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Tytuł artykułu

Protection of water resources in recreational areas in urban space

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Access to recreational areas is particularly important in the context of improving the quality of life in cities. One of the valuable elements of such areas may be water reservoirs and their accompanying springs. An example of such a recreational area is the so-called Palowice Lake District (southern Poland), which includes three water reservoirs, ten breeding ponds and two springs from which water is taken. Water from the springs is considered to be of very good quality and is regularly consumed by residents of nearby towns as well as tourists. The quality of these waters is influenced by natural factors such as weathering of rocks, evapotranspiration, atmospheric deposition, climate change, but also by anthropogenic factors such as industrial effluents, domestic activities, tourist traffic and agricultural activities. However, the results of research conducted in the area of the springs indicate the presence of E. coli and enterococci in the water. The latter are characterized by longer survival in water. Consuming such water may lead to the development of numerous digestive system diseases, hence the issue of protecting water resources in urbanized areas, including conducting representative monitoring of the quality of these waters, is extremely important.
Słowa kluczowe
Rocznik
Tom
Strony
51--60
Opis fizyczny
Bibliogr. 43 poz., fot., mapa, tab., wykr.
Twórcy
autor
  • University of Silesia, Faculty of Natural Sciences, Sosnowiec, Poland
  • University of Silesia, Faculty of Natural Sciences, Sosnowiec, Poland
  • University of Silesia, Faculty of Natural Sciences, Sosnowiec, Poland
Bibliografia
  • 1. Tonne C, Linda A, Deepti A, Isabelle A, Kristine B, Maximilian B, Christa B, et al. Defining pathways to healthy sustainable urban development. Environment International 2021; 146:106236, DOI 10.1016/j.envint.2020.106236;
  • 2. Donghwan K, Lee S. Analyzing the effects of Green View Index of neighborhood streets on walking time using Google Street View and deep learning. Landscape and Urban Planning 2021; 205:103920, DOI 10.1016/j.landurbplan.2020.103920;
  • 3. Rainer G. Producing Nature for Tourism: A Political Ecology Angle. Annals of Tourism Research 2018; 71:62–63, DOI 10.1016/j.annals.2018.01.004;
  • 4. Collins RM, Spake R, Brown KA, Ogutu BO, Smith D, Eigenbrod F. A Systematic Map of Research Exploring the Effect of Greenspace on Mental Health. Landscape and Urban Planning 2020; 201:103823, DOI 10.1016/j.landurbplan.2020.103823;
  • 5. Zhicheng Z, Shen W, Li Y, Qin Y, Wang L. Spatial Equity of Park Green Space Using KD2SFCA and Web Map API: A Case Study of Zhengzhou, China. Applied Geography 2020; 123:102310, DOI 10.1016/j.apgeog.2020.102310;
  • 6. Šourková M, Adamcová D, Zloch J, Skutnik Z, Vaverková MD. Evaluation of the Phytotoxicity of Leachate from a Municipal Solid Waste Landfill: The Case Study of Bukov Landfill. Environments 2020; 7(12):111, DOI 10.3390/environments7120111;
  • 7. Al-Ghouti MA, Khan M, Nasser MS, Al-Saad K, Heng OE. Recent Advances and Applications of Municipal Solid Wastes Bottom and Fly Ashes: Insights into Sustainable Management and Conservation of Resources. Environmental Technology & Innovation 2021; 21:101267, DOI 10.1016/j.eti.2020.101267;
  • 8. Abubakar IR, Maniruzzaman KM, Dano UL, AlShihri FS, AlShammari MS, Ahmed SMS, Al-Gehlani WA, Alrawaf TI. Environmental Sustainability Impacts of Solid Waste Management Practices in the Global South. International Journal of Environmental Research and Public Health 2020; 19(19):12717, DOI 10.3390/ijerph191912717;
  • 9. Cirrincione L, Gennusa ML, Peri G, Rizzo G, Scaccianoce G. The Landfilling of Municipal Solid Waste and the Sustainability of the Related Transportation Activities. Sustainability 2022; 14(9):5272, DOI 10.3390/su14095272;
