首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Fouling studies of a polyamide nanofiltration membrane by selected natural organic matter:an analytical approach
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Fouling studies of a polyamide nanofiltration membrane by selected natural organic matter:an analytical approach

机译:选定的天然有机物对聚酰胺纳滤膜的结垢研究:一种分析方法

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The present study compares the fouling properties of two selected and well-characterized hydrophobic (denoted HPOA) and hydrophilic (denoted TPIA) natural organic matters (NOM) fractions with a commercial polyamide (PA) nanofiltration (NF) membrane (denoted NF-55).Analytical tools such as elemental analyses using microanalyses,specific UV absorbance,solid-state cross-polarization magic angle spinning (CPMAS) ~(13)C-NMR,nigh pressure size exclusion (HPSEC) chromatography,HPLC system and acid/base titration for characterizing NOM fractions and contact angle,hydraulic permeability,streaming potential (SP) and observed rejection of a NaCl aqueous solution to evaluate the affinity of the PA material with both selected NOM fractions isolated from the Blavet river (Britany region,France).The PA material was found to be more sensitive to hydrophobic NOM adsorption leading to irreversible fouling with drastic modifications of the initial physico-chemical properties of the membrane:(a) increase of its hydrophobicity;(b) decrease of its hydraulic permeability associated with a decrease in its pore size and consequently (c) increase the observed rejection of salty solutions.The higher decrease in the performances of this PA NF membrane is observed for the more hydrophobic foulant,HPOA.At the same time a displacement of the isolectric point (IEP) of the membrane material was observed from 4.5 for the clean membrane (KC1 10~(-4)mol L~(-1)) to 3.4 after HPOA sorption.At a lower pH range than the IEP,the effects of cations and H~+ on the charge properties of the membranes increases near the shear plane,yielding more positive SP values.For the hydrophilic TPIA foulant no displacement of the IEP was observed.Then the results of SP experiments conducted through the membrane with a homemade apparatus has indicated that HPOA is more retained inside the pores as compared to the TPIA that was mainly sorbed at the surface of the membrane.Furthermore the membranes acidic-basis properties were amplified after foulants deposit in comparison to the cleaned membrane where a dominant specific sorption of monovalents and diva-lents ions occurred.
机译:本研究比较了两种选择的和特性良好的疏水性(表示为HPOA)和亲水性(表示为TPIA)天然有机物(NOM)组分与商业聚酰胺(PA)纳滤(NF)膜(表示为NF-55)的结垢特性。分析工具,例如使用微量分析的元素分析,比色法UV吸光度,固态交叉极化幻角旋转(CPMAS)〜(13)C-NMR,近压尺寸排阻(HPSEC)色谱,HPLC系统和酸/碱滴定用于表征NOM馏分和接触角,水渗透率,流动电势(SP),并观察到NaCl水溶液的排斥,以评估PA材料与从Blavet河(法国不列颠地区)分离的两种选定NOM馏分的亲和力。发现PA材料对疏水性NOM吸附更敏感,导致不可逆的结垢并极大地改变了膜的初始物理化学性质:(a)增加疏水性;(b)降低其水渗透性,同时降低其孔径,因此(c)增加对盐溶液的观察到的排斥作用。对于疏水性更高的PA NF膜,其性能下降越多同时观察到膜材料的等电点(IEP)的位移从干净膜(KC1 10〜(-4)mol L〜(-1))的4.5到HPOA吸附后的3.4的位移在低于IEP的pH范围内,阳离子和H〜+对膜电荷性质的影响在剪切平面附近增加,产生更多的正SP值。对于亲水性TPIA污垢,未观察到IEP的位移。然后用自制仪器通过膜进行的SP实验结果表明,与主要吸附在膜表面的TPIA相比,HPOA保留在孔内更多。与污垢沉积后相比,净化膜在发生过单价和多价离子吸附的主要比吸附率更高的情况下被放大。

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