Fate of environmental pollutants.

PFAS antibiotic resistance disinfection by-products drugs of abuse emerging contaminants estrogens heavy metals microplastics pathogens pesticides pharmaceuticals and personal care products

Journal

Water environment research : a research publication of the Water Environment Federation
ISSN: 1554-7531
Titre abrégé: Water Environ Res
Pays: United States
ID NLM: 9886167

Informations de publication

Date de publication:
Oct 2019
Historique:
received: 15 05 2019
revised: 11 08 2019
accepted: 19 08 2019
pubmed: 11 9 2019
medline: 12 10 2019
entrez: 11 9 2019
Statut: ppublish

Résumé

This annual review covers the literature published in 2018 on topics related to the occurrence and fate of environmental pollutants in wastewater. Due to the vast amount of literature published on this topic, we have discussed only a portion of the quality research publications, due to the limitation of space. The abstract search was carried out using Web of Science, and the abstracts were selected based on their relevance. In a few cases, full-text articles were referred to understand new findings better. This review is divided into the following sections: antibiotic-resistant bacteria (ARBs) and antibiotic-resistant genes (ARGs), disinfection by-products (DBPs), drugs of abuse (DoAs), estrogens, heavy metals, microplastics, per- and polyfluoroalkyl compounds (PFAS), pesticides, and pharmaceuticals and personal care products (PPCPs), with the addition of two new classes of pollutants to previous years (DoAs and PFAS).

Identifiants

pubmed: 31502369
doi: 10.1002/wer.1225
doi:

Substances chimiques

Environmental Pollutants 0
Pharmaceutical Preparations 0
Plastics 0
Waste Water 0
Water Pollutants, Chemical 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

1294-1325

Informations de copyright

© 2019 Water Environment Federation.

