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首页> 外文期刊>Journal of Molecular Liquids >Preparation and characterization of sulphonated bio-adsorbent from waste hawthorn kernel for dye (MB) removal
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Preparation and characterization of sulphonated bio-adsorbent from waste hawthorn kernel for dye (MB) removal

机译:废山楂籽油染料中磺化生物吸附剂的制备与表征去除染料(MB)

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摘要

In this study, hawthorn kernel (HK), obtained from agricultural waste, which is eco-friendly and low cost material was selected as bio-adsorbent to remove of methylene blue (MB) from aqueous solutions. Since hawthorn kernel has low adsorption capacity, a new hawthorn-based bio-adsorbent having sulphonic acid groups (SHK) was prepared by activation using sulfuric acid with a very simple method. The optimal activation conditions were determined as 6 h, 85 degrees C, in 18 M sulfuric acid, with a sample/acid ratio of 1/5 (mass/volume). To determine the basic properties such as chemical structure, porosity and surface properties of the HK and SHK, they were characterized by Boehm Titration, BET, FTIR, SEM-EDX, XRD and pHpzc methods. Also, the thermal behavior of both adsorbents was examined by TGA. It was observed that activation has improved the thermal stability and also caused more amorphous structure. Optimum adsorption conditions were determined considering the amount of adsorbent, solution pH, MB initial concentration, and contact time and temperature parameters. Activation significantly changed the surface properties of the HK such as total acidity, functionality, porosity and surface pH. For MB adsorption on both adsorbents, pseudo-second-order kinetic model was found to be appropriate to explain kinetic behavior and equilibrium data fitted better to the Langmuir isotherm model. The maximum MB adsorption capacities of HK and SHK were calculated as 49.5 and 151.5 mg/g, respectively. It was determined from the calculated thermodynamic parameters that the adsorption of MB onto HK is spontaneous at low concentrations and high temperatures, but the adsorption of MB onto SHK is spontaneous at both high concentrations and low temperatures. After reusability studies which were carried out with 100 mg/L MB for five times, the SHK lost about 1% of its removal efficiency. As a result it was observed that SHK could be used as an efficient adsorbent for MB removal from aqueo
机译:在本研究中,从农业废物中获得的山楂核(HK)被选为生态友好且低成本的材料,以从水溶液中除去亚甲基蓝(MB)。由于Hawthorn Kernel吸附容量较低,因此通过使用硫酸活化制备具有磺酸基团(SHK)的新的基于山楂的生物吸附剂,具有非常简单的方法。最佳活化条件在18M硫酸中确定为6小时,85℃,样品/酸比为1/5(质量/体积)。为了确定HK和SHK的化学结构,孔隙率和表面性质等基本性质,其特征在于BOEHM滴定,BET,FTIR,SEM EDX,XRD和PHPZC方法。此外,通过TGA检查两种吸附剂的热行为。观察到,活化改善了热稳定性并且也引起了更多的无定形结构。考虑吸附剂,溶液pH,MB初始浓度和接触时间和温度参数的量测定最佳吸附条件。活化显着改变了HK的表面性质,例如总酸度,官能度,孔隙率和表面pH。对于对吸附剂的MB吸附,发现伪二阶动力学模型是适当的,以解释适合于Langmuir等温模型更好地拟合的动力学行为和平衡数据。 HK和SHK的最大MB吸附容量分别计算为49.5和151.5mg / g。从计算出的热力学参数确定,将Mb的吸附在HK上的低浓度和高温下是自发的,但是Mb在SHK上的吸附在高浓度和低温下是自发的。在用100mg / L MB进行的可重复使用性研究五次进行后,SHK损失其去除效率的约1%。结果,观察到SHK可以用作从ACO中的MB的高效吸附剂

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