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Consequently, significant research attention has recently been focused on the environmental behavior of heavy metals.
The adsorption behavior of heavy metals on CMAC was analyzed with Elovich, intraparticle diffusion model, Lagergren first-order model.
Moreover, the environmental compatibility was studied by evaluating the leaching behavior of heavy metals under specified conditions.
The particle size distribution, morphology, mineralogical and chemical composition, and leaching behavior of heavy metals of ash samples were evaluated.
Therefore, it is necessary to understand the behavior of heavy metals in concrete exposed to various situations.
The size distributions of particles containing Pb were successfully estimated, and the enrichment behavior of heavy metals in sub-micron particulates could be clearly observed.
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In addition, number of studies have been conducted on the adsorption behavior of heavy metal on Jordanian natural Zeolitic Tuff (Al Dwairi 2009; Baker et al. 2009).
Since carbonation is known to induce not only the change in physicochemical properties of AAS but also the change in the leaching behavior of heavy metal from BA, the present study aims to investigate the effect of carbonation on heavy metal leaching, mechanical property and CO2 uptake of porous concrete through a series of characterization tests.
Lasheen et al. (2015) investigated the adsorption behavior of heavy metal ions (Cu2+, Pb2+, Cd2+, Ni2+, and Cr6+) on as produced and oxidized MWCNTs and reported that the adsorption capacity of metals onto oxidized MWCNTs was greater than that on as-produced MWCNTs.
Therefore, Cd2+ should be easy into the living things with nanomaterials in real environment, and that may aggravate toxicity of single carbon nanotubes or Cd2+; meanwhile nanomaterials may change the toxicity and metabolic behavior of heavy metal ions in vivo; thereby, it was important for human health to study the cotoxicity of carbon nanotubes and heavy metal ions in the organism.
In this study, the behaviors of heavy metals in a Mg(OH 2 IRZ were monitored for 45 d.
More suggestions(18)
behavior of ductile metals
behavior of individual metals
behavior of different metals
behavior of certain metals
behavior of heavy toddlers
behavior of passive metals
behavior of absorbable metals
behavior of nanograined metals
behavior of pure metals
behavior of fcc metals
behavior of various metals
behavior of sintered metals
behavior of many metals
behavior of conventional metals
behavior of heavy vehicles
behavior of heavy depressions
behavior of heavy fluids
behavior of heavy efforts
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