  • 10. Owamah IH, Asiagwu AK, Egboh SHO, Phil-Usiayo S. Drinking Water Quality at Isoko North Communities of the Niger Delta Region, Nigeria. Toxicological & Environmental Chemistry 2013; 95(7): 1116–1128, DOI 10.1080/02772248.2013.847939;
  • 11. McDonald RI, Weber K, Padowski J, Flörke M, Schneider C, Green PA, Gleeson T, et al. Water on an Urban Planet: Urbanization and the Reach of Urban Water Infrastructure. Global Environmental Change 2014; 27:96–105, DOI 10.1016/j.gloenvcha.2014.04.022;
  • 12. Du L, Peng X, Zhao Y, Lyu J, Pan M. From Nature-Based to Engineering-Based: The Interaction Process and Turning Point of the City-Water System Relationship in the North China Plain. Applied Geography 2021; 135:102556, DOI 10.1016/j.apgeog.2021.102556;
  • 13. Fitoka E, Tompoulidou M, Hatziiordanou L, Apostolakis A, Höfer R, Weise K, Ververis C. Water-related ecosystems' mapping and assessment based on remote sensing techniques and geospatial analysis: The SWOS national service case of the Greek Ramsar sites and their catchments. Remote Sensing of Environment 2020; 245:111795, DOI 10.1016/j.rse.2020.111795;
  • 14. Backes JG, Traverso M. Life cycle sustainability assessment as a metrics towards SDGs agenda 2030. Current Opinion in Green and Sustainable Chemistry 2022; 38:100683, DOI 10.1016/j.cogsc.2022.100683;
  • 15. Zhao Y, Wang Y, Wang Y. Comprehensive Evaluation and Influencing Factors of Urban Agglomeration Water Resources Carrying Capacity. Journal of Cleaner Production 2021; 288:125097, DOI 10.1016/j.jclepro.2020.125097;
  • 16. Malakar K, Lu C. Measuring sustainability as distance to ideal position of economy, society and environment: Application to China's provincial water resources (2004–17). Journal of Environmental Management 2021; 292:112742, DOI 10.1016/j.jenvman.2021.112742;
  • 17. Liu H, Xia J, Zou L, Huo R. Comprehensive quantitative evaluation of the water resource carrying capacity in Wuhan City based on the “human–water–city” framework: Past, present and future. Journal of Cleaner Production 2022; 366:132847, DOI 10.1016/j.jclepro.2022.132847;
  • 18. Jokiel P. Springs, their role in the environment and importance in water management. Folia Geographica 1997; 2:5–7;
  • 19. Sari MM, Andarani P, Notodarmojo S, Harryes RK, Nguyen MN, Yokota K, Inoue T. Plastic Pollution in the Surface Water in Jakarta, Indonesia. Marine Pollution Bulletin 2022; 182:114023, DOI 10.1016/j.marpolbul.2022.114023;
  • 20. Keeler BL, Polasky S, Brauman KA, Johnson KA, Finlay JC, O’Neill A, Kovacs K, Dalzell B. Linking water quality and well-being for improved assessment and valuation of ecosystem services. Proceedings of the National Academy of Sciences 2012; 109(45):18619–18624, DOI 10.1073/pnas.1215991109;
  • 21. Pokładek R, Kowalczyk T, Orzepowski W, Pulikowski K. Na, K, Ca and Mg concentrations in effluent water drained from agricultural catchment basins in Lower Silesia. Journal of Elementology 2011; 16(3):467-479, DOI 10.5601/jelem.2011.16.3.11;
  • 22. Chen Z, Auler AS, Bakalowicz M, Drew D, Griger F, Hartmann J, Jiang G, et al. The World Karst Aquifer Mapping project: concept, mapping procedure and map of Europe. Hydrogeology Journal 2017; 25(3): 771–785, DOI 10.1007/s10040-016-1519-3;
  • 23. Nitasha K, Tyagi S. Influences of Natural and Anthropogenic Factors on Surface and Groundwater Quality in Rural and Urban Areas. Frontiers in Life Science 2014; 8(1):23–39, DOI 10.1080/21553769.2014.933716;
  • 24. Grimalt JO, Fernandez P, Berdie L, Vilanova RM, Catalan J, Psenner R, Hofer R, et al. Selective Trapping of Organochlorine Compounds in Mountain Lakes of Temperate Areas. Environmental Science & Technology 2001; 35(13):2690–2697, DOI 10.1021/es000278r;
  • 25. Gothwal R, Shashidhar T. Antibiotic Pollution in the Environment: A Review. CLEAN – Soil, Air, Water 2014; 43(4):479–489, DOI 10.1002/clen.201300989;
  • 26. Kumar R, Sharma P, Manna C, Jain M. Abundance, Interaction, Ingestion, Ecological Concerns, and Mitigation Policies of Microplastic Pollution in Riverine Ecosystem: A Review. Science of The Total Environment 2021; 782:146695, DOI 10.1016/j.scitotenv.2021.146695;
