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氧化铈纳米颗粒功能化木质素作为高效去除磷酸盐的纳米生物吸附剂。

Cerium oxide nanoparticle functionalized lignin as a nano-biosorbent for efficient phosphate removal.

作者信息

Liu Xiaohuan, He Xia, Zhang Jiantao, Yang Jiayao, Xiang Xiaofei, Ma Zhongqing, Liu Lina, Zong Enmin

机构信息

Department of Environmental Science, Zhejiang University 388 Yuhangtong Road Hangzhou 310058 PR China.

Department of Materials, Zhejiang A & F University 666 Wusu Street Hangzhou 311300 PR China.

出版信息

RSC Adv. 2020 Jan 8;10(3):1249-1260. doi: 10.1039/c9ra09986g. eCollection 2020 Jan 7.

Abstract

Removing excess phosphorus is a highly effective method to prevent eutrophication in contaminated water. However, the design and preparation of an efficient biosorbent for phosphate capture is still a great challenge. We fabricated a novel, and inexpensive nano-biosorbent, L-NH@Ce, by loading cerium oxide nanoparticles (nano-CeO) within the aminated lignin using a facile precipitation approach for efficient phosphate removal. The as-designed nano-biosorbent L-NH@Ce exhibited a BET surface area ( ) of 89.8 m g, 3 times that of lignin, and a pore volume ( ) of 0.23 cm g. Owing to these results, the adsorption capacity of L-NH@Ce increased by 14-fold to 27.86 mg g compared with lignin (1.92 mg g). Moreover, the L-NH@Ce can quickly reduce a high phosphate concentration of 10 ppm to well below the discharge standard of 0.5 ppm recommended by the World Health Organization (WHO) for drinking water. Importantly, a study of leaching tests indicated the negligible risk of Ce ion leakage during phosphate adsorption over the wide pH range of 4-9. Moreover, L-NH@Ce exhibits good reusability and retains 90% of removal efficiency after two adsorption-desorption cycles. The environmentally benignity of the raw material, the simple preparation process, and the high stability and reusability makes L-NH@Ce a promising nano-biosorbent for phosphate removal.

摘要

去除过量磷是防止受污染水体富营养化的一种高效方法。然而,设计和制备一种高效的用于捕获磷酸盐的生物吸附剂仍然是一个巨大的挑战。我们通过一种简便的沉淀方法,将氧化铈纳米颗粒(纳米CeO)负载到胺化木质素中,制备了一种新型且廉价的纳米生物吸附剂L-NH@Ce,用于高效去除磷酸盐。所设计的纳米生物吸附剂L-NH@Ce的比表面积( )为89.8 m²/g,是木质素的3倍,孔体积( )为0.23 cm³/g。基于这些结果,与木质素(1.92 mg/g)相比,L-NH@Ce的吸附容量提高了14倍,达到27.86 mg/g。此外,L-NH@Ce能够迅速将10 ppm的高磷酸盐浓度降低至远低于世界卫生组织(WHO)推荐的饮用水排放标准0.5 ppm。重要的是,浸出试验研究表明,在4-9的宽pH范围内,磷酸盐吸附过程中Ce离子泄漏的风险可忽略不计。此外,L-NH@Ce表现出良好的可重复使用性,经过两次吸附-解吸循环后仍保留90%的去除效率。原材料的环境友好性、简单的制备工艺以及高稳定性和可重复使用性使得L-NH@Ce成为一种有前景的用于去除磷酸盐的纳米生物吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a25/9047110/b385073b2e95/c9ra09986g-f1.jpg

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