High-strength and anti-biofouling nanofiber membranes for enhanced uranium recovery from seawater and wastewater

生物污染 吸附 海水 纳米纤维 结垢 材料科学 化学工程 纤维 萃取(化学) 化学 复合材料 色谱法 冶金 有机化学 地质学 生物化学 海洋学 工程类
作者
Se Shi,Rui Wu,Shenli Meng,Guoping Xiao,Chunxin Ma,Guocheng Yang,Ning Wang
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:436: 128983-128983 被引量:27
标识
DOI:10.1016/j.jhazmat.2022.128983
摘要

Ultrathin fibers can increase the contact area between adsorbents and seawater during the uranium extraction process; however, their construction usually aggravates the complex spinning technology and lowers their mechanical strength. Meanwhile, high strength and antifouling ability are essential for ocean adsorbents to withstand the complex natural environment and microbial systems. Herein, we design high-strength and anti-biofouling poly(amidoxime) nanofiber membranes (HA-PAO NFMs) via a supramolecular crosslinking. Bacterial cellulose supplies the NFMs with ultrathin fiber structure, and large amounts of adsorption ligands are immobilized on the framework via the crosslinking with antibacterial ions. Thus, different from other fibers, HA-PAO NFMs achieve ultrathin diameter (20-30 nm), high BET area (51 m2 g-1), and excellent mechanical strength (13.6 MPa). The uranium adsorption capacity reaches to 409 mg-U/g-Ads in the simulated seawater, 99.2% uranium can be removed from the U-contained wastewater, and the adsorption process can be observed by the naked eye due to the significant color changes. The inhibition zones indicate their excellent anti-biofouling ability, which contributes to 1.83 times more uranium extraction amount from natural seawater than the non-antifouling adsorbents. Furthermore, they display a long service life and can be large-scale prepared, and the HA-PAO NFMs have potential in the massive uranium recovery.
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