首页> 外文期刊>Aquacultural Engineering: An International Journal >Potential and limitations of ozone for the removal of ammonia, nitrite, and yellow substances in marine recirculating aquaculture systems.
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Potential and limitations of ozone for the removal of ammonia, nitrite, and yellow substances in marine recirculating aquaculture systems.

机译:臭氧在海洋循环水产养殖系统中去除氨,亚硝酸盐和黄色物质的潜力和局限性。

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The high levels of water-reuse in intensive recirculating aquaculture systems (RAS) require an effective water treatment in order to maintain good water quality. In order to reveal the potential and limitations of ozonation for water quality improvement in marine RAS, we tested ozone's ability to remove nitrite, ammonia, yellow substances and total bacterial biomass in seawater, considering aspects such as efficiency, pH-dependency as well as the formation of toxic ozone-produced oxidants (OPO). Our results demonstrate that ozone can be efficiently utilized to simultaneously remove nitrite and yellow substances from process water in RAS without risking the formation of toxic OPO concentrations. Contemporaneously, an effective reduction of bacterial biomass was achieved by ozonation in combination with foam fractionation. In contrast, ammonia is not oxidized by ozone so long as nitrite and yellow substances are present in the water, as the dominant reaction of the ozone-based ammonia-oxidation in seawater requires the previous formation of OPO as intermediates. The oxidation of ammonia in seawater by ozone is basically a bromide-catalyzed reaction with nitrogen gas as end product, enabling an almost complete removal of ammonia-nitrogen from the aquaculture system. Results further show that pH has no effect on the ozone-based ammonia oxidation in seawater. Unlike in freshwater, an effective removal of ammonia even at pH-values as low as 6.5 has been shown to be feasible in seawater. However, as the predominant reaction pathway involves an initial accumulation of OPO to toxic amounts, we consider the ozone-based removal of ammonia in marine RAS as risky for animal health and economically unviable.
机译:在集约化循环水产养殖系统(RAS)中高水平的水回用需要有效的水处理,以保持良好的水质。为了揭示臭氧化对改善海洋RAS水质的潜力和局限性,我们考虑了效率,pH依赖性以及对臭氧的影响等方面,测试了臭氧去除海水中亚硝酸盐,氨,黄色物质和细菌总生物量的能力。形成有毒臭氧产生的氧化剂(OPO)。我们的结果表明,臭氧可以有效地用于从RAS中的工艺水中同时去除亚硝酸盐和黄色物质,而不会冒有毒的OPO浓度的风险。同时,通过臭氧化结合泡沫分离实现了细菌生物量的有效减少。相反,只要水中存在亚硝酸盐和黄色物质,氨就不会被臭氧氧化,因为海水中基于臭氧的氨氧化的主要反应需要预先形成OPO作为中间体。臭氧中海水中氨的氧化基本上是一种溴化物催化的反应,以氮气为最终产物,几乎可以完全消除水产养殖系统中的氨氮。结果进一步表明,pH值对海水中基于臭氧的氨氧化没有影响。与淡水不同,已证明即使在pH值低至6.5的情况下,有效去除氨在海水中也是可行的。但是,由于主要的反应途径涉及OPO初始积累到有毒量,因此我们认为海洋RAS中基于臭氧的氨去除对动物健康具有风险,在经济上不可行。

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