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水中溶解的双氯芬酸和三氯生的毒性评估及治疗方案

Toxicity Assessment and Treatment Options of Diclofenac and Triclosan Dissolved in Water.

作者信息

Wimmerova Lenka, Solcova Olga, Spacilova Marketa, Cehajic Nadija, Krejcikova Simona, Marsik Petr

机构信息

Department of Applied Ecology, Faculty of Environmental Sciences, Czech University of Life Sciences Prague, Kamycka 129, 16500 Prague, Czech Republic.

Department of Catalysis and Reaction Engineering, Institute of Chemical Process Fundamentals of the CAS, Rozvojova 135, 16502 Prague, Czech Republic.

出版信息

Toxics. 2022 Jul 27;10(8):422. doi: 10.3390/toxics10080422.

Abstract

The presence of pharmaceutical and personal care products in water is increasing tremendously nowadays. Typical representatives are diclofenac (DCF) and triclosan (TCS). Acute toxicity of these substances was experimentally assessed using the freshwater algae (living, immobilized). The IC achieved for was 177.7-189.1 mg·L for DCF and 5.4-17.2 µg·L for TCS, whereas, regarding DCF, the results corresponded to the values observed by other authors. Concerning TCS, the results were lower than predicted and indicated TCSs' higher toxicity. The immobilized showed comparable results with its living culture for DCF only. Regarding KCrO and TCS, the immobilized alga was more sensitive. The DCF and TCF removal from water was tested by sorption, photocatalytic and photolytic processes. TiO was used as a photocatalyst. Norit and SuperSorbon were used as sorbents based on activated charcoal. The DCF decomposition achieved by both photo-processes was very fast. The starting concentration fell below the detection limit in less than one minute, while bioluminescence on showed no toxic intermediates formed only in the case of photocatalysis. DCF and TCS removals by sorption were significantly faster on Norit than SuperSorbon, while the bioluminescence inhibition remained insignificant.

摘要

如今,水中药物和个人护理产品的存在量正在急剧增加。典型代表是双氯芬酸(DCF)和三氯生(TCS)。使用淡水藻类(活藻、固定化藻)对这些物质的急性毒性进行了实验评估。DCF的IC值为177.7 - 189.1 mg·L,TCS的IC值为5.4 - 17.2 µg·L,而对于DCF,结果与其他作者观察到的值相符。关于TCS,结果低于预测值,表明TCS的毒性更高。仅对于DCF,固定化藻与其活藻培养物显示出可比的结果。对于重铬酸钾(KCrO)和TCS,固定化藻更敏感。通过吸附、光催化和光解过程测试了从水中去除DCF和TCF的效果。使用二氧化钛(TiO)作为光催化剂。使用基于活性炭的Norit和SuperSorbon作为吸附剂。两种光催化过程实现的DCF分解非常快。起始浓度在不到一分钟内降至检测限以下,而仅在光催化的情况下,生物发光显示没有形成有毒中间体。Norit对DCF和TCS的吸附去除速度明显快于SuperSorbon,而生物发光抑制作用仍然不显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c04/9415529/20b12ff0ebe9/toxics-10-00422-g001.jpg

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