High-Yield Production of Lignin-Derived Functional Carbon Nanosheet for Dye Adsorption

In this article, we report the preparation of lignin-derived carbon nanosheet (L-CNS) by direct thermal treatment of lignin without activation operation and the functions of the L-CNS as an adsorbent for rhodamine dye. The L-CNSs are fabricated by freeze-drying (FD) methods of lignin followed by hig...

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Veröffentlicht in:Polymers 2020-04, Vol.12 (4), p.797
Hauptverfasser: Chen, Fenggui, Hu, Xi, Tu, Xiaohan, Chen, Linfei, Liu, Xi, Tan, Linli, Mao, Yulin, Shi, Jianwei, Teng, Xiaoxu, He, Shuhua, Qin, Zonghui, Xu, Jianhua, Wu, Jian
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Sprache:eng
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Zusammenfassung:In this article, we report the preparation of lignin-derived carbon nanosheet (L-CNS) by direct thermal treatment of lignin without activation operation and the functions of the L-CNS as an adsorbent for rhodamine dye. The L-CNSs are fabricated by freeze-drying (FD) methods of lignin followed by high-temperature carbonization. It is found that lower frozen temperature in FD or lower concentration of lignin aqueous solution renders L-CNSs' more porous morphology and higher specific surface area (SSA), allowing a promising application of the L-CNSs as an efficient adsorbent for organic pollutants. In particular, the alkaline hydroxide catalyst helps to increase the SSA of carbon products, leading to a further improved adsorption capacity. On the other hand, p-toluenesulfonic acid (TsOH) catalyzed pyrolysis, which dramatically increased the L-CNS product yield, and provided a high-yield approach for the production of pollutant absorbent.
ISSN:2073-4360
2073-4360
DOI:10.3390/polym12040797