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The thermal stability of the solids was also investigated up to 800 °C.
In the aim of a real on-field use, the potential environmental impact of these solids was also evaluated by bioluminescence toxicity tests on reference bacteria (Photobacterium leiognathi Sh1), showing a negligible negative impact for TiO2, γ-Al2O3, and Nb2O5.
The moisture content of the undissolved solids was also determined.
The influence of packing on charge transport in organic solids was also analyzed using Monte Carlo methods[6].
Freeze-dried protein and undissolved solids were analyzed for protein content, and the moisture content of undissolved solids was also determined.
Removal of solids was also investigated and its positive effect on SCO production was also demonstrated.
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For comparison, the phenomenological Tsai Wu strength criterion for anisotropic solids is also implemented.
The propagation of waves in case of non-heat conducting solids is also discussed.
For comparative purposes, diverse solids were also obtained by the conventional sol-gel method (P-series).
A model of the time-evolution of the electric current generated during defluidization of the bed solids is also presented.
The effects of the physical characteristics of the solids were also included in the four correlations so proposed.
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