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Dataset of the aqueous solution and petrochemical wastewater treatment containing ammonia using low cost and efficient bio-adsorbents

机译:使用低成本高效生物吸附剂处理含氨的水溶液和石化废水的数据集

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In this dataset, the removal of ammonia from synthetic and real wastewater was studied using theZiziphus spina-christiactivated carbon (ZSAC) and the biochar ofSargassum oligocystum(BSO). Several analyses such as FTIR, SEM, EDS, XRD, and BET were used to determine the physical and surface properties of the adsorbents. The BET analysis showed a high specific surface area of 112.5 and 45.8 m2/g for ZSAC and BSO, respectively. Also, the results indicated that the highest adsorption of ammonia from synthetic wastewater using ZSAC and BSO were obtained 97.9% and 96.2%, at contact time of 80 min, 25?°C, pH 8, and adsorbent dosage of 5 g/L. In addition, the adsorption results of real wastewater from Asaluyeh Pardis Petrochemical Company demonstrated that both adsorbents had the removal efficiency of approximately 90%, which indicates high adsorption efficiency using two adsorbents. Moreover, equilibrium studies showed that the adsorption process of ammonia from wastewater using both adsorbents follows the Freundlich model and the maximum adsorption capacity using the Langmuir isotherm were calculated to be 25.77 mg/g and 7.46 mg/g for ZSAC and BSO, respectively. Furthermore, the thermodynamic study showed that the adsorption process using the bio-adsorbents was spontaneous and exothermic.
机译:在该数据集中,研究了使用Ziziphus脊柱化学活性炭(ZSAC)和Sargassum oligocystum(BSO)的生物炭去除合成废水和实际废水中的氨。诸如FTIR,SEM,EDS,XRD和BET等几种分析方法可用来确定吸附剂的物理和表面性质。 BET分析显示ZSAC和BSO的比表面积分别为112.5和45.8 m2 / g。此外,结果表明,在接触时间为80分钟,25?C,pH为8且吸附剂量为5 g / L的情况下,使用ZSAC和BSO从合成废水中获得的氨的最高吸附率分别为97.9%和96.2%。此外,来自Asaluyeh Pardis石化公司的实际废水的吸附结果表明,两种吸附剂的去除率均约为90%,这表明使用两种吸附剂的吸附率很高。此外,平衡研究表明,两种吸附剂对废水中氨的吸附过程均遵循Freundlich模型,使用Langmuir等温线测得的ZSAC和BSO的最大吸附容量分别为25.77 mg / g和7.46 mg / g。此外,热力学研究表明,使用生物吸附剂的吸附过程是自发的且放热的。

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