4.4 Article

Application of carbon nanotubes to immobilize heavy metals in contaminated soils

期刊

JOURNAL OF NANOPARTICLE RESEARCH
卷 19, 期 4, 页码 -

出版社

SPRINGER
DOI: 10.1007/s11051-017-3830-x

关键词

Soil remediation; Stabilization/solidification; Adsorption tests; Permeability tests; Environmental effects

资金

  1. FCT/MCTES (PIDDAC) [Pest/C/EQB/UI0102/2013]
  2. European Regional Development Fund (ERDF) through the program COMPETE (POFC)

向作者/读者索取更多资源

The contamination of soils with heavy metals is a growing concern in modern societies. To avoid the spread of contamination, soil stabilization techniques can be applied mixing materials with the soil in order to partially immobilize heavy metals. Carbon nanotubes (CNTs) are nanomaterials known for its exceptional properties, like high surface area and adsorption capacity. Due to these unique properties, the potential use of CNTs in heavy metal contaminated water has been studied, with very satisfactory results; however, their application in contaminated soils is practically unexplored. This experimental work is focused on studying the potential of using CNTs in soil remediation, especially to immobilize the heavy metals ions: lead (Pb2+), copper (Cu2+), nickel (Ni2+), and zinc (Zn2+), commonly present in contaminated soils. In order to avoid CNT agglomeration, which originates the loss of their beneficial properties, an aqueous suspension of CNTs was prepared using a non-ionic surfactant combined with ultrasonic energy to promote CNTs dispersion. Then, the soil, with and without the addition of CNTs, was subjected to adsorption tests to evaluate the CNT capacity to improve heavy metal immobilization. To validate the adsorption test results, permeability tests were executed, simulating the conditions of a real-case scenario. The results obtained led to the conclusion that the addition of a small amount of dispersed CNTs can successfully increase the adsorption capacity of the soil and consequently improve the immobilization of heavy metals in the soil matrix. The immobilization percentage varies with the different heavy metals under study.

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