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Development of a sandwich-type filtration unit packed with MIP nanoparticles for removal of atrazine from water sources

机译:研制出装有MIP纳米颗粒的三明治型过滤装置,用于从水中去除removal去津

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Highly specific molecularly imprinted polymer (MIP) nanoparticles (NPs) were synthesized via precipitation and mini-emulsion polymerization in the presence of atrazine, acting as template molecule. The specificity and binding ability of synthesized MIP NPs to remove the target template molecule from polluted water samples were tested in batch-wise experiments. Subsequently, a sandwich-type membrane filtration system packed with highly specific particulate MIPs was developed for the selective adsorption of atrazine from water samples. The sandwich-type fixed bed filtration unit packed with MIP NPs was then tested in continuous filtration experiments for the removal of atrazine from water samples at very low concentrations (i.e., down to 1 ppb). The binding capacity of the regenerated sandwich-type filtration system packed with MIP NPs and its long-term performance was also assessed through a series of experiments. It was found that the sandwich-type fixed bed filtration unit packed with MIP NPs synthesized by mini-emulsion polymerization can efficiently remove atrazine from water samples at very low concentrations and it can be regenerated and reused without loss of the rebinding capacity and "memory effect". Finally, a simple kinetic model was developed to describe the atrazine adsorption rate from aqueous solutions. Based on the derived kinetic model, it was found that 0.75 g of MIP NPs were required for the removal of 99% of the total atrazine mass from a polluted water quantity of 800 ml (i.e., 1-10 ppb atrazine concentration) flowing through the filtration unit at a rate 4 ml/min. (C) 2015 Elsevier B.V. All rights reserved.
机译:在作为模板分子的at去津存在下,通过沉淀和微乳液聚合合成了高特异性分子印迹聚合物(MIP)纳米颗粒(NPs)。在分批实验中测试了合成的MIP NP从污水样品中去除目标模板分子的特异性和结合能力。随后,开发了一种夹有高特异性颗粒MIP的夹心型膜过滤系统,用于从水样中选择性吸附阿特拉津。然后在连续过滤实验中测试了装有MIP NP的三明治型固定床过滤装置,以从水中以极低的浓度(即低至1 ppb)去除removal去津。还通过一系列实验评估了装有MIP NP的再生夹心式过滤系统的结合能力及其长期性能。发现通过微乳液聚合合成的装有MIP NPs的夹心型固定床过滤装置可以有效地从极低浓度的水样品中去除azine去津,并且可以再生和再利用,而不会损失重新结合能力和“记忆效应” ”。最后,建立了一个简单的动力学模型来描述阿特拉津从水溶液中的吸附速率。根据推导的动力学模型,发现需要0.75 g的MIP NP才能从流经水的800毫升(即1-10 ppb阿特拉津浓度)的污水中去除99%的阿特拉津总量。过滤单元的速度为4毫升/分钟。 (C)2015 Elsevier B.V.保留所有权利。

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