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环境中有机防晒霜在水消毒过程中的归宿:降解副产物的形成及其毒理学特征。

Environmental Fate of Organic Sunscreens during Water Disinfection Processes: The Formation of Degradation By-Products and Their Toxicological Profiles.

机构信息

Department of Chemical Sciences, University of Naples Federico II, Via Cintia 4, I-80126 Naples, Italy.

出版信息

Molecules. 2022 Jul 13;27(14):4467. doi: 10.3390/molecules27144467.

Abstract

The development of any commercial product should also be aimed at reducing the risk associated with it, according to the safe-by-design concept; that is, risk assessment should always be at the center of the design, and the impact on human and environmental health should be assessed and eliminated during the product development phase and not afterwards. Unfortunately, even today, most operators in any production sector implement the philosophy of "risk management" or rather of managing the problem when it occurs, using spot interventions instead of changing the approach. This argument is also valid in the production of solar filters, which have reached a satisfactory degree of efficiency in the face of a substantial underestimation of the risks associated with their possible environmental fate. In fact, solar filters have been found in bathing waters and their environmental fate may depend on various factors such as the pH of the water, the presence of organic material, metal ions and light, and, above all, the chemical agents used in the disinfection of the water itself. Thus, during disinfection processes, the generation of dozens of products with a lower molecular weight and generally of an aromatic nature has been tested, where some of them did not receive an exact structural definition and a precise evaluation of their precise toxicological profile. Therefore, it is interesting to draw a complete picture of organic sunscreens and of the byproducts obtained under different conditions and their related ecotoxicological profile.

摘要

根据安全设计理念,任何商业产品的开发还应旨在降低与之相关的风险;也就是说,风险评估应始终处于设计的中心位置,在产品开发阶段就应评估并消除对人类和环境健康的影响,而不是在事后。不幸的是,即使在今天,任何生产领域的大多数操作人员仍在实施“风险管理”的理念,或者更确切地说,是在出现问题时才着手管理问题,采用的是临时干预措施,而不是改变方法。这一论点在太阳能过滤器的生产中同样适用,尽管它们在面对对其可能的环境归宿的风险的严重低估时已达到了令人满意的效率水平。事实上,太阳能过滤器已在浴场水中被发现,其环境归宿可能取决于各种因素,如水质的 pH 值、有机物质的存在、金属离子和光照,以及最重要的是,水本身的消毒中所使用的化学试剂。因此,在消毒过程中,已对数十种具有较低分子量且通常具有芳香性质的产品进行了测试,其中一些产品并未得到确切的结构定义,也未对其确切的毒理学特征进行精确评估。因此,全面了解有机防晒霜和在不同条件下获得的副产物及其相关的生态毒理学特征很有意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4514/9324767/a963aa7e1eb9/molecules-27-04467-g001.jpg

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