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将铁纳米颗粒包封于海藻酸钙珠粒中用于地下水修复应用。

Entrapment of iron nanoparticles in calcium alginate beads for groundwater remediation applications.

作者信息

Bezbaruah Achintya N, Krajangpan Sita, Chisholm Bret J, Khan Eakalak, Bermudez Juan J Elorza

机构信息

Civil Engineering Department, North Dakota State University, Dept 2470, P.O. Box 6050, Fargo, ND 58108, USA.

出版信息

J Hazard Mater. 2009 Jul 30;166(2-3):1339-43. doi: 10.1016/j.jhazmat.2008.12.054. Epub 2008 Dec 14.

Abstract

Zero-valent iron nanoparticles (nZVI) have been successfully entrapped in biopolymer, calcium (Ca)-alginate beads. The study has demonstrated the potential use of this technique in environmental remediation using nitrate as a model contaminant. Ca-alginate beads show promise as an entrapment medium for nZVI for possible use in groundwater remediation. Based on scanning electron microscopy images it can be inferred that the alginate gel cluster acts as a bridge that binds the nZVI particles together. Kinetic experiments with 100, 60, and 20mg NO(3)(-)-NL(-1) indicate that 50-73% nitrate-N removal was achieved with entrapped nZVI as compared to 55-73% with bare nZVI over a 2-h period. The controls ran simultaneously show little NO(3)(-)-N removal. Statistical analysis indicates that there was no significant difference between the reaction rates of bare and entrapped nZVI. The authors have shown for the first time that nZVI can be effectively entrapped in Ca-alginate beads and no significant decrease in the reactivity of nZVI toward the model contaminant (nitrate here) was observed after the entrapment.

摘要

零价铁纳米颗粒(nZVI)已成功包裹于生物聚合物——海藻酸钙珠粒中。该研究证明了这项技术在以硝酸盐作为模型污染物的环境修复中的潜在用途。海藻酸钙珠粒有望作为nZVI的包裹介质用于地下水修复。基于扫描电子显微镜图像可以推断,海藻酸凝胶簇起到了将nZVI颗粒结合在一起的桥梁作用。对100、60和20mg NO(3)(-)-N L(-1)进行的动力学实验表明,在2小时内,包裹nZVI对硝酸盐氮的去除率为50 - 73%,而裸露nZVI的去除率为55 - 73%。同时进行的对照实验显示几乎没有硝酸盐氮的去除。统计分析表明,裸露nZVI和包裹nZVI的反应速率之间没有显著差异。作者首次表明,nZVI能够有效地包裹于海藻酸钙珠粒中,并且在包裹后未观察到nZVI对模型污染物(此处为硝酸盐)的反应活性有显著降低。

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