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臭氧循环水产养殖系统中 HPLSEC 和荧光法的水质监测。

Monitoring of water quality with HPLSEC and fluorescence method in the ozonated recirculating aquaculture system.

机构信息

Department of Biological and Environmental Sciences, University of Jyväskylä, Survontie 9C (Ambiotica), 40500, Jyväskylä, Finland.

Aquatic Production Systems, Natural Resources Institute Finland (Luke), Survontie 9A, 40500, Jyväskylä, Finland.

出版信息

Environ Monit Assess. 2023 Nov 20;195(12):1497. doi: 10.1007/s10661-023-12117-5.

Abstract

In recirculating aquaculture systems (RAS), it is important to monitor the water quality to keep the fish healthy. Especially in water treatment with oxidizing agents, for example, ozone (O) or hydrogen peroxide (HO), the monitoring of the quality of dissolved organic matter (DOM) in water is advisable to keep track of the treatment's effect. Previously in wastewater treatment plant (WWTP) studied, HPLSEC and fluorescence method for monitoring and characterization of organic matter was used here to track the effect of oxidative treatments; 5 duplicated treatments (2 × O, 1 × O + HO, 1 × HO, 1 × control) were performed for four months with weekly samplings. Systems that contained O injection reduced fluorescence on average over 90%, except tyrosine-like fluorescence with removal of 80%. Combined O + HO treatment did not bring any advantages over pure O treatment, and HO had no significant effect on fluorescence. Humic and fulvic compounds were detected to largely be derived from inlet lake water, while large protein-like structures were mostly created in RAS. A peak of benzoic acid-like molecules was also detected in all RAS waters. Treatments did not change the molecular weight profile of DOM systems and inlet water, having most of their fluorescence coming from medium-sized (108-1322 Da) molecules. DOC was lower in O treatments, but the linear connection between DOC and fluorescence was not observed, although this was proposed in earlier studies. Most likely, the oxidizing treatments induce change to DOM in a way that such comparison becomes inaccurate, although this must be studied further in the future.

摘要

在循环水养殖系统 (RAS) 中,监测水质以保持鱼类健康非常重要。特别是在使用氧化剂进行水处理时,例如臭氧 (O) 或过氧化氢 (HO),建议监测水中溶解有机物 (DOM) 的质量,以跟踪处理效果。在之前的废水处理厂 (WWTP) 研究中,使用高压液相色谱法 (HPLC) 和荧光法来监测和表征有机物,以跟踪氧化处理的效果;进行了四个月的五次重复处理(2×O、1×O+HO、1×HO、1×对照),每周进行采样。含有 O 注入的系统平均降低荧光度超过 90%,除了酪氨酸样荧光的去除率为 80%。O+HO 联合处理并没有比纯 O 处理带来任何优势,而 HO 对荧光没有显著影响。检测到腐殖质和黄腐酸化合物主要来自入口湖泊水,而大蛋白样结构主要在 RAS 中产生。还在所有 RAS 水中检测到苯甲酸样分子的峰值。处理没有改变 DOM 系统和进水的分子量分布,它们的荧光主要来自中等大小的(108-1322 Da)分子。O 处理中的 DOC 较低,但没有观察到 DOC 和荧光之间的线性关系,尽管在早期的研究中提出了这种关系。很可能是氧化处理以一种使这种比较变得不准确的方式改变了 DOM,尽管这在未来需要进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78b7/10661748/3b5dc5393c9b/10661_2023_12117_Fig1_HTML.jpg

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