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Treatment of pyridine-bearing wastewater by Nano Zero-valent iron supported on activated carbon derived from agricultural waste

机译:负载农业废料的活性炭负载纳米零价铁处理含吡啶废水

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摘要

Nano zero-valent iron particles (nZVI) supported on granular activated carbon (GAC) (nZVI/GAC) were synthesized and its feasibility was explored for the treatment of pyridine-bearing wastewater. nZVI/GAC was synthesized by the borohydride reduction method under ethanol atmosphere. The synthesized nZVI/GAC was characterized by scanning electron microscopy (SEM), X-ray diffraction, Fourier transform infrared spectroscopy, and N-2 adsorption-desorption study. Results indicated that the nZVI was well dispersed on the surface of GAC. The presence of support material apparently decreased the extent of aggregation and size of the nZVI and thus, facilitated in increasing the pyridine removal efficiency. Batch studies were carried out in order to evaluate the effect of operating parameters such as pH (2pH9), dose (m) (5m15g/l), initial concentration (C-o) (50C(o)1000mg/l), and temperature (T) (288T318K). At optimum condition, maximum removal of pyridine was found to be similar to 86% at m=15g/l, pH=6, C-o=100mg/l, and T=303K. The degradation kinetics has been investigated, and pseudo-first-order kinetic model was found to be suitable fit for the experimental data kinetic model. The apparent activation energy (E-a) of this process was found to be similar to 22.46 (kJ/mol). The nZVI/GAC showed stable performance for the degradation of pyridine-bearing wastewater until five consecutive cycles.
机译:合成了负载在颗粒活性炭(GAC)(nZVI / GAC)上的纳米零价铁颗粒(nZVI),并探索了其处理含吡啶废水的可行性。在乙醇气氛下,通过硼氢化物还原法合成了nZVI / GAC。通过扫描电子显微镜(SEM),X射线衍射,傅里叶变换红外光谱和N-2吸附-脱附研究对合成的nZVI / GAC进行了表征。结果表明,nZVI很好地分散在GAC的表面上。载体材料的存在明显降低了nZVI的聚集程度和尺寸,因此有助于提高吡啶去除效率。进行批处理研究以评估诸如pH(2pH9),剂量(m)(5m15g / l),初始浓度(Co)(50C(o)1000mg / l)和温度(T )(288T318K)。在最佳条件下,发现吡啶的最大去除率在m = 15g / l,pH = 6,Co = 100mg / l和T = 303K时类似于86%。研究了降解动力学,发现伪一阶动力学模型适合于实验数据动力学模型。发现该过程的表观活化能(E-a)类似于22.46(kJ / mol)。 nZVI / GAC对含吡啶废水的降解表现出稳定的性能,直至连续五个周期。

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