膨润土悬浮液在多孔介质中增强 K-nZVI 的迁移

IF 3.7 2区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING
He Wei, Yong He, Jun Jiang, Xiang-zhi Song, Wei Lou, Zhao Zhang, Ke-neng Zhang
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引用次数: 0

摘要

纳米零价铁(nZVI)具有高反应性和相对较低的成本,已成为污染场地原位修复的替代材料。然而,运输距离短、易沉积于多孔介质等因素也严重制约了其注入修复效果。通过沉降和流变试验,确定了修复剂中膨润土和高岭土支撑的纳米零价铁(K-nZVI)的最佳比例。利用模拟柱试验研究了去离子水和含有 K-nZVI 的膨润土悬浮液在不同注入压力下在多孔介质中的迁移特性。结果表明,膨润土悬浮液能显著提高 K-nZVI 的稳定性和分散性。膨润土和 K-nZVI 的比例分别为 5%和 0.4%,是修复剂的最佳配比。去离子水携带 K-nZVI 的迁移能力随注入压力的增加而增加,而膨润土悬浮液携带 K-nZVI 修复剂存在一个临界注入压力。数值模拟结果表明,K-nZVI 的扩散半径与注入压力呈正相关,与修复剂的粘度呈负相关。研究结果为有色金属冶炼厂重金属污染修复工程提供了理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced transport of K-nZVI by bentonite suspensions in porous media

Due to high reactivity and relatively low cost, nano zero-valent iron (nZVI) has become an alternative material for in-situ remediation of contaminated sites. However, factors such as short transport distance and easy deposition in porous media also seriously restrict its injection remediation effect. The optimum ratio of bentonite and kaolin supported nano zero-valent iron (K-nZVI) in the remediation agent was determined by sedimentation and rheological tests. The transport characteristics of deionized water and bentonite suspensions carrying K-nZVI in porous media under different injection pressures were investigated using simulating column tests. The results show that bentonite suspensions could significantly improve the stability and dispersibility of K-nZVI. The proportion of bentonite and K-nZVI are 5% and 0.4%, respectively, which is the best ratio of the remediation agent. The transport capability of K-nZVI carried by deionized water increases with the increase of injection pressure, while there is a critical injection pressure for bentonite suspensions carrying K-nZVI remediation agent. The numerical simulation results show that the diffusion radius of K-nZVI is positively correlated with the injection pressure and negatively correlated with the viscosity of the remediation agent. The results provide theoretical guidance for the remediation project of heavy metal pollution in non-ferrous smelting sites.

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来源期刊
Journal of Central South University
Journal of Central South University METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
6.10
自引率
6.80%
发文量
242
审稿时长
2-4 weeks
期刊介绍: Focuses on the latest research achievements in mining and metallurgy Coverage spans across materials science and engineering, metallurgical science and engineering, mineral processing, geology and mining, chemical engineering, and mechanical, electronic and information engineering
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