Ying Huijuan, Zeng Ganning, He Yaohong, Hou Yanjun, Ai Ning
College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.
College of Environment, Zhejiang University of Technology, Hangzhou 310014, China.
Molecules. 2023 Aug 25;28(17):6242. doi: 10.3390/molecules28176242.
Porous-activated carbons have drawn great attention due to their important role in CO capture. Ni(NO)/KOH, as co-catalysts under different temperatures, were studied to obtain porous graphitized carbon from feedstock. The results indicated that the properties of the porous graphitized carbon generated at 850 °C were greatly enhanced, showing a large specific surface area of 1486.38 cm·g with narrowly distributed micropores (~0.67 nm) and abundant functional groups, which endowed high CO uptake; moreover, the high CO uptake was mainly attributed to the synergistic effect of Ni(NO) and KOH, both in chemical modification and pore formation. The fitted values of the four kinetic models showed that the double exponential model provided the best description of carbon adsorption, indicating both physical and chemical adsorption. It is worth noting that carbon could be reused four times in the adsorption/desorption procedure in this research with good stability. This work focuses on the high-value-added comprehensive utilization of macroalgae, which not only is important for high-performance adsorbent preparation but also has positive benefits for the development and utilization of macroalgae resources.
多孔活性炭因其在二氧化碳捕集中的重要作用而备受关注。研究了在不同温度下作为共催化剂的硝酸镍/氢氧化钾,以从原料中获得多孔石墨化碳。结果表明,在850℃下生成的多孔石墨化碳的性能得到了极大提高,具有1486.38 cm²·g的大比表面积,微孔分布狭窄(约0.67 nm)且官能团丰富,赋予了高的二氧化碳吸附量;此外,高二氧化碳吸附量主要归因于硝酸镍和氢氧化钾在化学改性和孔形成方面的协同作用。四种动力学模型的拟合值表明,双指数模型对碳吸附的描述最佳,表明存在物理吸附和化学吸附。值得注意的是,在本研究中,碳在吸附/解吸过程中可重复使用四次,稳定性良好。这项工作聚焦于大型海藻的高附加值综合利用,这不仅对高性能吸附剂的制备很重要,而且对大型海藻资源的开发利用也有积极意义。