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This paper presents a study of the Taguchi design method to optimise the rate of electrophoretic deposition (EPD) of Bioglass® particles from aqueous suspensions.
Adsorption of PS on the prepared nanosize ZnO particles from aqueous suspension reveals some of their additional characteristics.
The high cost and the complicated separation process of the titanium catalyst particles from aqueous system hinder the large-scale industrial applications of TiO2-based technology.
In addition, the present research revealed that recovery of suspended photocatalytic particles from aqueous media was quite difficult and further it can be effectively dealt by suspension of suitable supporting materials (Shivaraju et al. 2010a, b; Shivaraju 2011), which are decorated with Mg-doped TiO2 polyscales in aqueous media.
The presence of the disordered water indicates that CuH particles from aqueous routes consist of a crystalline core of non-stoichiometric CuH terminated by hydroxyls with a few layers of disordered water and an outer layer of unperturbed water that freezes to crystalline ice I h.
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Processes of agglomeration and coagulation of micro- and nano-particles and formation of thin films by direct deposition of nano-particles from aqueous solutions on the substrate particles (coating process) are studied.
The statistical analysis of the particles synthesized from aqueous solutions of HAuCl4 ranging from 0.02 to 0.6 mM revealed an average standard deviation of approximately 11%. Figure 4 Effect of increasing chloroauric acid concentrations on nanoparticle spectral profile.
The coating process was based on the direct deposition of mineral particles from an aqueous suspension by evaporation.
Electrodeless (chemical) deposition of Au particles from AuCl4− aqueous solution using nanostructured PPy also shows different morphologies, presumably due to a difference in growth kinetics dominated by the differences in surface area and surface chemistry.
We report an efficient technique to separate ferromagnetic catalyst particles from an aqueous surfactant solution of single-walled carbon nanotubes (SWNTs) by the use of a 1.3 T permanent magnet.
The use of different fibres allowed their properties to be correlated with filtration performance, based on removal of 1 μm diameter particles from an aqueous suspension with a conductivity in the range 5 10 μS cm−1, one order of magnitude lower than natural waters.
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