The aggregation behaviors of graphitic carbon nitride (g-CN) nanosheets under various electrolytes and pH conditions were systematically investigated. The aggregation of g-CN nanosheets was significantly enhanced with increasing electrolyte concentrations. The divalent electrolytes (CaCl and MgCl) were more effective than monovalent electrolytes (NaCl and KCl) in promoting the aggregation of g-CN nanosheets. At the same valence, cations with higher atomic weight were more effective in enhancing the aggregation of g-CN nanosheets. The measured critical coagulation concentrations (CCC) of g-CN nanosheets were 4.7 mM KCl, 9.2 mM NaCl, 1.0 mM CaCl and 1.9 mM MgCl at pH 6.0, which were lower than some of other two-dimensional nanoparticles. The CCC values of g-CN nanosheets were decreased to 5.5 mM NaCl at pH 2.0, but increased to 29.0 mM NaCl and 2.1 mM CaCl at pH 10.0, indicating that the aggregation degree of g-CN nanosheets was decreased with increasing pH. The Fe/Al hydrated complexes generated at the specific pH inhibited the aggregation of g-CN nanosheets and enhanced the stability. Overall, findings from this study demonstrated that the electrolytes and pH conditions played important and combined roles on the aggregation of g-CN nanosheets. In addition, the aggregation behaviors of g-CN nanosheets could be well predicted with the DLVO theory.
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http://dx.doi.org/10.1016/j.envpol.2020.114646 | DOI Listing |
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