Références

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Carboneras, M. B., Villaseñor, J., Fernández-Morales, F. J., Rodrigo, M. A., & Cañizares, P. (2018). Biological treatment of wastewater polluted with an oxyfluorfen-based commercial herbicide. Chemosphere, 213, 244-251. https://doi.org/10.1016/j.chemosphere.2018.09.054
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Chen, S., Zhou, Y., Meng, J., & Wang, T. (2018). Seasonal and annual variations in removal efficiency of perfluoroalkyl substances by different wastewater treatment processes. Environmental Pollution, 242, 2059-2067.
Choi, P. M., Tscharke, B. J., Donner, E., O'Brien, J. W., Grant, S. C., Kaserzon, S. L., … Mueller, J. F. (2018). Wastewater-based epidemiology biomarkers: Past, present and future. Trends in Analytical Chemistry, 105, 453-469. https://doi.org/10.1016/j.trac.2018.06.004
Dalahmeh, S., Tirgani, S., Komakech, A. J., Niwagaba, C. B., & Ahrens, L. (2018). Per- and polyfluoroalkyl substances (PFASs) in water, soil and plants in wetlands and agricultural areas in Kampala, Uganda. Science of the Total Environment, 631, 660-667.
Damkjaer, K., Weisser, J. J., Msigala, S. C., Mdegela, R., & Styrishave, B. (2018). Occurrence, removal and risk assessment of steroid hormones in two wastewater stabilization pond systems in Morogoro, Tanzania. Chemosphere, 212, 1142-1154. https://doi.org/10.1016/j.chemosphere.2018.08.053
del Álamo, A., Pariente, M., Vasiliadou, I., Padrino, B., Puyol, D., Molina, R., & Martínez, F. (2018). Removal of pharmaceutical compounds from urban wastewater by an advanced bio-oxidation process based on fungi trametes versicolor immobilized in a continuous RBC system. Environmental Science and Pollution Research, 25(35), 34884-34892. https://doi.org/10.1007/s11356-017-1053-4
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Dong, H., Qiang, Z., Liu, S., Li, J., Yu, J., & Qu, J. (2018). Oxidation of iopamidol with ferrate (Fe(VI)): Kinetics and formation of toxic iodinated disinfection by-products. Water Research, 130, 200-207. https://doi.org/10.1016/j.watres.2017.12.003
Du, Y., Wu, Q.-Y., Lv, X.-T., Ye, B., Zhan, X.-M., Lu, Y., & Hu, H.-Y. (2018). Electron donating capacity reduction of dissolved organic matter by solar irradiation reduces the cytotoxicity formation potential during wastewater chlorination. Water Research, 145, 94-102.
Dvořáková Březinova, T., Vymazal, J., Koželuh, M., & Kule, L. (2018). Occurrence and removal of ibuprofen and its metabolites in full-scale constructed wetlands treating municipal wastewater. Ecological Engineering, 120, 1-5. https://doi.org/10.1016/j.ecoleng.2018.05.020
Eckert, E. M., Cesare, A. D., Kettner, M. T., Arias-Andres, M., Fontaneto, D., Grossart, H.-P., & Corno, G. (2018). Microplastics increase impact of treated wastewater on freshwater microbial community. Environmental Pollution, 234, 495-502.
Elliott, S. M., Erickson, M. L., Krall, A. L., & Adams, B. A. (2018). Concentrations of pharmaceuticals and other micropollutants in groundwater downgradient from large on-site wastewater discharges. PLoS ONE, 13(11), e0206004. https://doi.org/10.1371/journal.pone.0206004
Elmoznino, J., Vlahos, P., & Whitney, M. (2018). Occurrence and partitioning behavior of perfluoroalkyl acids in wastewater effluent discharging into the long island sound. Environmental Pollution, 243, 453-461.
Fairbairn, D. J., Elliott, S. M., Kiesling, R. L., Schoenfuss, H. L., Ferrey, M. L., & Westerhoff, B. M. (2018). Contaminants of emerging concern in urban stormwater: Spatiotemporal patterns and removal by iron-enhanced sand filters (IESFs). Water Research, 145, 332-345. https://doi.org/10.1016/j.watres.2018.08.020
Fakhre, N. A., & Ibrahim, B. M. (2018). The use of new chemically modified cellulose for heavy metal ion adsorption. Journal of Hazardous Materials, 343, 324-331.
Fang, L., Li, L., Qu, Z., Xu, H., Xu, J., & Yan, N. (2018). A novel method for the sequential removal and separation of multiple heavy metals from wastewater. Journal of Hazardous Materials, 342, 617-624.
Feng, L., Zhang, W., & Li, X. (2018). Monitoring of regional drug abuse through wastewater-based epidemiology-A critical review. Science China Earth Sciences, 61(3), 239-255. https://doi.org/10.1007/s11430-017-9129-x
