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Simultaneous removal of polycyclic aromatic hydrocarbons and heavy metals from water using granular activated carbon

机译:使用粒状活性炭同时去除水中的多环芳烃和重金属

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Polycyclic aromatic hydrocarbons (PAHs) and heavy metals are dangerous pollutants that commonly co-occur in water. An adsorption study conducted on the simultaneous removal of PAHs (acenaphthylene, phenanthrene) and heavy metals (Cd, Cu, Zn) by granular activated carbon (GAC) showed that, when these pollutants are present together, their adsorption was less than when they were present individually. The adsorptive removal percentage of PAHs (initial concentration 1 mg/L) was much higher than that of heavy metals (initial concentration (20 mg/L). The reduction in adsorption of PAHs by heavy metals followed the heavy metals' adsorption capacity and reduction in the negative zeta potential of GAC order (Cu Zn Cd). In contrast, PAHs had little effect on the zeta potential of GAC. The Langmuir adsorption capacities of acenaphthylene (0.31-2.63 mg/g) and phenanthrene (0.74-7.36 mg/g) on GAC decreased with increased metals' concentration with the reduction following the order of the metals' adsorption capacity. The kinetic adsorption data fitted to Weber and Morris plots, indicating intra-particle diffusion of both PAHs and heavy metals into the mesopores and micropores in GAC with the diffusion rates. This depended on the type of PAH and metal and whether the pollutants were present alone or together. (C) 2019 Elsevier Ltd. All rights reserved.
机译:多环芳烃(PAH)和重金属是常见于水中的危险污染物。通过颗粒活性炭(GAC)同时去除多环芳烃(,、菲)和重金属(Cd,Cu,Zn)的吸附研究表明,当这些污染物同时存在时,其吸附量要小于它​​们的吸附量。单独呈现。初始浓度为1 mg / L的PAHs的吸附去除率远高于初始浓度为20 mg / L的重金属,重金属对PAHs的吸附减少是随着重金属的吸附能力的降低而降低。 PAHs对GAC的Zeta电位影响很小,而对苯二酚(0.31-2.63 mg / g)和菲(0.74-7.36)的Langmuir吸附能力对GAC的zeta电位影响很小。随着金属浓度的增加,GAC上的mg / g随金属浓度的增加而降低,其动态吸附数据符合Weber和Morris图,表明PAHs和重金属均在颗粒内扩散到中孔中(C)2019 Elsevier Ltd.保留所有权利。取决于PAH和金属的类型以及污染物是单独存在还是一起存在。

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