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The effects of dissolved natural organic matter on the adsorption of synthetic organic chemicals by activated carbons and carbon nanotubes

机译:溶解的天然有机物对活性炭和碳纳米管吸附合成有机化学物质的影响

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Understanding the influence of natural organic matter (NOM) on synthetic organic contaminant (SOC) adsorption by carbon nanotubes (CNTs) is important for assessing the environmental implications of accidental CNT release and spill to natural waters, and their potential use as adsorbents in engineered systems. In this study, adsorption of two SOCs by three single-walled carbon nanotubes (SWNTs), one multi-walled carbon nanotube (MWNT), a microporous activated carbon fiber (ACF) [i.e., ACF10] and a bimodal porous granular activated carbon (GAC) [i.e., HD4000] was compared in the presence and absence of NOM. The NOM effect was found to depend strongly on the pore size distribution of carbons. Minimal NOM effect occurred on the macroporous MWNT, whereas severe NOM effects were observed on the microporous HD4000 and ACF10. Although the single-solute adsorption capacities of the SWNTs were much lower than those of HD4000, in the presence of NOM the SWNTs exhibited adsorption capacities similar to those of HD4000. Therefore, if released into natural waters, SWNTs can behave like an activated carbon, and will be able to adsorb, carry, and transfer SOCs to other systems. However, from an engineering application perspective, CNTs did not exhibit a major advantage, in terms of adsorption capacities, over the GAC and ACF. The NOM effect was also found to depend on molecular properties of SOCs. NOM competition was more severe on the adsorption of 2-phenylphenol, a nonplanar and hydrophilic SOC, than phenanthrene, a planar and hydrophobic SOC, tested in this study. In terms of surface chemistry, both adsorption affinity to SOCs and NOM effect on SOC adsorption were enhanced with increasing hydrophobicity of the SWNTs.
机译:了解天然有机物(NOM)对碳纳米管(CNT)吸附合成有机污染物(SOC)的影响,对于评估CNT意外释放和泄漏到天然水中的环境影响及其在工程系统中作为吸附剂的潜在用途至关重要。在这项研究中,三种单壁碳纳米管(SWNT),一种多壁碳纳米管(MWNT),微孔活性炭纤维(ACF)[即ACF10]和双峰多孔颗粒活性炭(在存在和不存在NOM的情况下比较GAC)(即HD4000)。发现NOM效应很大程度上取决于碳的孔径分布。 NOM对大孔MWNT的影响最小,而对微孔HD4000和ACF10的NOM的影响最大。尽管单壁碳纳米管的单质吸附能力远低于HD4000,但在存在NOM的情况下,单壁碳纳米管的吸附能力与HD4000相似。因此,如果将SWNT释放到天然水中,其行为就像活性炭一样,并且能够将SOC吸收,携带并转移到其他系统中。然而,从工程应用的角度来看,就吸附能力而言,碳纳米管没有表现出超过GAC和ACF的主要优势。还发现NOM效应取决于SOC的分子特性。在这项研究中测试的结果表明,非平面和亲水性SOC吸附2-苯基苯酚的NOM竞争要比平面和疏水性SOC菲吸附更激烈。在表面化学方面,随着SWNTs疏水性的增加,对SOC的吸附亲和力和NOM对SOC吸附的影响均增强。

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