首页> 外文期刊>Environmental Science & Technology >Tracking ~(14)C-Labeled Organic Micropollutants to Differentiate between Adsorption and Degradation in GAC and Biofilm Processes
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Tracking ~(14)C-Labeled Organic Micropollutants to Differentiate between Adsorption and Degradation in GAC and Biofilm Processes

机译:跟踪〜(14)C标记的有机微量胶质剂,以区分GAC和生物膜过程中的吸附和降解

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摘要

Granular activated carbon (GAC) filters can be used to reduce emissions of organic micropollutants via municipal wastewater, but it is still uncertain to which extent biological degradation contributes to their removal in GAC filters. ~(14)C-labeled organic micropollutants were therefore used to distinguish degradation from adsorption in a GAC-filter media with associated biofilm. The rates and extents of biological degradation and adsorption were investigated and compared with other biofilm systems, including a moving bed biofilm reactor (MBBR) and a sand filter, by monitoring ~(14)C activities in the liquid and gas phases. The microbial cleavage of ibuprofen, naproxen, diclofenac, and mecoprop was confirmed for all biofilms, based on the formation of ~(14)CO_2, whereas the degradation of ~(14)C-labeled moieties of sulfamethoxazole and carbamazepine was undetected. Higher degradation rates for diclofenac were observed for the GAC-filter media than for the other biofilms. Degradation of previously adsorbed diclofenac onto GAC could be confirmed by the anaerobic adsorption and subsequent aerobic degradation by the GAC-bound biofilm. This study demonstrates the potential use of ~(14)C-labeled micropollutants to study interactions and determine the relative contributions of adsorption and degradation in GAC-based treatment systems.
机译:粒状活性炭(GAC)过滤器可用于通过市政废水减少有机微量舒适剂的排放,但仍然不确定在全面的生物降解有助于它们在GAC过滤器中的去除。因此,使用C标记的有机微量润液用于区分从具有相关生物膜的Gac过滤介质中吸附的降解。研究了生物降解和吸附的速率和范围,并与其他生物膜系统相比,包括移动床生物膜反应器(MBBR)和砂滤器,通过监测液体和气相中的〜(14)C活性。基于〜(14)CO_2的形成,确认了所有生物膜的布洛芬,萘普伦,双氯芬酸和MeCOPROP的微生物切割,而未检测到〜(14)〜(14)C-标记部分的降解〜(14)C-磺胺甲恶唑和卡巴马嗪的降解。对于GAC过滤介质,观察到Diclofenac的更高降解速率而不是其他生物膜。通过厌氧吸附和随后通过GAC-结合的生物膜的厌氧吸附和随后的有氧降解,可以证实预先吸附的双氯芬酸的降解。本研究表明〜(14)C标记的微露剂的潜在用途研究相互作用并确定基于GAC的处理系统中吸附和降解的相对贡献。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第16期|11318-11327|共10页
  • 作者单位

    Department of Chemical Engineering Lund University 221 00 Lund Sweden;

    Department of Chemical Engineering Lund University 221 00 Lund Sweden Sweden Water Research AB Ideon Science Park 223 70 Lund Sweden;

    School of Education and Environment Division of Natural Sciences Kristianstad University 291 88 Kristianstad Sweden;

    Department of Chemical Engineering Lund University 221 00 Lund Sweden;

    Department of Chemical Engineering Lund University 221 00 Lund Sweden;

    Department of Chemical Engineering Lund University 221 00 Lund Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pharmaceuticals; ~(14)C-labeling; granular activated carbon; biofilms; transformation;

    机译:药品;〜(14)C标签;粒状活性炭;生物膜;转型;
  • 入库时间 2022-08-19 03:04:16

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