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Study on Eliminating Three Nitrogen of Recycling Aquaculture Using the New-style Incorporated Aquarium

机译:利用新型掺入水族馆消除循环水产养殖三种氮的研究

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Aimed at the current problems of capacious of hydrotreater, susceptible to plugging by microbe and the accumulation of ammonia or nitrite nitrogen in aquaculture, the aquarium (contain with the water treatment processor) using physical filtration + biodegradation + activated carbon adsorption complex process was devised to treat aquaculture for recycle. Under different working conditions, the effects of water temperature, hydraulic retention time (HRT), air flow and aeration mode on removal efficiency of ammonia, nitrite nitrogen and nitrate nitrogen(three nitrogen) in aquaculture. The test results showed that sludge yielding in the hydrotreater was low and hydrotreater was insusceptible to be plug. In addition, under the conditions of water temperature 25°C, air flow 1.5L/min,HRT 1.5h and intermittent aeration (aerating once every 1h), the removal rate of ammonia nitrogen, nitrate nitrogen and nitrite nitrogen was over 97.5%, 96% and 98.7% respectively, it means the three nitrogen was not detected. Therefore, the incorporated aquarium could permanently preserved favorable living environment for fish and could provide technological security for three nitrogen remove of fish farm water and for intensifying water recycle.
机译:旨在目前的水溶器宽大的问题,易于通过微生物堵塞和水产养殖中的氨或亚硝酸盐氮的积聚,使用物理过滤+生物降解+活性炭吸附复合方法进行水族馆(含有水处理处理器)治疗回收的水产养殖。在不同的工作条件下,水温,液压保留时间(HRT),空气流量和曝气模式对水产养殖中氨,亚硝酸盐氮和硝酸氮(三个氮)去除效率的影响。测试结果表明,水闸架中的污泥是低的,水机无法被插塞。此外,在水温的条件下,25℃,空气流量1.5L / min,HRT 1.5H和间歇通气(每1小时曝气一次),氨氮的去除率,硝酸盐氮和亚硝酸盐氮超过97.5%,分别为96%和98.7%,意味着未检测到三个氮。因此,该公司的水族馆可以永久保存鱼类的有利生活环境,可以为三种氮气去除的鱼类农场和加强水循环提供技术安全。

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