Department of Civil and Environmental Engineering, Fritz Engineering Laboratory, Lehigh University, 13 E. Packer Avenue, Bethlehem, PA 18015-4729, USA; CENSE, Departamento de Ciências e Engenharia do Ambiente, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal; CERNAS - Research Center for Natural Resources, Environment and Society, Escola Superior Agrária de Coimbra, Instituto Politécnico de Coimbra, Bencanta, 3045-601 Coimbra, Portugal.
CERNAS - Research Center for Natural Resources, Environment and Society, Escola Superior Agrária de Coimbra, Instituto Politécnico de Coimbra, Bencanta, 3045-601 Coimbra, Portugal.
Chemosphere. 2014 Mar;99:171-9. doi: 10.1016/j.chemosphere.2013.10.065. Epub 2013 Nov 16.
Zero valent iron nanoparticles (nZVI) transport for soil and groundwater remediation is slowed down or halted by aggregation or fast depletion in the soil pores. Direct electric current can enhance the transport of nZVI in low permeability soils. However operational factors, including pH, oxidation-reduction potential (ORP), voltage and ionic strength of the electrolyte can play an important role in the treatment effectiveness. Experiments were conducted to enhance polymer coated nZVI mobility in a model low permeability soil medium (kaolin clay) using low direct current. Different electrolytes of varying ionic strengths and initial pH and high nZVI concentrations were applied. Results showed that the nZVI transport is enhanced by direct current, even considering concentrations typical of field application that favor nanoparticle aggregation. However, the factors considered (pH, ORP, voltage and electrolyte) failed to explain the iron concentration variation. The electrolyte and its ionic strength proved to be significant for pH and ORP measured during the experiments, and therefore will affect aggregation and fast oxidation of the particles.
零价铁纳米颗粒(nZVI)在土壤和地下水中的传输会因团聚或在土壤孔隙中迅速耗尽而减缓或停止。直流电流可以增强低渗透性土壤中 nZVI 的传输。然而,操作因素,包括 pH 值、氧化还原电位(ORP)、电压和电解质的离子强度,在处理效果中可以发挥重要作用。实验旨在通过低直流电流增强聚合物涂覆的 nZVI 在模型低渗透性土壤介质(高岭土)中的迁移能力。使用不同离子强度和初始 pH 值以及高 nZVI 浓度的不同电解质进行了实验。结果表明,即使考虑到有利于纳米颗粒团聚的典型现场应用浓度,直流电流也会增强 nZVI 的传输。然而,所考虑的因素(pH 值、ORP、电压和电解质)无法解释铁浓度的变化。电解质及其离子强度对实验过程中测量的 pH 值和 ORP 有重要影响,因此会影响颗粒的聚集和快速氧化。