Journal of Radiation Research and Radiation Processing, Volume. 43, Issue 1, 010401(2025)
Degradation of pyridine in coal chemical wastewater using ionizing radiation and synergistic processes
[1] Li D, Tang J Y, Zhou X Z et al. Electrochemical degradation of pyridine by Ti/SnO2-Sb tubular porous electrode[J]. Chemosphere, 149, 49-56(2016).
[2] Daware G B, Pangarkar B L, Kayande U P et al. Intensified removal of 4-methylpyridine by ultrasonication in presence of advanced oxidants[J]. Journal of the Indian Chemical Society, 100, 100810(2023).
[3] Gosu V, Gurjar B R, Zhang T C et al. Oxidative degradation of quinoline using nanoscale zero-valent iron supported by granular activated carbon[J]. Journal of Environmental Engineering, 142(2016).
[4] Padoley K V, Mudliar S N, Pandey R A. Heterocyclic nitrogenous pollutants in the environment and their treatment options: an overview[J]. Bioresource Technology, 99, 4029-4043(2008).
[5] Ma W W, Zhang X Q, Han H J et al. Biotoxicity dynamic change and key toxic organics identification of coal chemical wastewater along a novel full-scale treatment process[J]. Journal of Environmental Sciences, 138, 277-287(2024).
[6] Cruz-Rizo A, Gutiérrez-Granados S, Salazar R et al. Application of electro-Fenton/BDD process for treating tannery wastewaters with industrial dyes[J]. Separation and Purification Technology, 172, 296-302(2017).
[7] Du J Y, Wang C, Zhao Z W et al. Mineralization, characteristics variation, and removal mechanism of algal extracellular organic matter during vacuum ultraviolet/ozone process[J]. Science of the Total Environment, 820, 153298(2022).
[8] Chu L B, Wang J L, Chen C H et al. Advanced treatment of antibiotic wastewater by ionizing radiation combined with peroxymonosulfate/H2O2 oxidation[J]. Journal of Cleaner Production, 321, 128921(2021).
[9] Paul J, Rawat K P, Sarma K S S et al. Decoloration and degradation of reactive red-120 dye by electron beam irradiation in aqueous solution[J]. Applied Radiation and Isotopes: Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine, 69, 982-987(2011).
[10] Vahdat A, Bahrami S H, Arami M et al. Decoloration and mineralization of reactive dyes using electron beam irradiation, Part I: effect of the dye structure, concentration and absorbed dose (single, binary and ternary systems)[J]. Radiation Physics and Chemistry, 81, 851-856(2012).
[11] Deogaonkar S C, Wakode P, Rawat K P. Electron beam irradiation post treatment for degradation of non biodegradable contaminants in textile wastewater[J]. Radiation Physics and Chemistry, 165, 108377(2019).
[12] Chu L B, Yu S Q, Wang J L. Degradation of pyridine and quinoline in aqueous solution by gamma radiation[J]. Radiation Physics and Chemistry, 144, 322-328(2018).
[13] Shi H F, Chen D, Jiang X B et al. Simultaneous high-concentration pyridine removal and denitrification in an electricity assisted bio-photodegradation system[J]. Chemical Engineering Journal, 430, 132598(2022).
[14] Shi J X, Wang Y R, Lu S M et al. Pilot study on ceramic flat membrane bioreactor in treatment of coal chemical wastewater[J]. Chemosphere, 347, 140701(2024).
[15] YANG Yin, LI Xueyuan, LIU Luming et al. Research on kinetics and influence factors of pyridine degradation by Fenton/US[J]. Applied Chemical Industry, 49, 2450-2454(2020).
[16] Lian J F, Qiang Z M, Li M K et al. UV photolysis kinetics of sulfonamides in aqueous solution based on optimized fluence quantification[J]. Water Research, 75, 43-50(2015).
[17] Liu T, Ding Y C, Liu C Y et al. UV activation of the pi bond in pyridine for efficient pyridine degradation and mineralization by UV/H2O2 treatment[J]. Chemosphere, 258, 127208(2020).
[18] Şolpan D, Ahmed Ibrahim K E, Elbashir A A et al. Radiolytic degradation of carbaryl in aqueous solution by gamma-irradiation/H2O2 process[J]. Applied Radiation and Isotopes: Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine, 184, 110210(2022).
[19] Gong H, Chu W, Xu K H et al. Efficient degradation, mineralization and toxicity reduction of sulfamethoxazole under photo-activation of peroxymonosulfate by ferrate (VI)[J]. Chemical Engineering Journal, 389, 124084(2020).
[20] Honarmandrad Z, Sun X, Wang Z H et al. Activated persulfate and peroxymonosulfate based advanced oxidation processes (AOPs) for antibiotics degradation—a review[J]. Water Resources and Industry, 29, 100194(2023).
[21] Yan S D, Geng J Y, Guo R et al. Hydronium jarosite activation of peroxymonosulfate for the oxidation of organic contaminant in an electrochemical reactor driven by microbial fuel cell[J]. Journal of Hazardous Materials, 333, 358-368(2017).
[22] Chu L B, Zhuan R, Chen D et al. Degradation of macrolide antibiotic erythromycin and reduction of antimicrobial activity using persulfate activated by gamma radiation in different water matrices[J]. Chemical Engineering Journal, 361, 156-166(2019).
[23] Alkhuraiji T S, Karpel Vel Leitner N. Effect of oxidant addition on the elimination of 2-naphthalenesulfonate in aqueous solutions by electron beam irradiation[J]. Radiation Physics and Chemistry, 126, 95-102(2016).
[24] XU Jun, TU Yong, WU Qian et al. Research on the ozone, ozone/hydrogen peroxide catalytic oxidation to the advanced treatment of chemical industrial wastewater[J]. Industrial Water Treatment, 37, 62-65(2017).
[25] WANG Pengying. Oxidative degradation of nitrogen-containing heterocyclic compounds in water by PMS non-radical system[D](2022).
[26] Tegze A, S'agi G, Kov'acs K et al. Radiation induced degradation of ciprofloxacin and norfloxacin: Kinetics and product analysis[J]. Radiation Physics and Chemistry, 158, 68-75(2019).
[27] Wang J L, Chu L B. Irradiation treatment of pharmaceutical and personal care products (PPCPs) in water and wastewater: an overview[J]. Radiation Physics and Chemistry, 125, 56-64(2016).
Get Citation
Copy Citation Text
Xinxuan WANG, Qi YANG, Zhonglei ZHANG, Hai CHEN, Chuanhong CHEN, Tao ZHANG. Degradation of pyridine in coal chemical wastewater using ionizing radiation and synergistic processes[J]. Journal of Radiation Research and Radiation Processing, 2025, 43(1): 010401
Category: RADIATION TECHNOLOGY APPLICATION
Received: Apr. 24, 2024
Accepted: May. 27, 2024
Published Online: Mar. 13, 2025
The Author Email: Qi YANG (杨琦)