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使用环糊精去除水中的新兴微量污染物。

Removal of emerging micropollutants from water using cyclodextrin.

机构信息

Budapest University of Technology and Economics, Szent Gellért tér 4., H-1111 Budapest, Hungary.

Budapest University of Technology and Economics, Szent Gellért tér 4., H-1111 Budapest, Hungary.

出版信息

Sci Total Environ. 2014 Jul 1;485-486:711-719. doi: 10.1016/j.scitotenv.2014.04.003. Epub 2014 Apr 26.

Abstract

Small scale laboratory experiment series were performed to study the suitability of a cyclodextrin-based sorbent (ß-cyclodextrin bead polymer, BCDP) for modelling the removal of micropollutants from drinking water and purified waste water using simulated inflow test solutions containing target analytes (ibuprofen, naproxen, ketoprofen, bisphenol-A, diclofenac, β-estradiol, ethinylestradiol, estriol, cholesterol at 2-6 μg/L level). This work was focused on the preliminary evaluation of BCDP as a sorbent in two different model systems (filtration and fluidization) applied for risk reduction of emerging micropollutants. For comparison different filter systems combined with various sorbents (commercial filter and activated carbon) were applied and evaluated in the filtration experiment series. The spiked test solution (inflow) and the treated outflows were characterized by an integrated methodology including chemical analytical methods gas chromatography-tandem mass spectrometry (GC-MS/MS) and various environmental toxicity tests to determine the efficiency and selectivity of the applied sorbents. Under experimental conditions the cyclodextrin-based filters used for purification of drinking water in most cases were able to absorb more than 90% of the bisphenol-A and of the estrogenic compounds. Both the analytical chemistry and toxicity results showed efficient elimination of these pollutants. Especially the toxicity of the filtrate decreased considerably. Laboratory experiment modelling post-purification of waste water was also performed applying fluidization technology by ß-cyclodextrin bead polymer. The BCDP removed efficiently from the spiked test solution most of the micropollutants, especially the bisphenol-A (94%) and the hormones (87-99%) The results confirmed that the BCDP-containing sorbents provide a good solution to water quality problems and they are able to decrease the load and risk posed by micropollutants to the water systems.

摘要

开展了一系列小规模实验室实验,以研究一种基于环糊精的吸附剂(β-环糊精珠聚合物,BCD P)是否适合模拟使用含有目标分析物(布洛芬、萘普生、酮洛芬、双酚 A、二氯芬酸、β-雌二醇、乙炔雌二醇、雌三醇、胆固醇,浓度为 2-6μg/L)的模拟进水测试溶液从饮用水和净化废水中去除微量污染物。这项工作的重点是初步评估 BCD P 作为两种不同模型系统(过滤和流化)中的吸附剂的适用性,这两种模型系统用于降低新兴微量污染物的风险。为了进行比较,在过滤实验系列中应用了不同的过滤系统,并结合了不同的吸附剂(商业过滤器和活性炭)进行了评估。用包括化学分析方法(气相色谱-串联质谱法,GC-MS/MS)和各种环境毒性测试的综合方法对加标测试溶液(进水)和处理后的出水进行了表征,以确定应用吸附剂的效率和选择性。在实验条件下,用于净化饮用水的基于环糊精的过滤器在大多数情况下能够吸收超过 90%的双酚 A 和雌激素化合物。分析化学和毒性结果都表明这些污染物的有效去除。特别是滤液的毒性大大降低。还通过β-环糊精珠聚合物流化技术对废水的后净化进行了实验室实验模拟。BCD P 从加标测试溶液中有效地去除了大部分微量污染物,特别是双酚 A(94%)和激素(87-99%)。结果证实,含 BCD P 的吸附剂为水质问题提供了一个很好的解决方案,能够降低水中微量污染物对水系统的负荷和风险。

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