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Removal of the Endocrine Disrupting Chemicals Nonylphenol from Water by Activated carbon

机译:通过活性炭除去从水中破坏化学品壬基酚的内分泌

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Nonylphenol(NP) have endocrine disrupting effects and exist generally in drinking water source. Physical properties including surface area, average pore-diameter, and micro-pore volume and chemical structure of the activated carbon was characterized by N_2 adsorption experiment and X-ray photoelectron spectroscopy (XPS). Pore volume could be the most important for adsorption. The high O content of carbon surface lead a negative effect to absorption capacity and low pH value, low temperature lead a positive effect to adsorption. The effect of humus in water to the removal was also studied and EDCs-humus bi-component adsorption model was established, it was found that there is strong competition between EDCs and humus. Due to the competition adsorption capacity of NP greatly decreased especially when the concentration of NP is very low. The adsorption kinetics test results indicated that the adsorption of NP followed the first-order kinetics and the smaller diameter GAC could increase adsorption velocity.
机译:壬基酚(NP)具有内分泌破坏效果,并且通常存在于饮用水源中。包括表面积,平均孔径和微孔体积和活性炭的化学结构的物理性质的特征在于N_2吸附实验和X射线光电子谱(XPS)。孔隙量可能是吸附最重要的。碳表面的高含量含量对吸收能力和低pH值的负效应,低温引起阳性效果吸附。还研究了腐殖质对水中的去除的影响,并建立了EDCS-HUMUS双组分吸附模型,发现EDC和腐殖质之间存在强烈竞争。由于当NP的浓度非常低时,NP的竞争容量大大降低。吸附动力学测试结果表明,NP的吸附跟随一阶动力学和较小的直径GAC可以提高吸附速度。

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