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模拟烟气中溴化石油焦吸附单质汞的动力学机理

Kinetic mechanism on elemental mercury adsorption by brominated petroleum coke in simulated flue gas.

作者信息

Xiao Yi, Tian Li, Liu Xiuyun

机构信息

Shanghai Vocational College of Agriculture and Forestry 658 Zhongshan Road Shanghai 201699 P. R. China

School of Environmental Science and Engineering, Donghua University 2999 North Renmin Road Shanghai 201620 P. R. China.

出版信息

RSC Adv. 2022 Jun 1;12(26):16386-16395. doi: 10.1039/d2ra02318k.

Abstract

A waste byproduct of petroleum coke was obtained as a precursor modified with bromine for elemental mercury capture from simulated flue gas on a bench scale fixed-bed reactor. The reaction temperature, the initial inlet elemental mercury concentration and the individual flue gas components of O, NO, SO and HCl were determined to explore their influence on elemental mercury capture by the brominated petroleum coke. Results indicate that high initial inlet mercury concentration can enhance initial mercury accumulation and the optimal temperature for elemental mercury capture by brominated petroleum coke is about 150 °C. Kinetic models reveal that the pseudo-second order and Elovich models are best fitted to the mercury adsorption process, indicating that chemisorption is the control step with the intra-particle diffusion and external mass transfer taking place simultaneously. The kinetic parameters demonstrate that the initial mercury adsorption rate ( or ) and the equilibrium adsorption quantity ( ) increase remarkably, when higher concentrations of O or NO exist in N atmosphere. On the contrary, decreases with the presence of high SO or HCl, which indicates a two-sided effect on the performance of mercury adsorption owing to their concentrations.

摘要

以石油焦的一种废弃副产物为前驱体,用溴进行改性,在实验室规模的固定床反应器上从模拟烟气中捕集单质汞。测定了反应温度、初始入口单质汞浓度以及O、NO、SO和HCl等单一烟气成分,以探究它们对溴化石油焦捕集单质汞的影响。结果表明,较高的初始入口汞浓度可增强汞的初始积累,溴化石油焦捕集单质汞的最佳温度约为150℃。动力学模型表明,伪二级模型和埃洛维奇模型最适合汞吸附过程,表明化学吸附是控制步骤,同时存在颗粒内扩散和外部传质。动力学参数表明,在N气氛中存在较高浓度的O或NO时,初始汞吸附速率(或)和平衡吸附量()显著增加。相反,高浓度的SO或HCl会使其降低,这表明它们的浓度对汞吸附性能具有双面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bb7/9159097/fc0abed7480c/d2ra02318k-f1.jpg

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