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Ozonation of artificial aquaria seawater: Oxidation kinetics and byproduct formation.

机译:人工水族箱臭氧的臭氧化:氧化动力学和副产物形成。

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Ozone is being extensively used at all major artificial seawater (ASW) aquaria. There is limited information on the chemistry of ozonation in these high total dissolved solids solutions. The purpose of this research was to identify and model the ozone reactions associated with the ozonation of ASW. This model will be used to assist the aquarium industry in understanding the chemical effects of ozonation in their full-scale water treatment processes. The model was developed that accurately predicts ozone decay at an ozone dosage of 1 × 10−5 M (0.5 mg/L) that is typically used on ASW aquaria. The system of 24 differential equations, of which 23 represent inorganic reactions, was solved utilizing a commercially available differential equation solver. The model was validated in both organic-free ASW and three operating aquarium tanks containing organics. This work has shown that direct ozone reactions dominate over indirect (hydroxyl radical mediated reactions). This work has also shown that in the absence of bromide, free chlorine species are formed due to the high concentrations of chloride in the ASW formulations. These free chlorine species may have health effects on the aquarium animal species similar to those caused by free bromine species. This modeling has demonstrated that ammonia removal is achieved through reactions with secondary oxidants following ozonation. Thus ammonia removal via ozonation may impact the design of aquarium water treatment systems. The model also identifies the production of residual oxidants including the free halogens and chloramines. The contribution by this work to the industry includes a more complete understanding of reaction chemistry resulting from ozonation of ASW and a tool to assist in water treatment system design and operations management.
机译:臭氧已在所有主要的人工海水(ASW)水族箱中广泛使用。在这些高总溶解固体溶液中,有关臭氧化化学的信息有限。这项研究的目的是识别和模拟与ASW臭氧化有关的臭氧反应。该模型将用于帮助水族馆行业了解臭氧水在其全面水处理过程中的化学作用。建立了该模型,该模型可以准确地预测ASW水族箱通常使用的臭氧剂量为1×10 super-5 -super M(0.5 mg / L)时的臭氧衰减。利用市售的微分方程求解器求解了由24个微分方程组成的系统,其中23个代表无机反应。该模型已在无有机物的ASW和三个装有有机物的工作水族箱中得到验证。这项工作表明,直接的臭氧反应比间接的(羟基自由基介导的反应)更为重要。这项工作还表明,在不存在溴化物的情况下,由于ASW配方中的氯化物浓度高,会形成游离氯物质。这些游离氯物种可能会对水族箱动物物种产生健康影响,类似于游离溴物种造成的健康影响。该模型表明,臭氧氧化后通过与二次氧化剂反应实现了氨的去除。因此,通过臭氧化去除氨气可能会影响水族馆水处理系统的设计。该模型还确定了残留氧化剂(包括游离卤素和氯胺)的产生。这项工作对行业的贡献包括对ASW臭氧化所产生的反应化学有更全面的了解,以及有助于水处理系统设计和运营管理的工具。

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