PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Occurrence of antibiotics in the environment

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Występowanie antybiotyków w środowisku
Języki publikacji
EN
Abstrakty
EN
Antibiotics are the most commonly used group of pharmaceuticals used in human and animal treatment. The main sources are hospital and household sewage and waste from animal production. The paper is a review of the literature confirming the prevalence of antibiotics in wastewater influents and effluents, natural waters, sludge and sediments. Studies conducted around the world confirm that there is a risk of antibiotic accumulation in soil and their infiltration to drinking water despite advanced methods of water purification. The concentrations of several substances found in surface water samples exceed the levels considered as safe for the studied aquatic organisms several hundred times, which indicates a real threat to their lives.
PL
Antybiotyki są najczęstszą grupą farmaceutyków stosowanych w leczeniu ludzi i zwierząt. Głównymi źródłami tych leków są ścieki szpitalne, ścieki bytowo-gospodarcze i ścieki z produkcji zwierzęcej. W artykule dokonano przeglądu literatury potwierdzającej powszechną obecność antybiotyków w ściekach doprowadzanych do oczyszczalni, ściekach oczyszczonych, wodach naturalnych oraz osadach ściekowych i dennych. Analizy wykonane na świecie potwierdzają także ryzyko magazynowania się antybiotyków w glebie i przenikania do wody przeznaczonej do picia pomimo zaawansowanych metod uzdatniania. W przypadku kilku substancji, stężenia w wodach powierzchniowych przekraczały kilkaset razy poziomy uznawane za bezpieczne dla badanych organizmów wodnych, co wskazuje na realne zagrożenie dla ich życia.
Słowa kluczowe
Rocznik
Strony
133--143
Opis fizyczny
Bibliogr. 43 poz., wz., tab., il.
Twórcy
autor
  • Institute of Water Supply and Environmental Protection, Faculty of Environmental Engineering, Cracow University of Technology
autor
  • Institute of Water Supply and Environmental Protection, Faculty of Environmental Engineering, Cracow University of Technology
Bibliografia
  • [1] Alidina M., Hoppe-Jones C., Yoon M., Hamadeh A.F., Li D., Drewes J.E., The occurrence of emerging trace organic chemicals in wastewater effluents in Saudi Arabia, Science of the Total Environment, Vol. 478, 2014, 152–162.
  • [2] Balcerzak W., Rezka P., Occurrence of anti-cancer drugs in the aquatic environment and efficiency of their removal – the selected issues, Technical Transactions, vol. 1-Ś/2014, 11–18.
  • [3] Batt A.L., Bruce I.B., Aga D.S., Evaluating the vulnerability of surface waters to antibiotic contamination from varying wastewater treatment plant discharges, Environmental Pollution, Vol. 142, 2006, 295–302.
  • [4] Bergeron S., Boopathy R., Nathaniel R., Corbin A., LaFleur G., Presence of antibiotic resistant bacteria and antibiotic resistance genes in raw source water and treated drinking water, International Biodeterioration& Biodegradation, Vol. 102, 2015, 370–374.
  • [5] Białk-Bielińska A., Kumirska J., Borecka M., Caban M., Paszkiewicz M., Pazdro K., Stepnowski P., Selected analytical challenges in the determination of pharmaceuticals in drinking/marine waters and soil/sediment, Journal of Pharmaceutical and Biomedical Analysis, Vol. 121, 2016, 271–296.
  • [6] Chang X., Meyer M.T., Liu X., Zhao Q., Chen H., Chen J., Qiu Z., Yang L., Cao J., Shu W., Determination of antibiotics in sewage from hospitals, nursery and slaughter house, wastewater treatment plant and source water in Chongqing region of Three Gorge Reservoir in China, Environmental Pollution, Vol. 158, 2010, 1444–1450.
  • [7] Deng W., Li N., Zheng H., Lin H., Occurrence and risk assessment of antibiotics in river water in Hong Kong, Ecotoxicology and Environmental Safety, Vol. 125, 2016, 121–127.
  • [8] Dinh Q.T., Alliot F., Moreau-Guigon E., Eurin J., Chevreuil M., Labadie P., Measurement of trace levels of antibiotics in river water using on-line enrichment and triple-quadrupole LC-MS/MS, Talanta, Vol. 85, 2011, 1238–1245.
