215
Views
3
CrossRef citations to date
0
Altmetric
Original Articles

Treatment of Balili River in Benguet, Philippines with constructed wetland planted with dominant local macrophytes

&

References

  • Akratos CS, Tsihrintzis VA. 2007. Effect of temperature, HRT, vegetation and porous media on removal efficiency of pilot-scale horizontal subsurface flow constructed wetlands. Ecol Eng. 29(2):173–191. doi:10.1016/j.ecoleng.2006.06.013.
  • Bai S, Lv T, Ding Y, Li X, You S, Xie Q, Brix H. 2016. Multilayer substrate configuration enhances removal efficiency of pollutants in constructed wetlands. Water. 8(12):556. doi:10.3390/w8120556.
  • Bose S, Vedamati J, Rai VA, Ramanathan L. 2008. Metal uptake and transport by Typha angustataL. grown on metal contaminated waste amended soil: an implication of phytoremediation. Geoderma. 145(1–2):136–142. doi:10.1016/j.geoderma.2008.03.009.
  • Chavan BL, Dhulap VP. 2012a. Optimization of pollutant concentration in sewage treatment using constructed wetland through phytoremediation. Int J Adv Res Eng Appl Sci. 1(6):1–16.
  • Chavan BL, Dhulap VP. 2012b. Treatment of sewage through phytotechnological studies with constructed wetland using Eichhornia crassipes. J Environ Res Dev. 7(2):660–667.
  • Chavan BL, Dhulap VP. 2013. Developing a pilot scale angular horizontal subsurface flow constructed wetland for treatment of sewage through phytoremediation with Colocasiaesculenta. Int Res J Environ Sci. 2(2):6–14.
  • Coppini E, Masi F. 2006. Pilot-scale constructed wetlands (horizontal subsurface flow and free water system) for tertiary treatment in a textile wastewater treatment plant. IWA Specialist Group on Use of Macrophytes in Water Pollut Control: Newslet. 31:24–30.
  • Curia, AC, Koppe, JC, Costa, JFCL, Féris, LA, Gerber, WD. 2011. Application of pilot-scale-constructed wetland as tertiary treatment system of wastewater for phosphorus and nitrogen removal. Water Air Soil Pollut. 218(1-4):131–143. doi:10.1007/s11270-010-0629-0.
  • Dahab MF, Surampalli RY, Liu W. 2001. Performance modeling of subsurface-flow constructed wetlands systems. Water Sci Technol. 44(11–12):231–235. doi:10.2166/wst.2001.0834.
  • DENR Administrative Order No. 2016-08 [DAO 2016-08]. Water Quality Guidelines and Effluent Standards of 2016.
  • Environmental Management Bureau [EMB-CAR]. Water Quality Monitoring Report of Balili River 2013–2016.
  • Environmental Protection Agency [EPA]. 2000. Introduction to phytoremediation. Washington: U.S. Environmental Protection Agency. EPA/600/R-99/107.
  • Glimmerveen I. 1996. Heavy metals and trees. Edinburgh: Institute of Chartered Foresters.
  • Hoddinott BC. 2006. Horizontal subsurface flow constructed wetlands for on-site wastewater treatment [accessed on 2015 May 11]. www.loganhealth.org/assets/HSSFCWs.pdf.
  • Maltby E, Barker T. 2009. The Wetlands Handbook. Oxford: Wiley-Blackwell Publishing.
  • Mitsch WJ, Gosselink JG. 2000. Wetlands. 3rd ed. New York: Wiley.
  • Mwegoha WS. 2008. The use of phytoremediation technology for abatement soil and groundwater pollution in Tanzania: opportunities and challenges. J Sustain Dev Afr. 10(1):140–156.
  • Napaldet JT, Buot IE. Jr. In press. History, hydrology and ecology of Balili River, La Trinidad, Philippines. J Wetlands Biodivers.
  • Nelson M, Cattin F, Rajendran M, Hafouda L. 2008. Value-adding through creation of high diversity gardens and ecospaces in subsurface flow constructed wetlands: case studies in Algeria and Australia of Wastewater Gardens systems. Vol. 1. In Billore S, Dass P, Vymazal J, editors. Proceedings of 11th International Conference on Wetland Systems for Water Pollution Control.. Ujjain: Institute of Environmental Management and Plant Sciences, Vikram University. p. 344–356.
