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采用分子印迹聚合物颗粒或氧化铝纳米颗粒的聚合物复合材料吸附剂处理含砷污染水。

Polymer composite adsorbents using particles of molecularly imprinted polymers or aluminium oxide nanoparticles for treatment of arsenic contaminated waters.

机构信息

Department of Biotechnology, Lund University, P O Box 124, SE-221 00 Lund, Sweden.

出版信息

Water Res. 2012 Sep 1;46(13):4111-20. doi: 10.1016/j.watres.2012.05.028. Epub 2012 May 23.

DOI:10.1016/j.watres.2012.05.028
PMID:22687522
Abstract

Removal of As(V) by adsorption from water solutions was studied using three different synthetic adsorbents. The adsorbents, (a) aluminium nanoparticles (Alu-NPs, <50 nm) incorporated in amine rich cryogels (Alu-cryo), (b) molecular imprinted polymers (<38 μm) in polyacrylamide cryogels (MIP-cryo) and (c) thiol functionalised cryogels (SH-cryo) were evaluated regarding material characteristics and arsenic removal in batch test and continuous mode. Results revealed that a composite design with particles incorporated in cryogels was a successful means for applying small particles (nano- and micro- scale) in water solutions with maintained adsorption capacity and kinetics. Low capacity was obtained from SH-cryo and this adsorbent was hence excluded from the study. The adsorption capacities for the composites were 20.3 ± 0.8 mg/g adsorbent (Alu-cryo) and 7.9 ± 0.7 mg/g adsorbent (MIP-cryo) respectively. From SEM images it was seen that particles were homogeneously distributed in Alu-cryo and heterogeneously distributed in MIP-cryo. The particle incorporation increased the mechanical stability and the polymer backbones of pure polyacrylamide (MIP-cryo) were of better stability than the amine containing polymer backbone (Alu-cryo). Both composites worked well in the studied pH range of pH 2-8. Adsorption tested in real wastewater spiked with arsenic showed that co-ions (nitrate, sulphate and phosphate) affected arsenic removal for Alu-cryo more than for MIP-cryo. Both composites still adsorbed well in the presence of counter-ions (copper and zinc) present at low concentrations (μg/l). The unchanged and selective adsorption in realistic water observed for MIP-cryo was concluded to be due to a successful imprinting, here controlled using a non-imprinted polymer (NIP). A development of MIP-cryo is needed, considering its low adsorption capacity.

摘要

采用三种不同的合成吸附剂研究了从水溶液中吸附去除 As(V)。研究了三种吸附剂:(a) 负载在富含胺的冷冻凝胶中的纳米铝颗粒(Alu-NPs,<50nm)(Alu-cryo),(b) 聚丙酰胺冷冻凝胶中的分子印迹聚合物(<38μm)(MIP-cryo)和(c) 巯基功能化冷冻凝胶(SH-cryo),对其材料特性和批式实验及连续模式下的砷去除性能进行了评价。结果表明,将颗粒复合到冷冻凝胶中的复合设计是将小颗粒(纳米和微米级)应用于水溶液中并保持吸附容量和动力学的成功方法。SH-cryo 的吸附容量较低,因此将其排除在研究之外。复合材料的吸附容量分别为 20.3±0.8mg/g 吸附剂(Alu-cryo)和 7.9±0.7mg/g 吸附剂(MIP-cryo)。从 SEM 图像可以看出,颗粒在 Alu-cryo 中均匀分布,在 MIP-cryo 中不均匀分布。颗粒的掺入提高了机械稳定性,并且纯聚丙烯酰胺(MIP-cryo)的聚合物主链比含胺聚合物主链(Alu-cryo)更稳定。两种复合材料在研究的 pH 范围(pH 2-8)内均表现良好。在添加砷的实际废水中进行的吸附测试表明,与 MIP-cryo 相比,共离子(硝酸盐、硫酸盐和磷酸盐)对砷去除的影响更大。当存在低浓度(μg/l)的抗衡离子(铜和锌)时,两种复合材料仍能很好地吸附。MIP-cryo 在实际水样中表现出不变和选择性吸附,这被认为是由于成功的印迹,这里通过使用非印迹聚合物(NIP)进行控制。考虑到 MIP-cryo 的低吸附容量,需要对其进行进一步开发。

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