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Effect of natural organic matter on powdered activated carbon adsorption of trace contaminants: characteristics and mechanism of competitive adsorption

机译:天然有机物对粉末状活性炭吸附痕量污染物的影响:竞争性吸附的特征和机理

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Batch adsorption experiments using powdered activated carbon (PAC) to remove trace synthetic organic chemicals (SOCs) from water containing natural organic matter (NOM) were conducted. The percentage of SOC removed at any contact time and at any PAC dose was observed to be independent of the initial SOC concentration. Equations derived from the ideal adsorbed solution theory and the pore surface diffusion model validated this observation. For the strongly adsorbing SOCs (simazine and simetryn), the percentage of SOC removed was independent only at low initial SOC concentrations. The NOM fraction competing with the weakly adsorbing SOC (asulam) constituted a larger percentage of the total NOM than that competing with the strongly adsorbing SOCs. Although the adsorptive capacities of the SOCs were greatly reduced in water containing NOM compared with those in pure water, the change in the pore diffusion coefficient was insignificant. Therefore, NOM competed with the SOCs for adsorption sites, reducing the adsorptive capacity, but the amount of NOM loading was not so severe that it blocked or filled the pores, hindering the internal diffusion of the SOCs.
机译:使用粉末状活性炭(PAC)进行批量吸附实验,以从含有天然有机物(NOM)的水中去除痕量合成有机化学物质(SOCs)。观察到在任何接触时间和任何PAC剂量下去除的SOC的百分比均与初始SOC浓度无关。从理想吸附溶液理论和孔隙表面扩散模型得出的方程式验证了这一观察结果。对于强吸附的SOC(辛嗪和simetryn),仅在低初始SOC浓度下,去除的SOC百分比是独立的。与弱吸附SOC(asulam)竞争的NOM分数占总NOM的百分比大于与强吸附SOC竞争的NOM分数。尽管与纯水中相比,含NOM的水中SOC的吸附能力大大降低,但孔扩散系数的变化并不明显。因此,NOM与SOC竞争吸附位点,降低了吸附能力,但是NOM的负载量并不严重,以至于不会阻塞或填充孔,从而阻碍了SOC的内部扩散。

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