REFERENCES

1. Sabater S, Barceló D, De Castro-Català N, et al. Shared effects of organic microcontaminants and environmental stressors on biofilms and invertebrates in impaired rivers. Environ Pollut 2016;210:303-14.

2. Vörösmarty CJ, McIntyre PB, Gessner MO, et al. Global threats to human water security and river biodiversity. Nature 2010;467:555-61.

3. Malaj E, von der Ohe PC, Grote M, et al. Organic chemicals jeopardize the health of freshwater ecosystems on the continental scale. Proc Natl Acad Sci U S A 2014;111:9549-54.

4. O’Grady J, Zhang D, O’Connor N, Regan F. A comprehensive review of catchment water quality monitoring using a tiered framework of integrated sensing technologies. Sci Total Environ 2021;765:142766.

5. Johnson AC, Ternes T, Williams RJ, Sumpter JP. Assessing the concentrations of polar organic microcontaminants from point sources in the aquatic environment: measure or model? Environ Sci Technol 2008;42:5390-9.

6. Pistocchi A, Marinov D, Pontes S, Gawlik BM. Continental scale inverse modeling of common organic water contaminants in European rivers. Environ Pollut 2012;162:159-67.

7. Feijtel T, Boeije G, Matthies M, et al. Development of a geography-referenced regional exposure assessment tool for European rivers - great-er contribution to great-er #1. Chemosphere 1997;34:2351-73.

8. Schowanek D, Webb S. Exposure simulation for pharmaceuticals in European surface waters with GREAT-ER. Toxicol Lett 2002;131:39-50.

9. Anderson PD, D’Aco VJ, Shanahan P, et al. Screening analysis of human pharmaceutical compounds in U.S. surface waters. Environ Sci Technol 2004;38:838-49.

10. Keller V, Young AR. Development of the Integrated Water Resources and Water Quality Modelling System, Science Report P2-248/SR. The Environmental Agency, Bristol, UK, 2004.

11. Johnson AC, Keller V, Williams RJ, Young A. A practical demonstration in modelling diclofenac and propranolol river water concentrations using a GIS hydrology model in a rural UK catchment. Environ Pollut 2007;146:155-65.

12. Ciffroy P, Tediosi A, Capri E (Eds. ). Modelling the fate of Chemicals in the Environment and the Human Body. The Handbook of Environmental Chemistry, Vol 57. Springer Int. Publ. Switzerland; 2018. Available from: https://link.springer.com/book/10.1007/978-3-319-59502-3 [Last accessed on 13 Jul 2022].

13. Pistocchi A, Sarigiannis DA, Vizcaino P. Spatially explicit multimedia fate models for pollutants in Europe: state of the art and perspectives. Sci Total Environ 2010;408:3817-30.

14. Osorio V, Marcé R, Pérez S, Ginebreda A, Cortina JL, Barceló D. Occurrence and modeling of pharmaceuticals on a sewage-impacted Mediterranean river and their dynamics under different hydrological conditions. Sci Total Environ 2012;440:3-13.

15. Lindim C, van Gils J, Cousins IT. A large-scale model for simulating the fate & transport of organic contaminants in river basins. Chemosphere 2016;144:803-10.

16. Acuña V, Bregoli F, Font C, et al. Management actions to mitigate the occurrence of pharmaceuticals in river networks in a global change context. Environ Int 2020;143:105993.

17. Banjac Z, Ginebreda A, Kuzmanovic M, et al. Emission factor estimation of ca. 160 emerging organic microcontaminants by inverse modeling in a Mediterranean river basin (Llobregat, NE Spain). Sci Total Environ 2015;520:241-52.

18. Kunkel U, Radke M. Reactive tracer test to evaluate the fate of pharmaceuticals in rivers. Environ Sci Technol 2011;45:6296-302.

19. Kunkel U, Radke M. Fate of pharmaceuticals in rivers: deriving a benchmark dataset at favorable attenuation conditions. Water Res 2012;46:5551-65.

20. Acuña V, von Schiller D, García-Galán MJ, et al. Occurrence and in-stream attenuation of wastewater-derived pharmaceuticals in Iberian rivers. Sci Total Environ 2015;503-504:133-41.

21. Ginebreda A, Sabater-Liesa L, Rico A, Focks A, Barceló D. Reconciling monitoring and modeling: an appraisal of river monitoring networks based on a spatial autocorrelation approach - emerging pollutants in the Danube River as a case study. Sci Total Environ 2018;618:323-35.

22. Ort C, Hollender J, Schaerer M, Siegrist H. Model-based evaluation of reduction strategies for micropollutants from wastewater treatment plants in complex river networks. Environ Sci Technol 2009;43:3214-20.