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Fontana, I. B., Peterson, M., & Cechinel, M. A. P. (2018). Application of brewing waste as biosorbent for the removal of metallic ions present in groundwater and surface waters from coal regions. Journal of Environmental Chemical Engineering, 6(1), 660-670. https://doi.org/10.1016/j.jece.2018.01.005
Foroutan, R., Esmaeili, H., Abbasi, M., Rezakazemi, M., & Mesbah, M. (2018). Adsorption behavior of Cu(II) and Co(II) using chemically modified marine algae. Environmental Technology, 39(21), 2792-2800. https://doi.org/10.1080/09593330.2017.1365946
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Gallen, C., Eaglesham, G., Drage, D., Nguyen, T. H., & Mueller, J. F. (2018). A mass estimate of perfluoroalkyl substance (PFAS) release from Australian wastewater treatment plants. Chemosphere, 208, 975-983. https://doi.org/10.1016/j.chemosphere.2018.06.024
Gao, J., Li, J., Jiang, G., Yuan, Z., Eaglesham, G., Covaci, A., … Thai, P. K. (2018). Stability of alcohol and tobacco consumption biomarkers in a real rising main sewer. Water Research, 138, 19-26.
Gao, J., Xu, Z., Li, X., Obrien, J. W., Culshaw, P. N., Thomas, K. V., … Thai, P. K. (2018). Enantiomeric profiling of amphetamine and methamphetamine in wastewater: A 7-year study in regional and Urban Queensland, Australia. Science of the Total Environment, 643, 827-834. https://doi.org/10.1016/j.scitotenv.2018.06.242
Geed, S. R., Prasad, S., Kureel, M. K., Singh, R. S., & Rai, B. N. (2018). Biodegradation of wastewater in alternating aerobic-anoxic lab scale pilot plant by Alcaligenes sp. S3 isolated from agricultural field. Journal of Environmental Management, 214, 408-415. https://doi.org/10.1016/j.jenvman.2018.03.031
Ghimici, L., & Constantin, M. (2018). Removal of the commercial pesticides novadim progress, Bordeaux mixture and karate zeon by Pullulan derivatives based flocculants. Journal of Environmental Management, 218, 31-38.
Gies, E. A., Lenoble, J. L., Noël, M., Etemadifar, A., Bishay, F., Hall, E. R., & Ross, P. S. (2018). Retention of microplastics in a major secondary wastewater treatment plant in Vancouver, Canada. Marine Pollution Bulletin, 133, 553-561. https://doi.org/10.1016/j.marpolbul.2018.06.006
Gikas, G. D., Pérez-Villanueva, M., Tsioras, M., Alexoudis, C., Pérez-Rojas, G., Masís-Mora, M., … Tsihrintzis, V. A. (2018). Low-cost approaches for the removal of terbuthylazine from agricultural wastewater: Constructed wetlands and biopurification system. Chemical Engineering Journal, 335, 647-656. https://doi.org/10.1016/j.cej.2017.11.031
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Gorito, A. M., Ribeiro, A. R., Gomes, C. R., Almeida, C. M. R., & Silva, A. M. T. (2018). Constructed wetland microcosms for the removal of organic micropollutants from freshwater aquaculture effluents. Science of the Total Environment, 644, 1171-1180.
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Gündoğdu, S., Çevik, C., Güzel, E., & Kilercioğlu, S. (2018). Microplastics in municipal wastewater treatment plants in Turkey: A comparison of the influent and secondary effluent concentrations. Environmental Monitoring and Assessment, 190(11). https://doi.org/10.1007/s10661-018-7010-y
Guo, H., Liu, Y., Ma, W., Yan, L., Li, K., & Lin, S. (2018). Surface molecular imprinting on carbon microspheres for fast and selective adsorption of perfluorooctane sulfonate. Journal of Hazardous Materials, 348, 29-38.
Hanzlíková, Z., Braniša, J., Jomová, K., Fülöp, M., Hybler, P., & Porubská, M. (2018). Electron beam irradiated sheep wool - Prospective sorbent for heavy metals in wastewater. Separation and Purification Technology, 193, 345-350.
Hayward, J. L., Jackson, A. J., Yost, C. K., Hansen, L. T., & Jamieson, R. C. (2018). Fate of antibiotic resistance genes in two Arctic Tundra Wetlands impacted by municipal wastewater. Science of the Total Environment, 642, 1415-1428.
He, H. J., Xiang, Z. H., Chen, X. J., Chen, H., Huang, H., Wen, M., & Yang, C. P. (2018). Biosorption of Cd(II) from synthetic wastewater using dry biofilms from biotrickling filters. International Journal of Environmental Science and Technology, 15(7), 1491-1500. https://doi.org/10.1007/s13762-017-1507-8
