to the nitrification process by regenerated bacteria in the filtered pond water. Current study showed that the microfiltration using ceramic micro-filter has high potential to be used in recirculating aquaculture system throughout the aquaculture activities in order to maintain the pond water quality, thus, increase the survival rate of cultured species.
机译:世界人口的增长已经导致了海产品的需求在世界各地显著上升。水产养殖已被许多国家被广泛接受,以增加由于天然海产品资源下降的海产品生产。水产养殖的生产力,但是,直接关系到池塘水质。在这项研究中,人们试图通过过滤工艺采用陶瓷微过滤器,以提高池塘水质。有过滤过程,短期(1小时)和长期(48小时)的两批。真实的池塘水质显著改进是通过短期微滤过程,这降低了浊度(96%),总悬浮固体(TSS)(80%),生化需氧量(BOD)(72%),化学需氧量(记录COD)(55%),氨水(60%),硝酸(96%)和磷(83%)。长期过滤过程也表现出高效率的去除固体颗粒和有机物的。结果表明,所有的参数都成功地降低到可接受的范围(浊度<80 NTU,TSS <400毫克/ L,BOD <5毫克/ L,COD <70毫克/ L,磷酸<3 mg / L和氨< 0.05毫克/升)为鱼培养活性。基于目前的研究,有24小时后急剧增加的硝酸盐含量,由于通过在过滤的池塘水再生的细菌硝化过程。目前的研究表明,使用陶瓷微过滤器的微滤具有以维持池塘水的质量,从而,提高养殖物种的存活率再循环整个水产养殖活动养殖系统中使用高电势。

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