微污染物在地表水中的发生及负载碳纳米管的聚合物膜催化湿式过氧化氧化强化过滤去除

IF 5.5 Q1 ENGINEERING, CHEMICAL
Adriano S. Silva , Paulo Zadra Filho , Ana Paula Ferreira , Fernanda F. Roman , Arthur P. Baldo , Madeleine Rauhauser , Jose L. Diaz de Tuesta , Ana I. Pereira , Adrián M.T. Silva , Juliana M.T. Pietrobelli , Marzhan S. Kalmakhanova , Daniel D. Snow , Helder T. Gomes
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引用次数: 0

摘要

地表水中新出现的污染物监测运动对于评估人类活动对河岸生态系统的影响至关重要。除了识别污染物和威胁外,还需要处理方案来减轻排放到环境中的污水所造成的不利影响。多年来,抓取样本一直用于评估水质,但结果可能会产生误导,因为污染物并不总是被发现,因为它们在这些基质中存在低浓度和高度变化的浓度。即使浓度如此之小,污染物也可能对水生生物有害。因此,在大约三个月的时间里,被动采样器被用来监测废水处理厂(WWTP)排放的上下游河水中药物的存在。被动采样器的提取、分析和结果用于识别可能的污染成分和潜在来源。我们的活动能够识别和量化28种污染物,并表明27种污染物在污水排放进入河流后数量增加。统计分析揭示了污染物之间的相关性,显示了其数量的振荡,并能够确定需要注意治疗的特定污染物组,如抗生素和抗抑郁药。此外,研究了一种新型的催化湿式过氧化物氧化(CWPO)强化过滤工艺,该工艺使用负载碳纳米管(CNTs)的复合聚合物膜作为一种可能的水处理溶液。选择磺胺甲恶唑(SMX)作为模型污染物,在连续流动模式下,8h的去除率达到85 - 90%(相当于2255-2315 mg m-2 h-1)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Occurrence of micropollutants in surface water and removal by catalytic wet peroxide oxidation enhanced filtration using polymeric membranes loaded with carbon nanotubes

Occurrence of micropollutants in surface water and removal by catalytic wet peroxide oxidation enhanced filtration using polymeric membranes loaded with carbon nanotubes
Monitoring campaigns of contaminants of emerging concern (CECs) in surface waters is of utmost importance in evaluating the anthropogenic impact on riparian ecosystems. Beyond identifying pollutants and threats, treatment solutions are also needed to mitigate the adverse effects caused by polluted water discharged into the environment. For years, grab samples have been used to assess water quality, but the results can be misleading since contaminants are not always found due to the low and highly variable concentrations at which they are present in these matrices. Even in such small concentrations, the contaminants can be harmful to aquatic life. Therefore, for about three months, passive samplers were used to monitor the presence of pharmaceuticals in river water up- and downstream the discharge of a wastewater treatment plant (WWTP). Passive samplers were extracted, analyzed and the results were used to identify possible pollution composition and potential sources. Our campaign enabled the identification and quantification of 28 contaminants and showed that 27 increased in amount after WWTP discharge entered the river. The statistical analysis revealed the correlation between the pollutants, showed the oscillation in their amounts, and enabled the identification of specific pollutant groups that deserve attention for treatment, such as antibiotics and antidepressants. Moreover, an innovative catalytic wet peroxide oxidation (CWPO) intensified filtration process was investigated as a possible water treatment solution, using composite polymeric membranes loaded with carbon nanotubes (CNTs). Sulfamethoxazole (SMX) was selected as a model pollutant, and 85–90 % removals were achieved in continuous flow mode during 8 h (equivalent to 2255–2315 mg m-2 h-1).
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来源期刊
Chemical Engineering Journal Advances
Chemical Engineering Journal Advances Engineering-Industrial and Manufacturing Engineering
CiteScore
8.30
自引率
0.00%
发文量
213
审稿时长
26 days
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