Steady-state and dynamic model for recirculating aquaculture systems with pH included

IF 3.6 2区 农林科学 Q2 AGRICULTURAL ENGINEERING
Allyne M. dos Santos , Lucas F. Bernardino , Kari J.K. Attramadal , Sigurd Skogestad
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引用次数: 1

Abstract

In this work, simplified steady-state and dynamic models of a Recirculating Aquaculture System (RAS) of Atlantic salmon (Salmo salar) are described. The RAS process under study includes a fish tank, a biofilter, a CO2 stripper, and an oxygen cone. Compared to existing models, the main contribution is that it explicitly models the pH, by using reaction invariants such as total inorganic carbon (TIC), total ammonia nitrogen (TAN), and alkalinity. As the possibility of placing the pH/alkalinity adjustment (base or buffer addition) into the fish tank or into the biofilter was considered, four steady-state scenarios were studied, where one of the adjustments is utilized in each scenario. A dynamic simulation of the process with oxygen and pH controllers was performed and compared with commercial RAS production data, and what adjustments had to be done to get an agreement between the model and the plant data.

含pH的循环水养殖系统稳态与动态模型
本文介绍了大西洋三文鱼(Salmo salar)循环养殖系统(RAS)的简化稳态和动态模型。正在研究的RAS工艺包括一个鱼缸、一个生物过滤器、一个CO2汽提塔和一个氧气锥。与现有模型相比,主要贡献在于它通过使用总无机碳(TIC)、总氨氮(TAN)和碱度等反应不变量,明确地对pH进行了建模。考虑到将pH/碱度调节(添加碱或缓冲液)放入鱼缸或生物过滤器的可能性,研究了四种稳态情况,其中每种情况都使用一种调节。使用氧气和pH控制器对该过程进行了动态模拟,并与商业RAS生产数据进行了比较,以及必须进行哪些调整才能在模型和工厂数据之间达成一致。
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来源期刊
Aquacultural Engineering
Aquacultural Engineering 农林科学-农业工程
CiteScore
8.60
自引率
10.00%
发文量
63
审稿时长
>24 weeks
期刊介绍: Aquacultural Engineering is concerned with the design and development of effective aquacultural systems for marine and freshwater facilities. The journal aims to apply the knowledge gained from basic research which potentially can be translated into commercial operations. Problems of scale-up and application of research data involve many parameters, both physical and biological, making it difficult to anticipate the interaction between the unit processes and the cultured animals. Aquacultural Engineering aims to develop this bioengineering interface for aquaculture and welcomes contributions in the following areas: – Engineering and design of aquaculture facilities – Engineering-based research studies – Construction experience and techniques – In-service experience, commissioning, operation – Materials selection and their uses – Quantification of biological data and constraints
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