School of Bio-Chemical Engineering and Technology, Sirindhorn International Institute of Technology, Thammasat University, Pathum Thani, 12120, Thailand.
Sustainable Energy and Resources Engineering, Faculty of Engineering, Kasetsart University, Bangkok, 10900, Thailand.
Sci Rep. 2023 Sep 15;13(1):15311. doi: 10.1038/s41598-023-42188-w.
Cigarette smoke contains many chemicals, including nicotine, which is harmful and can cause health problems such as carcinogenesis disease, cardiovascular, respiratory, renal, and reproductive systems. Removal of nicotine from mainstream smoke can be done through adsorption with filters or solid adsorbents. In this study, we explored the use of activated carbons for the removal of nicotine from cigarette mainstream smoke. Activated carbons were prepared from dried hemp (Cannabis sativa) stem at an activation temperature of 350-550 °C using phosphoric acid as an activating agent. The results showed that the activated carbons with variable surface functional groups and porosity exhibited high efficiency for nicotine adsorption, removing 68-88% of nicotine from cigarette mainstream smoke. Through X-ray photoelectron spectroscopy and temperature-programmed desorption analyses, we identified that oxygen-containing functional groups, particularly carboxylic groups, exhibited a superior ability to adsorb nicotine. The computational analysis with DFT simulations further supported the importance of oxygen-containing surface functional groups in facilitating nicotine adsorption, with the carboxylic group providing the lowest adsorption energy among other functional groups.
香烟烟雾中含有许多化学物质,包括尼古丁,它是有害的,会导致致癌疾病、心血管、呼吸、肾脏和生殖系统等健康问题。通过过滤器或固体吸附剂吸附可以去除主流烟雾中的尼古丁。在这项研究中,我们探索了使用活性炭从香烟主流烟雾中去除尼古丁。活性炭是由经过干燥的大麻(Cannabis sativa)茎在 350-550°C 的活化温度下用磷酸作为活化剂制备的。结果表明,具有可变表面官能团和孔隙率的活性炭对尼古丁吸附具有高效性,可从香烟主流烟雾中去除 68-88%的尼古丁。通过 X 射线光电子能谱和程序升温脱附分析,我们确定含氧官能团,特别是羧基,对吸附尼古丁具有优异的能力。用 DFT 模拟进行的计算分析进一步支持了含氧表面官能团在促进尼古丁吸附方面的重要性,其中羧基是其他官能团中提供最低吸附能的基团。