Herbort, A. F., Sturm, M. T., Fiedler, S., Abkai, G., & Schuhen, K. (2018). Alkoxy-Silyl induced agglomeration: A new approach for the sustainable removal of microplastic from aquatic systems. Journal of Polymers and the Environment, 26(11), 4258-4270. https://doi.org/10.1007/s10924-018-1287-3
Herrera-Melián, J., Guedes-Alonso, R., Borreguero-Fabelo, A., Santana-Rodríguez, J., & Sosa-Ferrera, Z. (2018). Study on the removal of hormones from domestic wastewaters with lab-scale constructed wetlands with different substrates and flow directions. Environmental Science and Pollution Research, 25(21), 20374-20384. https://doi.org/10.1007/s11356-017-9307-8
Hu, Z.-H., Omer, A. M., Ouyang, X. K., & Yu, D. (2018). Fabrication of carboxylated cellulose nanocrystal/sodium alginate hydrogel beads for adsorption of Pb(II) from aqueous solution. International Journal of Biological Macromolecules, 108, 149-157. https://doi.org/10.1016/j.ijbiomac.2017.11.171
Huang, X., Yang, J., Wang, J., Bi, J., Xie, C., & Hao, H. (2018). Design and synthesis of core-shell Fe3O4@PTMT composite magnetic microspheres for adsorption of heavy metals from high salinity wastewater. Chemosphere, 206, 513-521. https://doi.org/10.1016/j.chemosphere.2018.04.184
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Jawale, R. H., & Gogate, P. R. (2018). Combined treatment approaches based on ultrasound for removal of triazophos from wastewater. Ultrasonics - Sonochemistry, 40, 89-96. https://doi.org/10.1016/j.ultsonch.2017.02.019
Jiang, Q., Ngo, H. H., Nghiem, L. D., Hai, F. I., Price, W. E., Zhang, J., … Guo, W. (2018). Effect of hydraulic retention time on the performance of a hybrid moving bed biofilm reactor-membrane bioreactor system for micropollutants removal from municipal wastewater. Bioresource Technology, 247, 1228-1232. https://doi.org/10.1016/j.biortech.2017.09.114
Jiménez-Gamboa, D., Castro-Gutiérrez, V., Fernández-Fernández, E., Briceño-Guevara, S., Masís-Mora, M., Chin-Pampillo, J. S., … Rodríguez-Rodríguez, C. E. (2018). Expanding the application scope of on-farm biopurification systems: Effect and removal of oxytetracycline in a biomixture. Journal of Hazardous Materials, 342, 553-560. https://doi.org/10.1016/j.jhazmat.2017.08.059
Jovicic, V., Khan, M., Zbogar-Rasic, A., Fedorova, N., Poser, A., Swoboda, P., & Delgado, A. (2018). Degradation of low concentrated perfluorinated compounds (PFCs) from water samples using non-thermal atmospheric plasma (NTAP). Energies, 11(5), 1290. https://doi.org/10.3390/en11051290
Kang, D., Zhao, Q., Wu, Y., Wu, C., & Xiang, W. (2018). Removal of nutrients and pharmaceuticals and personal care products from wastewater using periphyton photobioreactors. Bioresource Technology, 248, 113-119.
Karaolia, P., Michael-Kordatou, I., Hapeshi, E., Drosou, C., Bertakis, Y., Christofilos, D., … Fatta-Kassinos, D. (2018). Removal of antibiotics, antibiotic-resistant bacteria and their associated genes by graphene-based TiO2 composite photocatalysts under solar radiation in urban wastewaters. Applied Catalysis B: Environmental, 224, 810-824. https://doi.org/10.1016/j.apcatb.2017.11.020
Karunanayake, A. G., Todd, O. A., Crowley, M., Ricchetti, L., Pittman, C. U., Anderson, R., … Mlsna, T. (2018). Lead and cadmium remediation using magnetized and nonmagnetized biochar from douglas fir. Chemical Engineering Journal, 331, 480-491.
Kenny, J. D., Webber, B. D., Howe, E. W., & Holden, R. B. (2018). Pesticide removal through wastewater and advanced treatment: Full-scale sampling and bench-scale testing. Water Science and Technology, 77(3), 739-747. https://doi.org/10.2166/wst.2017.586
Kong, X., Wu, Z., Ren, Z., Guo, K., Hou, S., Hua, Z., … Fang, J. (2018). Degradation of lipid regulators by the UV/chlorine process: Radical mechanisms, chlorine oxide radical (ClO·)-mediated transformation pathways and toxicity changes. Water Research, 137, 242-250. https://doi.org/10.1016/j.watres.2018.03.004
K'oreje, K. O., Kandie, F. J., Vergeynst, L., Abira, M. A., Van Langenhove, H., Okoth, M., & Demeestere, K. (2018). Occurrence, fate and removal of pharmaceuticals, personal care products and pesticides in wastewater stabilization ponds and receiving rivers in the Nzoia Basin, Kenya. Science of the Total Environment, 637, 336-348. https://doi.org/10.1016/j.scitotenv.2018.04.331
