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Nanofiltration as a treatment method for the removal of pesticides from ground waters

机译:纳滤作为从地下水中去除农药的处理方法

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A major problem in the drinking water production is the presence of pesticides in raw water, not only in surface waters, but also in ground waters. Concentrations of several Hgil have been found. Traditionally, pestic ides are removed using granular or powdered activated carbon, which is an expensive process. The cost is enhanced by competition of pesticides and natural organic matter (NOM) for adsorption sites on the activated carbon. Nanofiltration (NF) can be a valuable altemative for the removal of pesticides. Moreover, pesticides and hardness can be removed in one step. In this paper, the retention of four pesticides (atraxine, simazine, diuron, isoproturon) was determined experimentally for four NF membranes NF-70 (Dow/FilmTec), NF-45 (Dow/FilmTec), UTC-20 (Toray inc.) and NTR-7450 Nitto- Denko). The experimental retentions indicate that NF-70 is a suitable membrane for removal of pesticides. The experimental retentions were related to structural properties of the molecules. The size of the molecule is the most important parameter, and may be represented by molecular weight, or more accurately by a molecular diameter calculated from the molecular structure. Furthermore, a comparison with retentions of a series of saccharides confirms the earlier found effect of the dipole moment a higher dipole moment results in a lower retention. No effect of the pesticide concentration was found. The matrix of the ground waters caused an increase of the pesticide retention, together with a decrease of the water flux through the membrane. .
机译:饮用水生产中的一个主要问题是原水中不仅存在地表水,而且地下水中都存在农药。已经发现了几种Hgil的浓度。传统上,使用粒状或粉状活性炭去除有害物质,这是一个昂贵的过程。农药和天然有机物(NOM)竞争活性炭上的吸附位点会增加成本。纳滤(NF)是去除农药的一种有价值的替代方法。而且,农药和硬度可以一步去除。在本文中,通过实验确定了四种NF膜NF-70(Dow / FilmTec),NF-45(Dow / FilmTec),UTC-20(Toray inc。)的四种农药(阿曲辛,辛嗪,杜隆,异丙隆)的保留量。 )和NTR-7450 Nitto-Denko)。实验结果表明,NF-70是去除农药的合适膜。实验保留与分子的结构性质有关。分子的大小是最重要的参数,并且可以由分子量或更准确地由由分子结构计算的分子直径表示。此外,与一系列糖类的保留值进行比较,证实了偶极矩的较早发现效应,较高的偶极矩导致较低的保留率。没有发现农药浓度的影响。地下水的基质导致杀虫剂的保留量增加,同时穿过膜的水通量减少。 。

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