Changes in water quality of treated sewage effluents by their receiving environments in Tablas de Daimiel National Park, Spain
详细信息    查看全文
  • 作者:David Sanchez-Ramos ; Gema Sánchez-Emeterio…
  • 关键词:Wastewater ; Treatment plants ; Self ; purification ; Water quality ; Receiving waters ; Biosphere reserve ; Floodplain wetlands
  • 刊名:Environmental Science and Pollution Research
  • 出版年:2016
  • 出版时间:April 2016
  • 年:2016
  • 卷:23
  • 期:7
  • 页码:6082-6090
  • 全文大小:416 KB
  • 参考文献:Acreman M, Almagro J, Alvarez J, Bouraoui F, Bradford R, Bromley J, Croke B, Crooks S, Cruces J, Dolz J, Dunbar M, Estrela T, Fernandez-Carrasco P, Fornes J, Gustard G, Haverkamp R, De La Hera A, Hernández-Mora N, Llamas R, Martinez CL, Papamasorakis J, Ragab R, Sánchez M, Vardavas I, Webb T (2000) Groundwater and river resources programme on a European scale (GRAPES). Technical report to the European Union ENV4–CT95-0186. Institute of Hydrology, Wallingford
    Ahearn DS, Sheibley RW, Dahlgren RA, Anderson M, Johnson J, Tate KW (2005) Land use and land cover influence on water quality in the last free-flowing river draining the western Sierra Nevada, California. J Hydrol 312:234–247CrossRef
    Alvarez-Cobelas M, Sánchez-Carrillo S, Rubio-Olmo A, Cirujano-Bracamonte S (2011) Effects of waste water on freshwaters in semiarid regions. In: García Einschlag FS (ed) Waste water evaluation and management. InTech, Rijeka, pp 219–238
    Andersen CB, Lewis GP, Sargent KA, Sarkar D (2004) Influence of wastewater-treatment effluent on concentrations and fluxes of solutes in the Bush River, South Carolina, during extreme drought conditions. Environ Geosci 11:28–41CrossRef
    Anza I, Vidal MD, Laguna C, Díaz-Sánchez S, Sánchez S, Chicote A, Florín M, Mateo R (2014) Risk factors for avian botulism outbreaks in wetlands receiving effluents from urban wastewater treatment plants: eutrophication and bacterial pathogens. Appl Environ Microbiol. doi:10.​1128/​AEM.​00949-14
    APHA/AWWA/WEF (1998) Standard methods for the examination of water and wastewater, 20th edn. American Public Health Association, Washington
    Camps C, Gil-Delgado JA, Camacho A, Florín M (2014) Threats and opportunities of wastewater in the Mancha Húmeda Biosphere Reserve. In: IV Jornadas Doctorales de la Universidad de Castilla-La Mancha. Aprendiendo a Descubrir. Cuenca (Spain), October 7, 2014 (in Spanish)
    Carey RO, Migliaccio KW (2009) Contribution of wastewater treatment plants effluents to nutrient dynamics in aquatic systems: a review. Environ Manag 44:205–217CrossRef
    Chen Y, Wang C, Wang Z (2005) Residues and source identification of persistent organic pollutants in farmland soils irrigated by effluents from biological treatment plants. Environ Int 31(6):778–783CrossRef
    Coronado R, Del Portillo F, Sáez-Royuela R (1974) Tablas de Daimiel National Park Guide. ICONA, Madrid
    Cots F, David Tàbara J, Werners S, McEvoy D (2007) Climate change and water adaptive management through transboundary cooperation. The case of the Guadiana river basin. Paper presented to the first International Conference on Adaptive and Integrative Water Management (CAIWA), Basel, Switzerland, November 2007
    Directive 91/271/CEE (1991) Concerning the treatment of urban waste water. J Off Commun Eur L135:40–52
    Gajewska M, Jóźwiakowski K, Ghrabi A, Masi F (2014) Impact of influent wastewater quality on nitrogen removal rates in multistage treatment wetlands. Environ Sci Pollut Res 21:1–9CrossRef
    Gatica J, Cytryn E (2013) Impact of treated wastewater irrigation on antibiotic resistance in the soil microbiome. Environ Sci Pollut Res 20(6):3529–3538CrossRef
    Gücker B, Brauns M, Pusch MT (2006) Effects of wastewater treatment plant discharge on ecosystem structure and function of lowland streams. J N Am Benthol Soc 25(2):313–329CrossRef
    INE (2014) Spanish Statistical Office. http://​www.​ine.​es/​inebmenu/​mnu_​cifraspob.​htm Accessed 10 Jan 2015
    Jarvie HP, Lycett E, Neal C, Love A (2002) Patterns in nutrient concentrations and biological quality indices across the upper Thames basin, UK. Sci Total Environ 282(283):263–294CrossRef
    Kadlec RH, Wallace S (2009) Treatment wetlands, 2nd edition. Taylor & Francis Group, Boca Raton
    Marti E, Aumatell J, Gode L, Poch M, Sabater F (2004) Nutrient retention efficiency in streams receiving inputs from wastewater treatment plants. J Environ Qual 33(1):285–293CrossRef