  • 27. Muter O, Bartkevics V. Advanced analytical techniques based on high-resolution mass spectrometry for the detection of micropollutants and their toxicity in aquatic environments. Current Opinion in Environmental Science & Health 2020; 18:1–6, DOI 10.1016/j.coesh.2020.05.002;
  • 28. Chartres N, Bero LA, Norris SL. A Review of Methods Used for Hazard Identification and Risk Assessment of Environmental Hazards. Environment International 2019; 123:231–239, DOI 10.1016/j.envint.2018.11.060;
  • 29. Sumdang N, Chotpantarat S, Cho KH, Thanh NN. The risk assessment of arsenic contamination in the urbanized coastal aquifer of Rayong groundwater basin, Thailand using the machine learning approach. Ecotoxicology and Environmental Safety 2023; 253:114665, DOI 10.1016/j.ecoenv.2023.114665;
  • 30. Chegbeleh LP, Akurugu BA, Yidana SM. Assessment of Groundwater Quality in the Talensi District, Northern Ghana. The Scientific World Journal 2020; 4:1–24, DOI 10.1155/2020/8450860;
  • 31. Kondracki J. Geografia Regionalna Polski. Warszawa: Wydawnictwo Naukowe PWN; 2000;
  • 32. Labus K. Chemistry and origin of mine waters in the southwestern part of Upper Silesia Coal Basin. Kraków: Wydawnictwo Instytutu Gospodarki Surowcami Mineralnymi i Energią PAN; 2003;
  • 33. Różkowski A. Map of the conditions of occurrence, use, threat and protection of ordinary underground waters of the Upper Silesian Coal Basin and its periphery; 1: 100,000. Warsaw: Polish Geological Institute; 1997;
  • 34. Patel DD, Mehta DJ, Azamathulla HM, Shaikh MM, Jha S, Rathnayake U. Application of the Weighted Arithmetic Water Quality Index in Assessing Groundwater Quality: A Case Study of the South Gujarat Region. Water 2023; 15(19):3512, DOI 10.3390/w15193512;
  • 35. Guidelines for drinking-water quality: Fourth edition incorporating the first and second addenda [Internet]. Geneva: World Health Organization 2022; PMID: 35417116;
  • 36. Thelemann M, Bebermeier W, Hoelzmann P, Lehnhardt E. Bog iron ore as a resource for prehistoric iron production in Central Europe — A case study of the Widawa catchment area in eastern Silesia, Poland. CATENA 2017; 149:474–490, DOI 10.1016/j.catena.2016.04.002;
  • 37. Bouchard M, Laforest F, Vandelac L, Bellinger D, Mergler D. Hair Manganese and Hyperactive Behaviors: Pilot Study of School-Age Children Exposed through Tap Water. Environmental Health Perspectives 2007; 115(1):122–27, DOI 10.1289/ehp.9504;
  • 38. Bisutti I, Hilke I, Raessler M. Determination of Total Organic Carbon – an Overview of Current Methods. TrAC Trends in Analytical Chemistry 2004; 23(10–11):716–26, DOI 10.1016/j.trac.2004.09.003;
  • 39. Mukherjee S, Ashfaq M, Mishra AK. Compound Drought and Heatwaves at a Global Scale: The Role of Natural Climate Variability-Associated Synoptic Patterns and Land-Surface Energy Budget Anomalies. Journal of Geophysical Research: Atmospheres 2020; 125(11), DOI 10.1029/2019jd031943;
  • 40. Satyam, Mukherjee P. Implications of Progressive Data Transfer Technologies for IOT-Based Wastewater Management in Smart Cities. Applications of 5G and Beyond in Smart Cities 2023; 129–142, DOI 10.1201/9781003227861-8;
  • 41. Prados-Garzon J, Ameigeiras P, Ordonez-Lucena J, Munoz P, Adamuz-Hinojosa O, Camps-Mur D. 5G Non-Public Networks: Standardization, Architectures and Challenges. IEEE Access 2021; 9:153893–153908, DOI 10.1109/access.2021.3127482;
  • 42. Hamidi-Sepehr F, Sajadieh M, Panteleev S, Islam T, Karls I, Chatterjee D, Ansari J. 5G URLLC: Evolution of High-Performance Wireless Networking for Industrial Automation. IEEE Communications Standards Magazine 2021; 5(2):132–40, DOI 10.1109/mcomstd.001.2000035;
  • 43. Boer J, Dieperink C, Mukhtarov F. Social Learning in Multilevel Flood Risk Governance: Lessons from the Dutch Room for the River Program. Water 2019; 11(10):2032, DOI 10.3390/w11102032.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b94c548f-ff04-4522-bc40-8e7220c156c5
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