Enhanced degradation of 2,4-dinitrotoluene in groundwater by persulfate activated using iron-carbon micro-electrolysis

被引:81
作者
Ma, Zhifei [1 ,2 ,3 ]
Yang, Yu [2 ,3 ]
Jiang, Yonghai [2 ,3 ]
Xi, Beidou [2 ,3 ]
Yang, Tianxue [2 ,3 ]
Peng, Xing [1 ,2 ,3 ]
Lian, Xinying [2 ,3 ]
Yan, Kun [2 ,3 ]
Liu, Hongliang [1 ,2 ,3 ]
机构
[1] Beijing Normal Univ, Sch Environm, Beijing 100875, Peoples R China
[2] Chinese Res Inst Environm Sci, State Key Lab Environm Criteria & Risk Assessment, Beijing 100012, Peoples R China
[3] Chinese Res Inst Environm Sci, State Environm Protect Key Lab Simulat & Control, Beijing 100012, Peoples R China
基金
中国国家自然科学基金;
关键词
Groundwater; Fe/AC; Potassium persulfate; Sulfate free radical; 2,4-DNT; Degradation; ZERO-VALENT IRON; AQUEOUS-SOLUTION; ZEROVALENT IRON; ORGANIC POLLUTANTS; ARSENITE REMOVAL; ALPHA-FEOOH; OXIDATION; ACID; MINERALIZATION; IDENTIFICATION;
D O I
10.1016/j.cej.2016.11.083
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The reactivity of potassium persulfate (PP) in the degradation of 2,4-dinitrotoluene (2,4-DNT), with when iron and carbon as activators, is investigated. Effects of pH, persulfate concentration, and ionic strength on the degradation efficiency of 2,4-DNT by persulfate are studied in batch experiments, with simulated groundwater environmental conditions of no light, neutral pH and low temperatures (15 degrees C). The degradation of 2,4-DNT heightens and follows the pseudo-first-order kinetic model in the system comprising Fe/AC and S2O82-. Addition of activated carbon (AC) increases the release of Fe2+ to activate PP. When the concentration of persulfate is 100 mg/L, the 2,4-DNT degradation is the best at an initial pH of 2. The 2,4-DNT removal efficiency increases in the order of pH 2 > pH 9 > pH 3 > pH 5 > pH 11 > pH 7 in the Fe/AC +PP system. 2,4-DNT degradation in the presence of Cl- is slower in the first 100 min, but there is no obvious difference in degradation efficiency further on. This is most likely due to persulfate activation and Fe/AC reduction in this system. Meanwhile, the presence of bicarbonate ions inhibits the degradation of 2,4-DNT. A possible mechanism is proposed based on the reasons for the degradation of 2,4-DNT in the Fe/AC + PP system. Iron-carbon micro-electrolysis promotes micronmeter-sized iron to generate Fe2+. This study provides the design for an advanced, refractory organic matter-based oxidation technique for improved groundwater pollution remediation. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:183 / 190
页数:8
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