Salt-Resistant Catalyst Fe-Bi@γ-Al2O3 for Catalytic Ozonation of High-Salt Simulated Wastewater

被引:1
作者
Guo, Lei [1 ,2 ]
Yang, Xingwang [3 ]
Xu, Yanhua [1 ]
Zhou, Jun [3 ]
Sun, Wenquan [3 ]
Sun, Yongjun [3 ]
机构
[1] Nanjing Tech Univ, Sch Environm Sci & Engn, Nanjing 211816, Peoples R China
[2] Jiangsu Fangyang Water Co Ltd, Lianyungang 222000, Peoples R China
[3] Nanjing Tech Univ, Coll Urban Construct, Nanjing 211816, Peoples R China
基金
中国国家自然科学基金;
关键词
Catalytic ozonation; Ozone catalysts; High-salt wastewater; Salt resistance; Hydroquinone; ADVANCED OXIDATION PROCESSES; DEGRADATION; REMOVAL; DESALINATION;
D O I
10.1007/s11270-024-07652-x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In order to study the effects of common ionic components in wastewater on the catalytic performance and salt resistance of the Fe-Bi@gamma-Al2O3 catalyst, hydroquinone was selected as the target organic pollutant. Five factors, namely cation species, anion species, total hardness, total alkalinity, and TDS were studied to investigate the effects of different ionic components on the degradation of hydroquinone by the Fe-Bi@gamma-Al2O3 catalyst. K+ and Na+ had basically no effect on the COD removal rate, and the COD removal rates were 81.43% and 83.81%, respectively, with no significant change from the COD removal rate from raw water (85.24%), Cu2+ and Al3+ had some inhibitory effect on the COD removal rate, and the COD removal rate was 68.57% and 70.00%, respectively. While, the presence of Fe3+, Cl-, Br- and SiO32- had a significant inhibitory effect on the COD removal rate, and the COD removal rate was 61.90%, 51.90%, 55.71% and 60.48%. The concentration of Ca2+ was 50 mg/L and Mg2+ was 200 mg/L, the COD removal rate was 57.62% and 60.48%, respectively due to water hardness. The alkalinity had an inhibitory effect on the treatment effect of simulated waste water, when the OH concentration was 1500 mg/L, the COD removal rate was 49.05%. The higher the TDS concentration, the more obvious was the inhibitory effect on the COD removal rate, and the COD removal rate was 41.43% when the TDS was 50,000 mg/L. The intermediates and possible degradation mechanisms after catalytic ozone oxidation of hydroquinone-simulated wastewater by Fe-Bi@gamma-Al2O3 were investigated by UV spectroscopy scanning, 3D fluorescence spectroscopy scanning, and GC-MS scanning.
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页数:19
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共 40 条
[1]   Investigation of water and salt flux performances of polyamide coated tubular electrospun nanofiber membrane under pressure [J].
Arslan, Serkan ;
Eyvaz, Murat ;
Guclu, Serkan ;
Yuksekdag, Ayse ;
Koyuncu, Ismail ;
Yuksel, Ebubekir .
JOURNAL OF ENVIRONMENTAL SCIENCE AND HEALTH PART A-TOXIC/HAZARDOUS SUBSTANCES & ENVIRONMENTAL ENGINEERING, 2020, 55 (05) :606-614
[2]   Advanced oxidation processes for in-situ production of hydrogen peroxide/hydroxyl radical for textile wastewater treatment: a review [J].
Asghar, Anam ;
Raman, Abdul Aziz Abdul ;
Daud, Wan Mohd Ashri Wan .
JOURNAL OF CLEANER PRODUCTION, 2015, 87 :826-838
[3]   Solar photo-ozonation: A novel treatment method for the degradation of water pollutants [J].
Chavez, Ana M. ;
Rey, Ana ;
Beltran, Fernando J. ;
Alvarez, Pedro M. .
JOURNAL OF HAZARDOUS MATERIALS, 2016, 317 :36-43
[4]   Catalytic ozonation performance of calcium-loaded catalyst (Ca-C/Al2O3) for effective treatment of high salt organic wastewater [J].
Chen, Jianjie ;
Tu, Yuming ;
Shao, Gaoyan ;
Zhang, Fan ;
Zhou, Zhiyong ;
Tian, Shichao ;
Ren, Zhongqi .
SEPARATION AND PURIFICATION TECHNOLOGY, 2022, 301
[5]   Recent advances in electrochemical water technologies for the treatment of antibiotics: A short review [J].
dos Santos, Alexsandro J. ;
Kronka, Matheus S. ;
Fortunato, Guilherme, V ;
Lanza, Marcos R., V .
CURRENT OPINION IN ELECTROCHEMISTRY, 2021, 26
[6]   Degradation of anthraquinone dye CI Reactive Blue 19 in aqueous solution by ozonation [J].
Fanchiang, Jen-Mao ;
Tseng, Dyi-Hwa .
CHEMOSPHERE, 2009, 77 (02) :214-221
[7]   Kinetic characteristics of evaporative crystallization desalination of acidic high-salt wastewater [J].
Fang, Jiamei ;
Shi, Chengcheng ;
Zhang, Lin ;
Liu, Xin ;
Xu, Weigang ;
Ji, Yixiang ;
Bu, Shi ;
Zhang, Zhifan ;
Xu, Chen ;
Yao, Hongqi .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2022, 187 :129-139
[8]   Mineralization of Substituted Aromatic Compounds by Ozonation Catalyzed by Cerium Oxide and a Cerium Oxide-activated Carbon Composite [J].
Faria, P. C. C. ;
Orfao, J. J. M. ;
Pereira, M. F. R. .
CATALYSIS LETTERS, 2009, 127 (1-2) :195-203
[9]   Catalytic ozonation of high-salinity wastewater using salt-resistant catalyst Fe-Bi@γ-Al2O3 [J].
Guo, Lei ;
Zhang, Ming ;
Xie, Shuqian ;
Xiao, Zhiqiang ;
Sun, Wenquan ;
Xu, Yanhua ;
Zhou, Jun ;
Sun, Yongjun .
JOURNAL OF WATER PROCESS ENGINEERING, 2022, 49
[10]   Concentration Effects and Ion Properties Controlling the Fractionation of Halides during Aerosol Formation [J].
Guzman, Marcelo I. ;
Athalye, Richa R. ;
Rodriguez, Jose M. .
JOURNAL OF PHYSICAL CHEMISTRY A, 2012, 116 (22) :5428-5435