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生物聚合物与纳米粘土相遇:从绿色前体合理制备用于高效捕获铅(II)和染料的优质吸附珠。

Biopolymer Meets Nanoclay: Rational Fabrication of Superb Adsorption Beads from Green Precursors for Efficient Capture of Pb(II) and Dyes.

作者信息

Qi Jie, Wang Xue, Zhang Huan, Liu Xiangyu, Wang Wenbo, He Qingdong, Guo Fang

机构信息

College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, China.

出版信息

Nanomaterials (Basel). 2024 Apr 26;14(9):766. doi: 10.3390/nano14090766.

Abstract

Renewable, green, and safe natural biopolymer-derived materials are highly desired for the purification of pollutants, but significantly improving their performance without the introduction of additional harmful chemicals remains a huge challenge. Based on the concept of "structure optimization design", environment-friendly composite beads (named SA/PASP/RE) with excellent adsorption performance and recyclability were rationally constructed through a green ionic crosslinking route, using the completely green biopolymer sodium alginate (SA), sodium salt of polyaspartic acid (PASP), and the natural nanoclay rectorite (RE) as starting materials. The nano-layered RE was embedded in the polymer matrix to prevent the polymer chain from becoming over-entangled so that more adsorption sites inside the polymer network were exposed, which effectively improved the mass transfer efficiency of the adsorbent and the removal rate of contaminants. The composite beads embedded with 0.6% RE showed high adsorption capacities of 211.78, 197.13, and 195.69 mg/g for Pb(II) and 643.00, 577.80, and 567.10 mg/g for methylene blue (MB) in Yellow River water, Yangtze River water, and tap water, respectively. And the beads embedded with 43% RE could efficiently adsorb Pb(II) and MB with high capacities of 187.78 mg/g and 586.46 mg/g, respectively. This study provides a new route to design and develop a green, cost-effective, and efficient adsorbent for the decontamination of wastewater.

摘要

可再生、绿色且安全的天然生物聚合物衍生材料在污染物净化方面备受青睐,但在不引入额外有害化学物质的情况下显著提高其性能仍是一项巨大挑战。基于“结构优化设计”理念,以完全绿色的生物聚合物海藻酸钠(SA)、聚天冬氨酸钠盐(PASP)和天然纳米黏土累托石(RE)为原料,通过绿色离子交联途径合理构建了具有优异吸附性能和可回收性的环境友好型复合珠(命名为SA/PASP/RE)。纳米层状的RE嵌入聚合物基体中,防止聚合物链过度缠结,从而使聚合物网络内部更多的吸附位点得以暴露,有效提高了吸附剂的传质效率和污染物去除率。嵌入0.6% RE的复合珠对黄河水、长江水和自来水中的Pb(II)的吸附容量分别高达211.78、197.13和195.69 mg/g,对亚甲基蓝(MB)的吸附容量分别为643.00、577.80和567.10 mg/g。嵌入43% RE的珠子能够分别以187.78 mg/g和586.46 mg/g的高容量高效吸附Pb(II)和MB。本研究为设计和开发用于废水净化的绿色、经济高效的吸附剂提供了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deca/11085593/f43645d0d8ce/nanomaterials-14-00766-sch001.jpg

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