Elimination of nitrate in secondary effluent of wastewater treatment plants by Fe0 and Pd-Cu/diatomite
Author(s) -
Yupan Yun,
Zifu Li,
YiHung Chen,
Mayiani Saino,
Shikun Cheng,
Lei Zheng
Publication year - 2016
Publication title -
journal of water reuse and desalination
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.548
H-Index - 16
eISSN - 2408-9370
pISSN - 2220-1319
DOI - 10.2166/wrd.2016.122
Subject(s) - effluent , nitrate , wastewater , chemistry , catalysis , sewage treatment , nitrogen , palladium , zerovalent iron , inorganic chemistry , nuclear chemistry , environmental chemistry , pulp and paper industry , environmental engineering , environmental science , organic chemistry , adsorption , engineering
Because total nitrogen (TN), in which nitrate (NO 3 – ) is dominant in the effluent of most wastewater treatment plants, cannot meet the requirement of Chinese wastewater discharge standard ( 3 – elimination has attracted considerable attention. In this research, the novel diatomite-supported palladium-copper catalyst (Pd-Cu/diatomite) with zero-valent iron (Fe 0 ) was tried to use for catalytic reduction of nitrate in wastewater. Firstly, specific operational conditions (such as mass ratio of Pd:Cu, catalyst amounts, reaction time and pH of solution) were optimized for nitrate reduction in artificial solution. Secondly, the selected optimal conditions were further employed for nitrate elimination of real effluent of a wastewater treatment plant in Beijing, China. Results showed that 67% of nitrate removal and 62% of N 2 selectivity could be obtained under the following conditions: 5 g/L Fe 0 , 3:1 mass ratio (Pd:Cu), 4 g/L catalyst, 2 h reaction time and pH 4.3. Finally, the mechanism of catalytic nitrate reduction was also proposed.
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