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Sorption of polycyclic aromatic hydrocarbons from aqueous solution by hexadecyltrimethylammonium bromide modified fibric peat

机译:十六烷基三甲基溴化铵改性纤维泥炭从水溶液中吸附多环芳烃

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摘要

BACKGROUND: Fibric peat was modified by hexadecyltrimethylammonium bromide (HTAB) to improve its performance in sorption of polycyclic aromatic hydrocarbons (PAHs). The raw fibric peat (P-R) and surfactant modified peat (P-HTAB) were characterized by capillary rise test to determine the effect of HTAB on surface hydrophobicity. Effect of contact time was also investigated. Batch sorption data were fitted to the Freundlichmodel and pseudo-second-order model for isotherm and kinetics study. RESULTS: P-HTAB had a more hydrophobic surface than P-R. Aftermodification, the sorption coefficients (K_(OC)) of naphthalene, phenanthrene and pyrene on fibric peat increased from 1590, 29661 and 204171 mL g~(-1) to 2006, 52410 and 358569 mL g~(-1), respectively; the sorption rate constants of naphthalene, phenanthrene and pyrene increased from 0.00057, 0.00036 and 0.00051 g μg~(-1) min ~(-1) to 0.00062, 0.00140 and 0.00155 g μg~(-1) min ~(-1), respectively. The sorption coefficients of PAHs were positively correlated with the octane-water partition coefficients of PAHs. CONCLUSIONS: The hydrophobicity of fibric peat was enhanced throughmodification by HTAB,which resulted in the improved sorption rate and sorption capacity for PAHs. The sorption performance of P-HTAB reveals that it is an effective biosorbent for PAHs and has potential for treatment of wastewater containing hydrophobic organic contaminants.
机译:背景:十六碳三甲基溴化铵(HTAB)对纤维泥炭进行了改性,以提高其吸附多环芳烃(PAHs)的性能。通过毛细管上升试验对生纤维泥炭(P-R)和表面活性剂改性泥炭(P-HTAB)进行表征,以确定HTAB对表面疏水性的影响。还研究了接触时间的影响。将批吸附数据拟合到Freundlich模型和伪二级模型进行等温线和动力学研究。结果:P-HTAB具有比P-R更疏水的表面。改性后,萘,菲和pyr在纤维泥炭上的吸附系数(K_(OC))从1590、29661和204171 mL g〜(-1)分别增加到2006、52410和358569 mL g〜(-1);萘,菲和pyr的吸附速率常数从0.00057、0.00036和0.00051 gμg〜(-1)min〜(-1)增加到0.00062、0.00140和0.00155 gμg〜(-1)min〜(-1),分别。多环芳烃的吸附系数与多环芳烃的辛烷水分配系数呈正相关。结论:HTAB改性可增强纤维泥炭的疏水性,从而提高了对PAHs的吸附速率和吸附能力。 P-HTAB的吸附性能表明,它是PAHs的有效生物吸附剂,具有处理含有疏水性有机污染物的废水的潜力。

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