    Moreno P (2006) Water quality and availability diagnosis in the watershed Córrego Água da Bomba in Regente Feijó municipality, São Paulo. Dissertation, Universidade Estadual Paulista (in Portuguese)
    Murdock J, Roelke D, Gelwick F (2004) Interactions between flow, periphyton, and nutrients in a heavily impacted urban stream: implications for stream restoration effectiveness. Ecol Eng 22:197–207CrossRef
    Navarro V, García B, Sánchez D, Asensio L (2011) An evaluation of the application of treated sewage effluents in Las Tablas de Daimiel National Park, Central Spain. J Hydrol 401:53–64CrossRef
    Neal C, Jarvie HP, Williams RJ, Neal M, Wickham H, Hill L (2002) Phosphorus-calcium carbonate saturation relationships in a lowland chalk river impacted by sewage inputs and phosphorus remediation: an assessment of phos-phorus self-cleansing mechanisms in natural waters. Sci Total Environ 282(283):295–310CrossRef
    Phung M, Pham T, Castle J, Rodgers J Jr (2011) Application of water quality guidelines and water quantity calculations to decisions for beneficial use of treated water. Appl Water Sci 1:85CrossRef
    Rogers HR (1996) Sources, behaviour and fate of organic contaminants during sewage treatment and in sewage sludges. Sci Total Environ 185(1):3–26CrossRef
    Sánchez-Carrillo S, Angeler DG, Cirujano S, Álvarez-Cobelas M (2010) In: Sánchez-Carrillo S, Angeler DG (eds) Ecology of threatened semi-arid wetlands. Springer Science Business Media, Madrid-Sweden, pp 3–19CrossRef
    Sanchez-Ramos D (2013) Design and modeling of wetlands for effluents treatment from wastewater. Application to the environment of the Tablas de Daimiel National Park. Dissertation, University of Castilla-La Mancha (in Spanish)
    Tal A (2006) Seeking sustainability: Israel’s evolving water management strategies. Science 313:1081CrossRef
    Vidal D, Anza I, Taggart MA, Pérez-Ramírez E, Crespo E, Hofle U, Mateo R (2013) Environmental factors influencing the prevalence of a Clostridium botulinum type C/D mosaic strain in nonpermanent Mediterranean wetlands. Appl Environ Microbiol 79(14):4264–4271CrossRef
    Yustres A, Navarro V, Asensio L, Candel M, García B (2013) Groundwater resources in the Upper Guadiana Basin (Spain): a regional modelling analysis. Hydrogeol J 21(5):1129–1146CrossRef
    Zhang J, Hu F, Li H, Gao Q, Song X, Ke X, Wang L (2011) Effects of earthworm activity on humus composition and humic acid characteristics of soil in a maize residue amended rice–wheat rotation agroecosystem. Appl Soil Ecol 51:1–8CrossRef
  • 作者单位:David Sanchez-Ramos (1)
    Gema Sánchez-Emeterio (1)
    Máximo Florín Beltrán (1)

    1. Research Group on Hydroecology, School of Civil Engineering, University of Castilla-La Mancha, Edificio Politécnico, Avd. Camilo José Cela s/n, 13071, Ciudad Real, Spain
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Environment
    Environment
    Atmospheric Protection, Air Quality Control and Air Pollution
    Waste Water Technology, Water Pollution Control, Water Management and Aquatic Pollution
    Industrial Pollution Prevention
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1614-7499
文摘
The Tablas de Daimiel National Park (TDNP), a floodplain wetland located in the Upper Guadiana Basin (central Spain), receives pollution from wastewater treatment plants (WWTPs) discharging their treated sewage effluents (TSEs) to tributary channels to the wetland. The TSEs suffer transformations on their way to the TDNP, but the water quality is controlled only at the point of discharge. In this work, we analyse the change in water quality of the TSE from four urban WWTPs in the surroundings of the TDNP (Alcázar de San Juan, Daimiel, Manzanares and Villarrubia de los Ojos towns). The water samples were taken at the outlet of the plants and in the receiving environments, to analyse the water quality transformation of the TSE. The different discharge configurations of each WWTP have been related with the water quality transformation of their TSE, to interpret the influence of the hydro-geomorphology in the improvement or deterioration of the water quality of TSE. We found that the discharge of TSE into slow flow channels with macrophyte vegetation facilitates water self-purification but, with time, the accumulation of sludge in the beds of the effluents tends to be the cause of the deterioration of the water quality.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700