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利用荧光光谱法控制循环水产养殖系统中的臭氧剂量。

Use of fluorescence spectroscopy to control ozone dosage in recirculating aquaculture systems.

机构信息

Department of Environmental Engineering, Technical University of Denmark, Bygningstorvet 115, 2800 Kongens Lyngby, Denmark; OxyGuard International A/S, Farum Gydevej 64, 3520 Farum, Denmark.

Water ApS, Farum Gydevej 64, 3520 Farum, Denmark.

出版信息

Water Res. 2017 Mar 15;111:357-365. doi: 10.1016/j.watres.2016.12.036. Epub 2016 Dec 24.

Abstract

The aim of this study was to investigate the potential of fluorescence spectroscopy to be used as an ozone dosage determination tool in recirculating aquaculture systems (RASs), by studying the relationship between fluorescence intensities and dissolved organic matter (DOM) degradation by ozone, in order to optimise ozonation treatment. Water samples from six different Danish facilities (two rearing units from a commercial trout RAS, a commercial eel RAS, a pilot RAS and two marine water aquariums) were treated with different O dosages (1.0-20.0 mg/L ozone) in bench-scale experiments, following which fluorescence intensity degradation was eventually determined. Ozonation kinetic experiments showed that RAS water contains fluorescent organic matter, which is easily oxidised upon ozonation in relatively low concentrations (0-5 mg O/L). Fluorescence spectroscopy has a high level of sensitivity and selectivity in relation to associated fluorophores, and it is able to determine accurately the ozone demand of each system. The findings can potentially be used to design offline or online sensors based on the reduction by ozone of natural fluorescent-dissolved organic matter in RAS. The suggested indirect determination of ozone delivered into water can potentially contribute to a safer and more adequate ozone-based treatment to improve water quality.

摘要

本研究旨在通过研究荧光强度与臭氧对水中溶解有机物(DOM)降解之间的关系,探讨荧光光谱法在循环水产养殖系统(RAS)中用作臭氧剂量测定工具的潜力,以优化臭氧处理。本研究采用实验室规模实验,用不同剂量的臭氧(1.0-20.0 mg/L)处理来自丹麦 6 个不同设施(一个商业鳜鱼 RAS 的两个养殖单元、一个商业鳗鱼 RAS、一个试验性 RAS 和两个海水水族馆)的水样,最终测定了荧光强度的降解情况。臭氧动力学实验表明,RAS 水中含有荧光有机物,在较低浓度(0-5 mg O/L)下很容易被氧化。荧光光谱法在与相关荧光团相关时具有较高的灵敏度和选择性,能够准确测定每个系统的臭氧需求。这些发现可用于设计基于 RAS 中天然荧光溶解有机物被臭氧还原的离线或在线传感器。间接测定臭氧在水中的传递,可有助于更安全、更充分地利用臭氧进行处理,以改善水质。

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