首页> 外文期刊>The Science of the Total Environment >Coupling mesoporous imprinted polymer based DGT passive samplers and HPLC: A new tool for in-situ selective measurement of low concentration tetrabromobisphenol A in freshwaters
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Coupling mesoporous imprinted polymer based DGT passive samplers and HPLC: A new tool for in-situ selective measurement of low concentration tetrabromobisphenol A in freshwaters

机译:基于介孔的DGT无源取样器和HPLC偶联的介孔印迹聚合物:一种新工具,用于在淡水中出于原位选择性测量低浓度四溴双酚A的新工具

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Accurate measurement of tetrabromobisphenol A (TBBPA) is very important because of its widespread environmental pollution. Diffusive gradients in thin films technique (DGT), an in-situ passive sampling method, is regarded as a reliable and robust measurement technique. A new DGT technique based on mesoporous imprinted polymer was combined with high-pressure liquid chromatography (HPLC) method for sampling, preconcentration and monitoring low concentration TBBPA in natural waters. The diffusion coefficient of TBBPA through the diffusive gel was measured by diffusion cell test and simulated using mathematical expression. The effects of different ambient conditions were tested under laboratory conditions and the performance of DGT sampler was validated in natural waters. The diffusion coefficient of TBBPA in the diffusive gel was measured as 2.18 x 10(-6)cm(2)s(-1) and simulated as in the range 1.41-3.48 x 10(-6)cm(2)s(-1) by Amsden model. Comparison of experimental and theoretical data, the validity of the experimental method can be verified by the mathematical model. The binding agent with mesoporous imprinted polymer showed selective affinity to TBBPA and its adsorption rate met the requirement of DGT device. The DGT method detection limit was at the level of ng L-1 for 7 days deployment. DGT sampler was suitable for application in aquatic environment with a range of pH (4.5-7.6), ionic strength (1 x 10(-4)-0.5 mol L-1), and dissolved organic matter (DOM) concentration (0-10 mg CL-1). The coupling method of DGT and HPLC was a promising technique for in situ sampling, preconcentration and monitoring low concentration TBBPA in most typical natural waters. (C) 2019 Published by Elsevier B.V.
机译:由于其广泛的环境污染,精确测量四溴二苯异酚A(TBBPA)非常重要。薄膜技术(DGT)中的扩散梯度是一种原位被动采样方法,被认为是可靠且坚固的测量技术。一种基于介孔压印聚合物的新DGT技术与高压液相色谱(HPLC)方法合并,用于在天然水域中采样,预浓度和监测低浓度TBBPA。通过扩散细胞测试测量通过扩散凝胶的TBBPA的扩散系数并使用数学表达模拟。在实验室条件下测试不同环境条件的影响,DGT采样器的性能在天然水域中验证。将扩散凝胶中的TBBPA的扩散系数测量为2.18×10( - 2 )cm(2)厘米(2)厘米(-1),并模拟为1.41-3.48×10(-6)cm(2)s( - 1)由Amsden模型。实验和理论数据的比较,可以通过数学模型验证实验方法的有效性。具有介孔压印聚合物的粘合剂对TBBPA的选择性亲和力显示出与TBBPA的亲和力,其吸附速率满足了DGT器件的要求。 DGT方法检测限为NG L-1的水平,持续7天部署。 DGT采样器适用于水生环境中的应用,该水生环境范围为pH(4.5-7.6),离子强度(1×10(-4)-0.5 mol L-1)和溶解有机物质(DOM)浓度(0-10 mg cl-1)。 DGT和HPLC的偶联方法是在大多数典型的天然水中原位采样,预浓度和监测低浓度TBBPA的有希望的技术。 (c)2019年由elestvier b.v发布。

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