Linkage of iron elution and dissolved oxygen consumption with removal of organic pollutants by nanoscale zero-valent iron: Effects of pH on iron dissolution and formation of iron oxide/hydroxide layer

被引:45
作者
Fujioka, Nanae [1 ]
Suzuki, Moe [1 ]
Kurosu, Shunji [2 ]
Kawase, Yoshinori [1 ]
机构
[1] Toyo Univ, Dept Appl Chem, Res Ctr Biochem & Environm Engn, Kawagoe, Saitama 3508585, Japan
[2] Toyo Univ, Bionano Elect Res Ctr, Kawagoe, Saitama 3508585, Japan
关键词
Nanoscale zero-valent iron; Iron elution; Dissolved oxygen consumption; Reaction kinetics; Removal of organic pollutant; AQUEOUS-SOLUTION; WASTE-WATER; OXIDATION; DECOLORIZATION; DEGRADATION; REDUCTION; ORANGE;
D O I
10.1016/j.chemosphere.2015.10.064
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The iron elution and dissolved oxygen (DO) consumption in organic pollutant removal by nanoscale zero-valent iron (nZVI) was examined in the range of solution pH from 3.0 to 9.0. Their behaviors were linked with the removal of organic pollutant through the dissolution of iron and the formation of iron oxide/hydroxide layer affected strongly by solution pH and DO. As an example of organic pollutants, azo-dye Orange II was chosen in this study. The chemical composition analyses before and after reaction confirmed the corrosion of nZVI into ions, the formation of iron oxide/hydroxide layer on nZVI surface and the adsorption of the pollutant and its intermediates. The complete decolorization of Orange II with nZVI was accomplished very quickly. On the other hand, the total organic carbon (TOC) removal was considerably slow and the maximum TOC removal was around 40% obtained at pH 9.0. The reductive cleavage of azo-bond by emitted electrons more readily took place as compared with the cleavage of aromatic rings of Orange II leading to the degradation to smaller molecules and subsequently the mineralization. A reaction kinetic model based on the Langmuir-Hinshelwood/Eley-Rideal approach was developed to elucidate mechanisms for organic pollutant removal controlled by the formation of iron oxide/hydroxide layer, the progress of which could be characterized by considering the dynamic concentration changes in Fe2+ and DO. The dynamic profiles of Orange II removal linked with Fe2+ and DO could be reasonably simulated in the range of pH from 3.0 to 9.0. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1738 / 1746
页数:9
相关论文
共 24 条
[1]   Removal of arsenic from water by zero-valent iron [J].
Bang, S ;
Korfiatis, GP ;
Meng, XG .
JOURNAL OF HAZARDOUS MATERIALS, 2005, 121 (1-3) :61-67
[2]   Reductive decolourization and total organic carbon reduction of the diazo dye Cl Acid Black 24 by zero-valent iron powder [J].
Chang, Ming-Chin ;
Shu, Hung-Yee ;
Yu, Hsin-Hung ;
Sung, Yi-Chun .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2006, 81 (07) :1259-1266
[3]   Removal mechanism of antibiotic metronidazole from aquatic solutions by using nanoscale zero-valent iron particles [J].
Chen, Jinhong ;
Qiu, Xiuqi ;
Fang, Zhanqiang ;
Yang, Man ;
Pokeung, Tsang ;
Gu, Fenglong ;
Cheng, Wen ;
Lan, Bingyan .
CHEMICAL ENGINEERING JOURNAL, 2012, 181 :113-119
[4]   Effects of pH on dechlorination of trichloroethylene by zero-valent iron [J].
Chen, JL ;
Al-Abed, SR ;
Ryan, JA ;
Li, ZB .
JOURNAL OF HAZARDOUS MATERIALS, 2001, 83 (03) :243-254
[5]   Nanoscale zero-valent iron: Future prospects for an emerging water treatment technology [J].
Crane, R. A. ;
Scott, T. B. .
JOURNAL OF HAZARDOUS MATERIALS, 2012, 211 :112-125
[6]   Colour removal from textile wastewater using a pilot-scale dual-stage MBR and subsequent RO system [J].
De Jager, D. ;
Sheldon, M. S. ;
Edwards, W. .
SEPARATION AND PURIFICATION TECHNOLOGY, 2014, 135 :135-144
[7]   Zero-valent iron mediated degradation of ciprofloxacin - Assessment of adsorption, operational parameters and degradation products [J].
de Lima Perini, Joao Angelo ;
Silva, Bianca Ferreira ;
Pupo Nogueira, Raquel F. .
CHEMOSPHERE, 2014, 117 :345-352
[8]   Rapid decolorization of azo dye methyl orange in aqueous solution by nanoscale zerovalent iron particles [J].
Fan, Jing ;
Guo, Yanhui ;
Wang, Jianji ;
Fan, Maohong .
JOURNAL OF HAZARDOUS MATERIALS, 2009, 166 (2-3) :904-910
[9]   Oxidative transformation of contaminants using colloidal zero-valent iron [J].
Feitz, AJ ;
Joo, SH ;
Guan, J ;
Sun, Q ;
Sedlak, DL ;
Waite, TD .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2005, 265 (1-3) :88-94
[10]   pH-dependent degradation of acid orange II by zero-valent iron in presence of oxygen [J].
He, Chun ;
Yang, Jiannan ;
Zhu, Linfei ;
Zhang, Qiong ;
Liao, Weichen ;
Liu, Shangkun ;
Liao, Yu ;
Abou Asi, Mudar ;
Shu, Dong .
SEPARATION AND PURIFICATION TECHNOLOGY, 2013, 117 :59-68