首页> 美国卫生研究院文献>Molecules >Phosphoric Acid Activated Carbon from Melia azedarach Waste Sawdust for Adsorptive Removal of Reactive Orange 16: Equilibrium Modelling and Thermodynamic Analysis
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Phosphoric Acid Activated Carbon from Melia azedarach Waste Sawdust for Adsorptive Removal of Reactive Orange 16: Equilibrium Modelling and Thermodynamic Analysis

机译:来自Melia Azedarach的磷酸活性炭废弃物锯齿用于吸附反应性橙16:平衡建模和热力学分析

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摘要

Waste wood biomass as precursor for manufacturing activated carbon (AC) can provide a solution to ever increasing global water quality concerns. In our current work, Melia azedarach derived phosphoric acid-treated AC (MA-AC400) was manufactured at a laboratory scale. This novel MA-AC400 was tested for RO16 dye removal performance as a function of contact time, adsorbent dosage, pH, temperature and initial dye concentration in a batch scale arrangement. MA-AC400 was characterized via scanning electron microscopy, energy dispersive X-ray spectroscopy, Fourier transform infrared spectroscopy, dynamic light scattering (DLS) and fluorescence spectroscopy. MA-AC400 is characterized as mesoporous with BET surface area of 293.13 m2 g−1 and average pore width of 20.33 Å. pHPZC and Boehm titration confirm the acidic surface charges with dominance of phenolic functional groups. The average DLS particle size of MA-AC400 was found in the narrow range of 0.12 to 0.30 µm and this polydispersity was confirmed with multiple excitation fluorescence wavelengths. MA-AC400 showed equilibrium adsorption efficiency of 97.8% for RO16 dye at its initial concentration of 30 mg L−1 and adsorbent dose of 1 g L−1. Thermodynamic study endorsed the spontaneous, favorable, irreversible and exothermic process for RO16 adsorption onto MA-AC400. Equilibrium adsorption data was better explained by Langmuir with high goodness of fit (R2, 0.9964) and this fitness was endorsed with lower error functions. The kinetics data was found well fitted to pseudo-second order (PSO), and intra-particle diffusion kinetic models. Increasing diffusion constant values confirm the intraparticle diffusion at higher RO16 initial concentration and reverse was true for PSO chemisorption kinetics. MA-AC400 exhibited low desorption with studied eluents and its cost was calculated to be $8.36/kg.
机译:废木生物质作为制造活性炭(AC)的前体可以提供促进全球水质的求和。在我们当前的工作中,MeliaAzedarach衍生的磷酸处理的AC(MA-AC400)以实验室制造。该新型MA-AC400用于批量排列的接触时间,吸附剂剂量,pH,温度和初始染料浓度的函数。通过扫描电子显微镜,能量分散X射线光谱,傅里叶变换红外光谱,动态光散射(DLS)和荧光光谱,表征MA-AC400。 MA-AC400的表征在于BET表面积为293.13m 2 G-1和平均孔宽度为20.33。 PHPZC和BOEHM滴定证实了具有酚醛官能团的优势的酸性表面电荷。在0.12至0.30μm的窄范围内发现MA-AC400的平均DLS粒径,并且通过多个激发荧光波长确认该多分散性。 MA-AC400在其初始浓度为30mg L-1的初始浓度和1g L-1的吸附剂量下显示出97.8%的平衡吸附效率为97.8%。热力学研究应对RO16吸附到MA-AC400上的自发性,有利,不可逆和放热过程。 Langmuir具有高良好的配合(R2,0.9964)更好地解释了平衡吸附数据(R2,0.9964),并且这种适应度以较低的误差函数求解。发现动力学数据适用于伪二阶(PSO)和粒子内扩散动力学模型。增加扩散恒定值确认在较高的RO16初始浓度下的粒前扩散,并且PSO化学吸附动力学的反向是真实的。 MA-AC400与研究的洗脱液呈现出低解吸,其成本计算为8.36美元/千克。

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