Korzeniewska, E., & Harnisz, M. (2018). Relationship between modification of activated sludge wastewater treatment and changes in antibiotic resistance of bacteria. Science of the Total Environment, 639, 304-315.
Krupež, J., Kovačević, V. V., Jović, M., Roglić, G. M., Natić, M. M., Kuraica, M. M., … Dojčinovic, B. P. (2018). Degradation of nicotine in water solutions using a water falling film DBD plasma reactor: Direct and indirect treatment. Journal of Physics D: Applied Physics, 51(17), 174003. https://doi.org/10.1088/1361-6463/aab632
Kyzioł-Komosińska, J., Augustynowicz, J., Lasek, W., Czupioł, J., & Ociński, D. (2018). Callitriche cophocarpa biomass as a potential low-cost biosorbent for trivalent chromium. Journal of Environmental Management, 214, 295-304.
Lacson, C. F. Z., de Luna, M. D. G., Dong, C., Garcia-Segura, S., & Lu, M. C. (2018). Fluidized-bed fenton treatment of imidacloprid: Optimization and degradation pathway. Sustainable Environment Research, 28(6), 309-314. https://doi.org/10.1016/j.serj.2018.09.001
Lares, M., Ncibi, M. C., Sillanpää, M., & Sillanpää, M. (2018). Occurrence, identification and removal of microplastic particles and fibers in conventional activated sludge process and advanced MBR technology. Water Research, 133, 236-246.
Lee, H., & Kim, Y. (2018). Treatment characteristics of microplastics at biological sewage treatment facilities in Korea. Marine Pollution Bulletin, 137, 1-8. https://doi.org/10.1016/j.marpolbul.2018.09.050
Lescano, M. R., Pizzul, L., Castillo, M. P., & Zalazar, C. S. (2018). Glyphosate and aminomethylphosphonic acid degradation in biomixtures based on alfalfa straw, wheat stubble and river waste. Journal of Environmental Management, 228, 451-457.
Li, H., Zhang, S., Yang, X.-L., Xu, H., Yang, Y.-L., Wang, Y.-W., & Song, H.-L. (2018). Simulated wastewater reduced Klebsiella michiganensis strain LH-2 viability and corresponding antibiotic resistance gene abundance in bio-electrochemical reactors. Ecotoxicology and Environmental Safety, 162, 376-382. https://doi.org/10.1016/j.ecoenv.2018.07.018
Li, J., Zhou, Q., & Campos, L. C. (2018). The application of GAC sandwich slow sand filtration to remove pharmaceutical and personal care products. Science of the Total Environment, 635, 1182-1190.
Li, W., Li, Y., Zhang, Z., Ma, W., Liu, L., & Song, W. (2018). An evaluation on the intra-day dynamics, seasonal variations and removal of selected pharmaceuticals and personal care products from urban wastewater treatment plants. Science of the Total Environment, 640, 1139-1147. https://doi.org/10.1016/j.scitotenv.2018.05.362
Li, X., Chen, L., Mei, Q., Dong, B., Dai, X., Ding, G., & Zeng, E. Y. (2018). Microplastics in sewage sludge from the wastewater treatment plants in China. Water Research, 142, 75-85. https://doi.org/10.1016/j.watres.2018.05.034
Li, X., Liu, Y., Zhang, C., Wen, T., Zhuang, L., Wang, X., … Wang, X. (2018). Porous Fe2O3 microcubes derived from metal organic frameworks for efficient elimination of organic pollutants and heavy metal ions. Chemical Engineering Journal, 336, 241-252.
Lin, Y., Tsai, C., & Zheng, N. (2018). Improving the organic and biological fouling resistance and removal of pharmaceutical and personal care products through nanofiltration by using in situ radical graft polymerization. Science of the Total Environment, 635, 543-550. https://doi.org/10.1016/j.scitotenv.2018.04.131
Liu, G., Zhang, Z., Yan, C., Wang, Y., Ma, X., Gao, P., & Feng, Y. (2018). Adsorption of estrone with few-layered boron nitride nanosheets: Kinetics, thermodynamics and mechanism. Chemosphere, 207, 534-542. https://doi.org/10.1016/j.chemosphere.2018.05.129
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Auteurs

Archie Ng (A)

Department of Civil and Environmental Engineering, The University of Auckland, Auckland, New Zealand.

Dilieka Weerakoon (D)

Department of Civil and Environmental Engineering, The University of Auckland, Auckland, New Zealand.

Erin Lim (E)

Department of Civil and Environmental Engineering, The University of Auckland, Auckland, New Zealand.

Lokesh P Padhye (LP)

Department of Civil and Environmental Engineering, The University of Auckland, Auckland, New Zealand.

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