  • [9] Dong H., Yuan X., Wang W., Qiang Z., Occurrence and removal of antibiotics in ecological and conventional wastewater treatment processes: A field study, Journal of Environmental Management, Vol. 178, 2016, 11–19.
  • [10] Drugbank database (http://www.drugbank.ca) – online 25.05.2016.
  • [11] Feitosa-Felizzola J., Chiron S., Occurrence and distribution of selected antibiotics in a small Mediterranean stream (Arc River, Southern France), Journal of Hydrology, Vol. 364, 2009, 50–57.
  • [12] Hirsch R., Ternes T., Haberer K., Kratz K.-L., Occurrence of antibiotics in the aquatic environment, Science of the Total Environment, Vol. 225, 1999, 109–118.
  • [13] Homem V., Santos L., Degradation and removal methods of antibiotics from aqueous matrices – A review, Journal of Environmental Management, Vol. 92, 2011, 2304–2347.
  • [14] Jiang L., Hu X., Xu T., Zhang H., Sheng D., Yin D., Prevalence of antibiotic resistance genes and their relationship with antibiotics in the Huangpu River and the drinking water sources, Shanghai, China, Science of the Total Environment, Vol. 458-460, 2013, 267–272.
  • [15] Jiang Y., Li M., Guo C., An D., Xu J., Zhang Y., Xi B., Distribution and ecological risk of antibiotics in a typical effluent-receiving river (Wangyang River) in north China, Chemosphere, Vol. 112, 2014, 267–274.
  • [16] Karthikeyan K.G., Meyer M.T., Occurrence of antibiotics in wastewater treatment facilities in Wisconsin, USA, Science of the Total Environment, Vol. 361, 2006, 196–207.
  • [17] Kemper N., Veterinary antibiotics in the aquatic and terrestrial environment, Ecological Indicators, Vol. 8, 2008, 1–13.
  • [18] Kim Y., Lee K.-B., Choi K., Effect of runoff discharge on the environmental levels of 13 veterinary antibiotics: A case study of Han River and Kyangahn Stream, South Korea, Marine Pollution Bulletin, 2016, in press (http://dx.doi.org/10.1016/j.marpolbul.2016.03.011).
  • [19] Le-Minh N., Khan S.J., Drewes J.E., Stuetz R.M., Fate of antibiotics during municipal water recycling treatment processes, Water Research, Vol. 44, 2010, 4295–4323.
  • [20] Li W.C., Occurrence, sources, and fate of pharmaceuticals in aquatic environment and soil, Environmental Pollution, Vol. 187, 2014, 193–201.
  • [21] Luo Y., Guo W., Ngo H.H., Nghiem L.D., Hai F.I., Zhang J., Liang S., Wang X.C., A review on the occurrence of micropollutants in the aquatic environment and their fate and removal during wastewater treatment, Science of the Total Environment, Vol. 473–475, 2014, 619–641.
  • [22] Matongo S., Birungi G., Moodley B., Ndungu P., Pharmaceutical residues in water and sediment of Msunduzi River, KwaZulu-Natal, South Africa, Chemosphere, Vol. 134, 2015, 133–140.
  • [23] Moreno-Gonzalez R., Rodriguez-Mozaz S., Gros M., Barcelo D., Leon V.M., Seasonal distribution of pharmaceuticals in marine water and sediment from a mediterranean coastal lagoon (SE Spain), Environmental Research, Vol. 138, 2015, 326–344.
  • [24] Papageorgiou M., Kosma C., Lambropoulou D., Seasonal occurrence, removal, mass loading and environmental risk assessment of 55 pharmaceuticals and personal care products in a municipal wastewater treatment plant in Central Greece, Science of the Total Environment, Vol. 543, 2016, 547–569.
  • [25] Rezka P., Balcerzak W., Kryłów M., Occurrence of synthetic and natural estrogenic hormones in the aquatic environment, Technical Transactions, vol. 3-Ś/2015, 47–54.
  • [26] Ronquillo M.G., Hernandez J.C.A., Antibiotic and synthetic growth promoters in animal diets: Review of impact and analytical methods, Food Control, 2016, 1–13, in press (http://dx.doi.org/10.1016/j.foodcont.2016.03.001).
  • [27] Salveson A., Rauch-Williams T., Dickenson E., Drewes J., Drury D., McAvoy D., Snyder S., Trace organic compound indicator removal during conventional wastewater treatment, IWA, Alexandria 2012.
