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Removing 17β-estradiol from drinking water in a biologically active carbon (BAC) reactor modified from a granular activated carbon (GAC) reactor

机译:从生物学上去除饮用水中的17β-雌二醇活性炭(BaC)反应器由粒状活化剂改性而成碳(GaC)反应器

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摘要

Estrogenic compounds in drinking water sources pose potential threats to human health. Treatment technologies are needed to effectively remove these compounds for the production of safe drinking water. In this study, GAC adsorption was first tested for its ability to remove a model estrogenic compound, 17β-estradiol (E2). Although GAC showed a relatively high adsorption capacity for E2 in isotherm experiments, it appeared to have a long mass transfer zone in a GAC column reactor, causing an early leakage of E2 in the effluent. With an influent E2 concentration of 20 μg/L, the GAC reactor was able to bring down effluent E2 to ∼200 ng/L. To further enhance E2 removal, the GAC reactor was converted to a biologically active carbon (BAC) reactor by promoting biofilm growth in the reactor. Under optimal operating conditions, the BAC reactor had an effluent E2 concentration of ∼50 ng/L. With the empty bed contact times tested, the reactor exhibited more robust E2 removal performance under the BAC operation than under the GAC operation. It is noted that estrone (E1), an E2 biodegradation intermediate, was frequently detected in reactor effluent during the BAC operation. Results from this study suggested that BAC could be an effective drinking water treatment process for E2 removal and in the meantime E1 accumulation needs to be addressed.
机译:饮用水源中的雌激素化合物对人类健康构成了潜在的威胁。需要治疗技术以有效地除去这些化合物,以生产安全饮用水。在本研究中,首先测试GAC吸附以获得除去型雌激素化合物,17β-雌二醇(E2)的能力。虽然GAC在等温实验中表现出相对高的E2吸附能力,但它似乎在GAC柱反应器中具有长传质区,导致e2在流出物中的早期泄漏。具有20μg/ L的流入E2浓度,GAC反应器能够将流出物E2降至约200ng / L.为了进一步增强E2去除,通过促进反应器中的生物膜生长,将GAC反应器转化为生物活性炭(BAC)反应器。在最佳操作条件下,BAC反应器具有〜50ng / L的流出物E2浓度。通过测试的空床接触时间,反应器在BAC操作下表现出比GAC操作更稳健的E2去除性能。应注意,在BAC操作期间,在反应器流出物中经常检测到Estrone(E1),E2生物降解中间体。本研究结果表明,BAC可以是E2去除的有效饮用水处理过程,并且在与此同时的E1积累需要解决。

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