  • Panrare A, Tondee T, Sohsalam P. 2016. Effects of plant density in constructed wetland on domestic wastewater treating efficiency. Int J Appl Phys Sci. 2(1):7–12.
  • Paz-Alberto AM, Sigua GC. 2013. Phytoremediation: a green technology to remove environmental pollutants. AJCC. 02(01):71–86. doi:10.4236/ajcc.2013.21008.
  • Platzer C. 1996. Enhanced nitrogen elimination in subsurface flow artificial wetlands – a multi stage concept. In Proceedings of 5th International Conference on Wetland Systems for Water Pollution Control, Chapter I/7, Universität für Bodenkultur, Vienna
  • Quinonez-Diaz MJ, Karpiscak MM, Ellman ED, Gerba CP. 2001. Removal of pathogenic and indicator microorganisms by a constructed wetland receiving untreated domestic wastewater. J Environ Sci Health, Part A Toxic/Hazard Subst Environ Eng. 36(7):1311–1320. doi:10.1081/ESE-100104880.
  • Salt DE, Blaylock M, Kumar PN, Dushenkov VB, Ensley D, Chet I, Raskin I. 1995. Phytoremediation: a novel strategy for the removal of toxic metals from the environment using plants. Nat Biotechnol. 13:468–474. doi:10.1038/nbt0595-468.
  • Schwindaman JP, Castle JW, Rodgers JH. Jr. 2014. Biogeochemical process-based design and performance of a pilot-scale constructed wetland for arsenic removal from simulated Bangladesh groundwater. Water Air Soil Pollution. 225:2009. DOI 10.1007/s11270-014-2009-7.
  • See DA. 2014. Green technology to beat pollutants [accessed on May 21, 2015]. http://manilastandardtoday.com/2014/10/27/green-technology-to-beat-pollutants.
  • Silveira ML, Vendramini JMB, Sui X, Sollenberger L, O’Connor GA. 2013. Screening perennial warm-season bioenergy crops as an alternative for phytoremediation of excess soil P. Bioenerg Res . 6(2):469. doi:10.1007/s12155-012-9267-2.
  • Steer D, Fraser L, Boddy J, Seibert B. 2002. Efficiency of small constructed wetlands for subsurface treatment of single-family domestic effluent. Ecol Eng. 18(4):429–440. doi:10.1016/S0925-8574(01)00104-5.
  • Stott R, May E, Matsushita E, Warren A. 2001. Protozoan predation as a mechanism for the removal of cryptosporidium oocysts from wastewaters in constructed wetlands. WaterSci Technol. 44(11–12):191–198. doi:10.2166/wst.2001.0828.
  • Travaini-Lima F, Sipaúba-Tavares LH. 2012. Efficiency of a constructed wetland for wastewaters treatment. Acta Limnol Bras. 24(3):255–265. doi:10.1590/S2179-975X2012005000043.
  • Tulod AM, Castillo AS, Carandang WM, Pampolina NM. 2012. Growth performance and phytoremediation of Pongamia pinnata (L.) Pierre, Samanea saman (Jacq.) Merr and Vitex parviflora Juss. in copper contaminated soil amended with zeolite and VAM. Asia Life Sci. 21(2):499–522.
  • Umaly RC, Cuvin LA. 1988. Limnology: laboratory and field guide physico-chemical factors, biology factors. Manila: National Book Store Publ.
  • United Nations Human Settlements Programme [UN-HABITAT]. 2008. Constructed Wetlands Manual. UN-HABITAT Water for Asian Cities Programme. Kathmandu, NP [accessed 2015 March 01]. www.unhabitat.org.
  • United States Environmental Protection Agency [US-EPA] 1993. Subsurface Flow Constructed Wetlands For WasteWater Treatment: A Technology Assessment [accessed 2015 January 18]. http://www.cee.mtu.edu/∼nurban/classes/ce4505/fall11/Projects/EPAdocument.pdf.
  • Vymazal J. 2002. The use of subsurface constructed wetlands for wastewater treatment in the Czech Republic: 10 years experience. Ecol Eng. 18(5):633–646. doi:10.1016/S0925-8574(02)00025-3.
  • Vymazal J. 2011. Plants used in constructed wetlands with horizontal subsurface flow: a review. Hydrobiologia. 674(1):133–156. doi:10.1007/s10750-011-0738-9.
  • Zurita F, De Anda J, Belmont MA. 2009. Treatment of domestic wastewater and production of commercial flowers in vertical and horizontal subsurface-flow constructed wetlands. Ecol Eng. 35(5):861–869. doi:10.1016/j.ecoleng.2008.12.026.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.