首页> 外文期刊>International journal of environmental analytical chemistry >Solid ink-printed filter paper as a green adsorbent material for the solid-phase extraction of UV filters from water samples
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Solid ink-printed filter paper as a green adsorbent material for the solid-phase extraction of UV filters from water samples

机译:固态油墨印刷滤纸,作为绿色吸附材料,用于从水样中固相萃取紫外线滤光片

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摘要

This work describes the development of a new green solid-phase extraction approach, which is based on the use of low-cost extraction discs composed of plain filter papers that are covered with a synthetic wax-like coating. The filter papers are printed in a commercial solid ink printer, which dispenses a synthetic wax-like ink on the surface of the paper, to cover the hydrophilic cellulose fibre matrix with an interface of lipophilic domains where non-polar analytes can partition through hydrophobic interactions. The modified paper filters were used to extract hydrophobic organic compounds from water samples following the customary procedure of solid-phase extraction without sorbent preconditioning and needless of high-vacuum sources. As a proof-of-concept application, a series of non-polar organic UV filters were used as model analytes to optimise the extraction parameters and evaluate the performance of the method in spiked water samples. Based on this principle, a new sample preparation platform with low environmental footprint has been developed that enables extraction to be carried out using low-cost, environmental benign and non-toxic conventional materials. The advantages and disadvantages of the method, alongside with its future prospects towards the development of custom-made printed extraction kits', are envisioned and discussed.
机译:这项工作描述了一种新的绿色固相萃取方法的开发,该方法基于使用低成本的萃取盘,该萃取盘由覆盖有合成蜡状涂层的普通滤纸组成。滤纸在商用固体墨水打印机上打印,该打印机将合成蜡状墨水分配到纸张表面,以覆盖具有亲脂域界面的亲水性纤维素纤维基质,非极性分析物可以通过疏水相互作用进行分配。改进的纸质过滤器用于按照固相萃取的常规程序从水样中萃取疏水性有机化合物,无需进行吸附剂预处理,也不需要高真空源。作为概念验证应用,一系列非极性有机UV过滤器用作模型分析物,以优化提取参数并评估加标水样品中该方法的性能。基于这一原理,开发了一种新的样品制备平台,该平台具有较低的环境足迹,可使用低成本,对环境无害且无毒的常规材料进行提取。设想并讨论了该方法的优缺点,以及对开发定制印刷提取套件的未来前景。

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