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通过 O 和 O/HO 氧化过程提高环境持久性抗生素替米考星的可生物处理性。

Improvement of biotreatability of environmentally persistent antibiotic Tiamulin by O and O/HO oxidation processes.

机构信息

Faculty of Chemistry and Chemical Technology, University of Ljubljana, Ljubljana, Slovenia.

Faculty of Chemistry and Food Technology, Department of Environmental Engineering, Slovak Technical University, Bratislava, Slovak Republic.

出版信息

Environ Technol. 2022 Jun;43(15):2319-2328. doi: 10.1080/09593330.2021.1876776. Epub 2021 Feb 3.

Abstract

The aim of the work was to assess the efficiency of ozonation and ozonation in combination with HO in jet loop reactor to increase biotreatability of persistent veterinary antibiotic Tiamulin. The efficiency of oxidative processes was monitored by combined approach based on determination of efficiency of wastewater treatment and impact to waste sludge stabilization. Degradation of Tiamulin in model wastewater (100 mg L) during oxidation was followed by COD and DOC measurements while changes in biodegradability were determined by respirometric measurements. Biogas production potential was also determined to identify problems related to anaerobic digestion of waste sludge resulted in treatment of Tiamulin-contaminated wastewater. At ozone dose of 69 g g and 220 g gremoval for COD and DOC was 26% and 17%, respectively. Better biotreatability was confirmed by respirometric testing. HO addition did not improve removal efficiency (11-13%). The second stage of nitrification was suppressed by the addition of Tiamulin and ozonation again recovered formation. O/HO treated sample reduced the nitrification, especially formation of in the first phase of the process. Simultaneously, quadratic model was developed to describe the relationship between oxygen uptake rate and changes in ammonium nitrogen concentration due to the oxidative treatment. The positive impact of ozone was also confirmed by ozonation of Tiamulin-contaminated (400 mg L) waste sludge where biogas production potential was increased for 6-times. Combination of approaches confirmed, that O effectively increase the treatability of Tiamulin in wastewater and sludge while addition of the hydrogen peroxide generally did not improve the performance of the processes.

摘要

这项工作的目的是评估臭氧化和臭氧化与 HO 在射流环反应器中的组合,以提高持久性兽用抗生素泰妙菌素的可生物处理性。氧化过程的效率通过基于废水处理效率和对废污泥稳定化影响的综合方法进行监测。在模型废水中(100mg/L),通过 COD 和 DOC 测量跟踪泰妙菌素的氧化降解,而通过呼吸测量确定可生物降解性的变化。还确定了生物气产生潜力,以确定与处理泰妙菌素污染废水相关的厌氧消化废物污泥的问题。在臭氧剂量为 69 g/g 和 220 g/g 时,COD 和 DOC 的去除率分别为 26%和 17%。呼吸测试证实了更好的可生物处理性。HO 的添加并没有提高去除效率(11-13%)。添加泰妙菌素和臭氧化再次抑制了硝化作用的第二阶段,再次恢复了 的形成。O/HO 处理的样品减少了硝化作用,特别是在过程的第一阶段形成 。同时,开发了一个二次模型来描述由于氧化处理,耗氧速率与氨氮浓度变化之间的关系。臭氧化的积极影响也通过臭氧化污染(400mg/L)废污泥得到了证实,其中生物气产生潜力增加了 6 倍。综合方法的组合证实,O 有效地提高了废水和污泥中泰妙菌素的可处理性,而添加过氧化氢通常不能提高这些过程的性能。

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