  • [28] Subedi B., Balakrishna K., Sinha R.K., Yamashita N., Balasubramanian V.G., Kannan K., Mass loading and removal of pharmaceutical and personal care products, including psychoactive and illicit drugs and artificial sweeteners, in five sewage treatment plants in India, Journal of Environmental Chemical Engineering, Vol. 3, 2015, 2882–2891.
  • [29] Subedi B., Lee S., Moon H.-B., Kannan K., Emission of artificial sweeteners, select pharmaceuticals, and personal care products through sewage sludge from wastewater treatment plants in Korea, Environment International, Vol. 68, 2014, 33–40.
  • [30] Sui Q., Huang J., Deng S., Yu G., Fan Q., Occurrence and removal of pharmaceuticals, caffeine and DEET in wastewater treatment plants of Beijing, China, Water Research, Vol. 44, 2010, 417–426.
  • [31] Tamtam F., Mercier F., Le Bot B., Eurin Joelle, Dinh Q.T., Clement M.,Chevreuil M., Occurrence and fate of antibiotics in the Seine River in various hydrological conditions, Science of the Total Environment, Vol. 393, 2008, 84–95.
  • [32] Tang J., Shi T., Wu X., Cao H., Li X., Hua R., Tang F., Yue Y., The occurrence and distribution of antibiotics in Lake Chaohu, China: Seasonal variations, potential source and risk assessment, Chemosphere, Vol. 122, 2015, 154–161.
  • [33] Tong L., Huang S., Wang Y., Liu H., Li M., Occurrence of antibiotics in the aquatic environment of Jianghan Plain, central China, Science of the Total Environment, Vol. 497–498, 2014, 180–187.
  • [34] Valcarcel Y., Gonzalez Alonso S., Rodriguez-Gil J.L., Gil A., Catala M., Detection of pharmaceutically active compounds in the rivers and tap water of the Madrid Region (Spain) and potential ecotoxicological risk, Chemosphere, Vol. 84, 2011, 1336–1348.
  • [35] Vazquez-Roig P., Andreu V., Blasco C., Pico Y., Risk assessment on the presence of pharmaceuticals in sediments, soils and waters of the Pego-Oliva Marshlands (Valencia, eastern Spain), Science of the Total Environment, Vol. 440, 2012, 24–32.
  • [36] Vazquez-Roig P., Blasco C., Pico Y., Advances in the analysis of legal and illegal drugs in the aquatic environment, Trends in Analytical Chemistry, Vol. 50, 2013, 65–77.
  • [37] Vazquez-Roig P., Segarra R., Blasco C., Andreu V., Pico Y., Determination of pharmaceuticals in soils and sediments by pressurized liquid extraction and liquid chromatography tandem mass spectrometry, Journal of Chromatography A, Vol. 1217, 2010, 2471–2483.
  • [38] Watkinson A.J., Murby E.J., Kolpin D.W., Constanzo S.D., The occurrence of antibiotics in an urban watershed: From wastewater to drinking water, Science of the Total Environment, Vol. 407, 2009, 2711–2723.
  • [39] Węgrzyn A., Machura M., Żabczyński S., Możliwości usuwania środków cieniujących ze ścieków, Ochrona Środowiska, Vol. 37 (1), 2015, 55–63.
  • [40] Xu L., Ouyang W., Qian Y., Su C., Su J., Chen H., High-throughput profiling of antibiotics resistance genes in drinking water treatment plants and distribution systems, Environmental Pollution, Vol. 213, 2016, 119–126.
  • [41] Zejc A., Gorczyca M., Chemia leków, PZWL, Warsaw 2009.
  • [42] Zhang H., Liu P., Feng Y., Yang F., Fate of antibiotics during wastewater treatment and antibiotic distribution in the effluent receiving waters of the Yellow Sea, northern China, Marine Pollution Bulletin, Vol. 73, 2013, 282–290.
  • [43] Zuccato E., Castiglioni S., Bagnati R., Melis M., Fanelli R., Source, occurrence and fate of antibiotics in the Italian aquatic environment, Journal of Hazardous Materials, Vol. 179, 2010, 1042–1048.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5997e7e6-fbae-4835-a9f9-d0e6b85516ae
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.