School of Engineering, Zhejiang A & F University, No. 666 Wusu Street, Lin'an District, Hangzhou 311300, PR China.
School of Environmental and Resource Sciences, Zhejiang A & F University, No. 666 Wusu Street, Lin'an District, Hangzhou 311300, PR China.
Int J Biol Macromol. 2021 Nov 1;190:170-177. doi: 10.1016/j.ijbiomac.2021.08.186. Epub 2021 Aug 31.
Designing an environmentally benign bio-adsorbent for the removal of heavy metal ions from aqueous medium was a sustainable strategy to ensure water safety. Herein, three-dimensional macroscopic aminosilyated nanocellulose aerogels (APTM-modified TO-NFC) for the removal of heavy metal ions in water were successfully synthesized from bamboo-derived TEMPO-oxidized nanofibrillated cellulose (TO-NFC) and aminopropyltrimethoxysilane (APTMs) via a facile freeze-drying process. Owing to a relatively high BET surface area (129.32 m g), high porosity (99.14%) as well as high substitution degree of amino groups (0.41), the resulting APTM-modified TO-NFC aerogel exhibited good adsorption capacity of 99.0, 124.5, and 242.1 mg g for Cu, Cd and Hg, respectively. Furthermore, the crosslinked and three-dimensionally porous architecture imparted it with relatively high compression strength, good excellent stability in water, and ease of recyclability from water after the usage. The pH value of the solution had a great influence on adsorption efficiency of the aerogel adsorbent, and optimal adsorption efficiency could be achieved at pH 3-7. Thermodynamic parameters suggested the spontaneous and endothermic nature of adsorption process. This work provides a facile method for preparing sustainable bio-adsorbent for effective heavy metal ions removal from aqueous medium.
设计一种环境友好型生物吸附剂,用于从水介质中去除重金属离子,是确保水安全的一种可持续策略。本文采用简单的冷冻干燥法,以竹材衍生的 TEMPO 氧化纳米原纤纤维素(TO-NFC)和氨丙基三甲氧基硅烷(APTMs)为原料,成功合成了用于水中重金属离子去除的三维宏观氨基化纳米纤维素气凝胶(APTM-改性 TO-NFC)。由于具有较高的 BET 比表面积(129.32 m g)、较高的孔隙率(99.14%)和较高的氨基取代度(0.41),所得 APTM-改性 TO-NFC 气凝胶对 Cu、Cd 和 Hg 的吸附量分别达到 99.0、124.5 和 242.1 mg g。此外,交联的三维多孔结构赋予其较高的压缩强度、在水中的优异稳定性以及在使用后的水中易于回收利用的能力。溶液的 pH 值对气凝胶吸附剂的吸附效率有很大影响,在 pH 3-7 时可达到最佳吸附效率。热力学参数表明吸附过程是自发的和吸热的。这项工作为从水介质中有效去除重金属离子提供了一种简便的方法,用于制备可持续的生物吸附剂。