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首页> 外文期刊>Aquaculture Research >Use of fluidized bed biofilter and immobilized Rhodopseudomonas palustris for ammonia removal and fish health maintenance in a recirculation aquaculture system.
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Use of fluidized bed biofilter and immobilized Rhodopseudomonas palustris for ammonia removal and fish health maintenance in a recirculation aquaculture system.

机译:在循环水产养殖系统中使用流化床生物滤池和固定化的假单胞假单胞菌去除氨气和维持鱼类健康。

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摘要

Intensive recirculating aquaculture relies on biofilters to sustain satisfactory water quality in the system. Fluidized bed and immobilized cell technologies were used to remove ammonia from the water and maintain fish health. A high-rate nitrifying fluidized bed biofilter combined with valveless filter was designed for use in a recirculation aquaculture system (RAS). The suspended solids produced during fish culture could automatically be removed using a valveless filter. Natural porosity with fitting proportion, steady fluidization and expanding rate was chosen as the fluidized carrier. The technology of bacterial separation and cultivation was used. The immobilized Rhodopseudomonas palustris (R. palustris) produced through a biotechnologically embedding medium is suitable for fish and could help prevent diseases. Nitrification was promoted through the selective rearing of nitrobacteria in a fluidized bed biofilter. Water quality was improved using fluidized bed biofilter and immobilized R. palustris in the RAS. In addition, the proposed system was able to reduce costs. Maximum fish load was 45+or-3 kg m-3 in the closed recirculating water fish culture system, and water use was reduced by 80-90%. The total ammonia nitrogen removal rate of the technology was 80-95%, and nitrite N removal rate was above 80%.
机译:集约循环水产养殖依靠生物过滤器维持系统中令人满意的水质。流化床和固定池技术用于去除水中的氨气并保持鱼类健康。高速硝化流化床生物滤池结合无阀滤池设计用于循环水产养殖系统(RAS)。鱼类养殖过程中产生的悬浮固体可以使用无阀过滤器自动去除。选择具有合适比例,稳定流态化和膨胀率的天然孔隙度作为流态化载体。采用了细菌分离培养技术。通过生物技术包埋介质生产的固定化的红假单胞菌(R. palustris)适用于鱼类,可以帮助预防疾病。通过在流化床生物滤池中选择性饲养硝化细菌来促进硝化作用。使用流化床生物滤池和固定化RAS中的拟南芥提高水质。另外,所提出的系统能够降低成本。在封闭的循环水养鱼系统中,最大鱼负荷为45+或-3 kg m -3 ,用水量减少了80-90%。该技术的总氨氮去除率为80-95%,亚硝酸盐氮去除率为80%以上。

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