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Thermodynamic biosorption processes were found to be spontaneous, endothermic.
Both processes were found to follow a zero order kinetic model.
The adsorption processes were found to follow first-order kinetics and the rate constants were determined.
Both aggregation processes were found to be a function of temperature and type of asphaltenes.
The different BCLs, caused by the different preparation processes, were found to influence the fuel cell performance.
The synergetic effects in different combined processes were found to be highly related to the properties of the target pollutants.
On the flame centerline, both PAH and acetylene-related processes were found to be important for soot growth.
Biological processes were found to be the dominant mechanism for nitrogen and COD removal in coir, which provided sufficient retention time for denitrification processes.
Niche-based processes were found to be influential in shaping soil fungal community assembly, while the patterns in root-associated community structure were consistent with neutral assembly.
These processes were found to be impacted by the confined organic network connectivity which results in significant changes in the deformation rate sensitivity and fracture resistance.
The activation energies of the leaching processes were found to be 55.84 kJ/mol for nickel and 24.9 and 46.91 kJ/mol for cobalt.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com