共 59 条
The zeta potentials of g-C3N4 nanoparticles: Effect of electrolyte, ionic strength, pH, and humic acid
被引:45
作者:
Dong, Shunan
[1
]
Zeng, Zhuo
[1
]
Cai, Wangwei
[1
]
Zhou, Zhiyue
[1
]
Dou, Chuanbin
[1
]
Liu, Han
[1
]
Xia, Jihong
[1
]
机构:
[1] Hohai Univ, Coll Agr Engn, 1 Xikang Rd, Nanjing 210098, Jiangsu, Peoples R China
基金:
中国国家自然科学基金;
关键词:
Zeta potentials;
g-C3N4;
nanoparticles;
Aqueous environment;
Electrolyte;
pH;
Humic acid;
Colloids;
SATURATED POROUS-MEDIA;
GRAPHENE OXIDE;
AGGREGATION KINETICS;
PHOTOCATALYTIC PERFORMANCE;
TRANSPORT;
ADSORPTION;
STABILITY;
RETENTION;
WATER;
MECHANISMS;
D O I:
10.1007/s11051-019-4686-z
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
In this study, zeta potentials of graphitic carbon nitride (g-C3N4) nanoparticles were detailedly investigated under various electrolytes, solution pH, and humic acid (HA) concentration conditions. The hydrodynamic radius of g-C3N4 nanoparticles was measured to be 388.9 +/- 24 nm, and the specific surface area of the g-C3N4 nanoparticles was measured to be 46.2 m(2) g(-1). The absolute values of g-C3N4 zeta potentials significantly decreased with the increasing ionic strength (IS) due to the charge screening. Compared to the monovalent cation, the zeta potentials of g-C3N4 were less negative with the presence of divalent cations. In addition, K+ was more effective than Na+ in decreasing the absolute values of g-C3N4 zeta potentials, and Ca2+ was more effective than Mg2+ in decreasing the absolute values of g-C3N4 zeta potentials. When NaCl and CaCl2 were used as the electrolytes, the zeta potentials of g-C3N4 became less negative with the decreasing pH conditions. When FeCl3 and AlCl3 were used as the electrolytes, the zeta potentials of g-C3N4 became more positive with increasing solution pH due to the changing species of Fe3+ and Al3+. The zeta potentials of g-C3N4 were significantly more negative with the presence of HA. The results from this work indicated electrolytes, solution pH, and HA concentration conditions play a complex role in zeta potentials of g-C3N4 nanoparticles in aqueous environment.
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页数:12
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