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Insight into the enhancement effect of amino functionalized carbon nanotubes on the H2S removal performance of nanofluid system

JOURNAL OF HAZARDOUS MATERIALS [2023]
Mengzhao Li, Liping Ren, Zheng Gu, Penghao Gao, Wenbo Sun, Xiaole Dong, Futang Liu, Bingquan Wang, Zijian Zhang, Xinpeng Liu, Peiling Gao
ABSTRACT

By constructing nanofluid system, trace functionalized nanoparticles can significantly enhance the absorption performance of basic liquid. In this work, amino functionalized carbon nanotubes (ACNTs) and carbon nanotubes (CNTs) were introduced into alkaline deep eutectic solvents to build nanofluid systems and used for the dynamic absorption of H 2 S. The experiment results showed that the introduction of nanoparticles can significantly enhance the H 2 S removal performance of original liquid. When performing H 2 S removal experiments, the optimal mass concentrations of ACNTs versus CNTs were 0.05 % and 0.01 %, respectively. The characterization showed that the surface morphology and structure of the nanoparticles unchanged significantly during the absorption-regeneration process. A double mixed gradientless gas-liquid reactor was used to explore the gas-liquid absorption kinetics characteristics of the nanofluid system. It was found that the gas-liquid mass transfer rate increased significantly after the addition of nanoparticles. The highest total mass transfer coefficient of the nanofluid system of ACNTs was increased to more than 400 % of the value before the addition of nanoparticles. The analysis showed that the shuttle effect and hydrodynamic effect of nanoparticles play important role in the process of enhancing gas-liquid absorption, and the amino functionalization enhanced the shuttle effect of nanoparticles significantly.

MATERIALS

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