23. Sabater-Liesa L, Ginebreda A, Barceló D. Shifts of environmental and phytoplankton variables in a regulated river: a spatial-driven analysis. Sci Total Environ 2018;642:968-78.

24. Mainali J, Chang H, Chun Y. A review of spatial statistical approaches to modeling water quality. Prog Phys Geogr 2019;43:801-26.

25. Rashid A, Amin M, Li Y, et al. Reconciliation of spatiotemporal influences on two-dimensional distribution and fate of emerging contaminants in a subtropical river. ACS EST Water 2021;1:2305-17.

26. Sebestyén V, Czvetkó T, Abonyi J. Network-based topological exploration of the impact of pollution sources on surface water bodies. Front Environ Sci 2022;9:723997.

27. Zhang Y, Rashid A, Guo S, et al. Spatial autocorrelation and temporal variation of contaminants of emerging concern in a typical urbanizing river. Water Res 2022;212:118120.

28. Aida M, Takano C, Murata M. Oscillation model for describing network dynamics caused by asymmetric node interaction. IEICE Trans Commun 2018;E101.B:123-36.

29. Aida M, Takano C, Ogura M. On the fundamental equation of user dynamics and the structure of online social networks. In: Masuda N, Goh K, Jia T, Yamanoi J, Sayama H, editors. Proceedings of NetSci-X 2020: Sixth International Winter School and Conference on Network Science. Cham: Springer International Publishing; 2020. pp. 155-70.

30. Navarro-Ortega A, Acuña V, Batalla RJ, et al. Assessing and forecasting the impacts of global change on Mediterranean rivers. The SCARCE Consolider project on Iberian basins. Environ Sci Pollut Res Int 2012;19:918-33.

31. Eljarrat E, Barceló D. Occurrence and behavior of brominated flame retardants in the llobregat river basin. In: Sabater S, Ginebreda A, Barceló D, editors. The Llobregat. Berlin: Springer Berlin Heidelberg; 2012. pp. 135-50.

32. Masiá A, Campo J, Navarro-Ortega A, Barceló D, Picó Y. Pesticide monitoring in the basin of Llobregat River (Catalonia, Spain) and comparison with historical data. Sci Total Environ 2015;503-504:58-68.

33. Osorio V, Larrañaga A, Aceña J, Pérez S, Barceló D. Concentration and risk of pharmaceuticals in freshwater systems are related to the population density and the livestock units in Iberian Rivers. Sci Total Environ 2016;540:267-77.

34. Gorga M, Petrovic M, Barceló D. Multi-residue analytical method for the determination of endocrine disruptors and related compounds in river and waste water using dual column liquid chromatography switching system coupled to mass spectrometry. J Chromatogr A 2013;1295:57-66.

35. Llorca M, Farré M, Picó Y, Müller J, Knepper TP, Barceló D. Analysis of perfluoroalkyl substances in waters from Germany and Spain. Sci Total Environ 2012;431:139-50.

36. Onghena M, Moliner-Martinez Y, Picó Y, Campíns-Falcó P, Barceló D. Analysis of 18 perfluorinated compounds in river waters: comparison of high performance liquid chromatography-tandem mass spectrometry, ultra-high-performance liquid chromatography-tandem mass spectrometry and capillary liquid chromatography-mass spectrometry. J Chromatogr A 2012;1244:88-97.

37. Mastroianni N, Bleda MJ, López de Alda M, Barceló D. Occurrence of drugs of abuse in surface water from four Spanish river basins: spatial and temporal variations and environmental risk assessment. J Hazard Mater 2016;316:134-42.

38. Kuzmanović M, Ginebreda A, Petrović M, Barceló D. Risk assessment based prioritization of 200 organic micropollutants in 4 Iberian rivers. Sci Total Environ 2015;503-504:289-99.

39. Kuzmanović M, López-Doval JC, De Castro-Català N, et al. Ecotoxicological risk assessment of chemical pollution in four Iberian river basins and its relationship with the aquatic macroinvertebrate community status. Sci Total Environ 2016;540:324-33.

40. Ponsatí L, Corcoll N, Petrović M, et al. Multiple-stressor effects on river biofilms under different hydrological conditions. Freshw Biol 2016;61:2102-15.

41. Kuzmanovic M, Dolédec S, de Castro-Catala N, et al. Environmental stressors as a driver of the trait composition of benthic macroinvertebrate assemblages in polluted Iberian rivers. Environ Res 2017;156:485-93.

42. Acuña V, Datry T, Marshall J, et al. Conservation. Why should we care about temporary waterways? Science 2014;343:1080-1.

43. Geary RC. The contiguity ratio and statistical mapping. The Incorporated Statistician 1954;5:115.

44. Yamada H. Geary’s c and spectral graph theory. Mathematics 2021;9:2465.

Water Emerging Contaminants & Nanoplastics
ISSN 2831-2597 (Online)

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/