首页> 外文期刊>Environmental Science and Pollution Research >Systematic screening of common wastewater-marking Pharmaceuticals in urban aquatic environments: implications for environmental risk control
【24h】

Systematic screening of common wastewater-marking Pharmaceuticals in urban aquatic environments: implications for environmental risk control

机译:对城市水生环境中常见废水标记药物的系统筛选:对环境风险控制的意义

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

In this report, we refer to pharmaceuticals that are widespread in the urban aquatic environment and that mainly originate from wastewater treatment plants or non-point source sewage as "wastewater-marking pharmaceuticals" (WWMPs). To some extent, they reflect the condition or trend of water contamination and also contribute to aquatic environmental risk assessment. The method reported here for screening typical WWMPs was proposed based on academic concerns about them and their concentrations present in the urban aquatic environment, as well as their properties of accumulation, persistence, eco-toxicity and related environmental risks caused by them. The screening system consisted of an initial screening system and a further screening system. In the former, pharmaceuticals were categorised into different evaluation levels, and in the latter, each pharmaceutical was given a normalised final evaluation score, which was the sum of every score for its properties of accumulation, persistence, eco-toxicity and environmental risk in the aquatic environment. The system was applied to 126 pharmaceuticals frequently detected in the aquatic environment. In the initial screening procedure, five pharmaceuticals were classified into the "high" category, 16 pharmaceuticals into the "medium" category, 15 pharmaceuticals into the "low" category and 90 pharmaceuticals into the "very low" category. Subsequently,further screening were conducted on 36 pharmaceuticals considered as being of "high", "medium" and "low" categories in the former system. We identified 7 pharmaceuticals with final evaluation scores of 1-10, 10 pharmaceuticals with scores of 11-15, 15 pharmaceuticals with scores from 16 to 20 and 4 pharmaceuticals with scores above 21. The results showed that this screening system could contribute to the effective selection of target WWMPs, which would be important for spatial-temporal dynamics, transference and pollution control of pharmaceuticals in the urban aquatic environment. However, there remains a number of pharmaceutical parameters with measured data gaps, such as organic carbon adsorption coefficients and bioconcentration factors, which, if filled, would improve the accuracy of the screening system.
机译:在本报告中,我们将在城市水生环境中广泛使用并且主要来源于废水处理厂或非点源污水的药物称为“废水标记药物”(WWMP)。它们在一定程度上反映了水污染的状况或趋势,也有助于评估水生环境风险。基于对它们的研究及其在城市水生环境中的浓度以及它们的蓄积,持久性,生态毒性和相关环境风险的学术关注,提出了此处报道的用于筛选典型WWMP的方法。筛选系统由初始筛选系统和进一步筛选系统组成。前者将药物分为不同的评估级别,后者则将每种药物的归一化最终评估得分归一化,这是该药物在蓄积,持久性,生态毒性和环境风险方面的每个得分的总和。水生环境。该系统已应用于在水生环境中经常发现的126种药品。在最初的筛选程序中,五种药物被分类为“高”类别,16种药物被分类为“中”类别,15种药物被划分为“低”类别,90种药物被划分为“极低”类别。随后,对以前系统中被认为属于“高”,“中”和“低”类别的36种药物进行了进一步筛选。我们确定了7种药物的最终评估得分为1-10,有10种药物的得分为11-15,有15种药物的得分从16至20,以及4种药物的得分都超过21。结果表明,这种筛选系统可有助于有效评估目标WWMP的选择,这对于城市水生环境中药品的时空动态,转移和污染控制至关重要。但是,仍然存在许多具有测量数据缺口的药物参数,例如有机碳吸附系数和生物浓缩系数,如果填充,将提高筛查系统的准确性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号