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Adsorption of dibutyl phthalate in aqueous solution by mesoporous calcium silicate grafted non-woven polypropylene

机译:介孔硅酸钙接枝非织造聚丙烯对邻苯二甲酸二丁酯在水溶液中的吸附

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The purpose of this research is to synthesize mesoporous calcium silicate grafted non-woven polypropylene (PP-g-CaSiO3@SiO2) and to evaluate its adsorption performance for dibutyl phthalate (DBP). The results indicated that the adsorption capacity of PP-g-CaSiO3@SiO2 was superior to non-woven polypropylene fabric (PP) and CaSiO3 grafted PP non-woven (PP-g-CaSiO3). The adsorption mechanism of DBP by PP-g-CaSiO3@SiO2 at different pH values was investigated. When the initial concentration of DBP was. 130 mg/L (pH = 3.0, 298 K) the adsorption capacity of DBP by PPP-g-CaSiO3@SiO2 reached 54.8 mg/g, and the adsorption equilibrium time was two hours. The large surface area and Si-OH groups on PP-g-CaSiO3@SiO2 could improve the adsorption capacity and affinity for DBP. Isothermal titration calorimetry (ITC) was used to illustrate the driving force for the adsorption of DBP to CaSiO3@SiO2. The binding constant K, binding enthalpy (Delta H) and binding entropy (Delta S) between DBP and CaSiO3@SiO2 were obtained to be 3.54 x 10(3) L/mol, -66.2 kJ/mol and 0.154 ICK*mol), respectively. The Gibbs' energy change during the binding process was -20.24 kJ/mol, indicating that the adsorption process was thermodynamically favorable. Freundlich model was more suitable to describe the adsorption of DBP onto PP-g-CaSiO3@SiO2. Lower temperature and lower pH can promote the adsorption of DBP. PP-gCaSiO(3)@SiO2 can be recycled for reuse. It is promising to be used as a good adsorption material to remove DBP or other contaminants from aqueous solutions. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究的目的是合成介孔硅酸钙接枝非织造聚丙烯(PP-g-CaSiO3 @ SiO2)并评估其对邻苯二甲酸二丁酯(DBP)的吸附性能。结果表明,PP-g-CaSiO3 @ SiO2的吸附能力优于聚丙烯无纺布和接枝CaSiO3的PP-g-CaSiO3。研究了不同pH值下PP-g-CaSiO3 @ SiO2对DBP的吸附机理。当DBP的初始浓度为。在130 mg / L(pH = 3.0,298 K)下,PPP-g-CaSiO3 @ SiO2对DBP的吸附容量达到54.8 mg / g,吸附平衡时间为2小时。 PP-g-CaSiO3 @ SiO2上的大表面积和Si-OH基团可以提高对DBP的吸附能力和亲和力。等温滴定热法(ITC)用于说明DBP吸附在CaSiO3 @ SiO2上的驱动力。得到DBP和CaSiO3 @ SiO2之间的结合常数K,结合焓(Delta H)和结合熵(Delta S)为3.54 x 10(3)L / mol,-66.2 kJ / mol和0.154 ICK * mol),分别。结合过程中的吉布斯能量变化为-20.24 kJ / mol,表明吸附过程在热力学上是有利的。 Freundlich模型更适合描述DBP在PP-g-CaSiO3 @ SiO2上的吸附。较低的温度和较低的pH值可以促进DBP的吸附。 PP-gCaSiO(3)@ SiO2可以回收再利用。有望用作从水溶液中去除DBP或其他污染物的良好吸附材料。 (C)2016 Elsevier B.V.保留所有权利。

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