Boundary Conditions of Fe3+ Hydrolytic Polymerization in Hydrochloric Acid Solution
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Graphical Abstract
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Abstract
In order to simulate the hydrolytic polymerization behavior of Pu4+, the dynamic light scattering method was used to study the hydrolytic polymerization boundary conditions of Fe3+ in hydrochloric acid solution, and the thermodynamic function of hydrolytic polymerization was calculated using thermodynamic software HSC Chemistry 6.0. The results show that there is a certain correlation between c0(H+), c(Fe3+) and temperature in the hydrolysis polymerization of Fe3+. Increasing Fe3+ concentration and temperature will promote Fe3+ hydrolysis polymerization. The particle size of the polymer colloid is more widely distributed with increasing Fe3+ concentration and temperature, and the median particle diameter is between 100 nm and 1000 nm.
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