AI Article Synopsis

  • A two-stage vertical flow treatment wetland system was constructed in Orhei, Moldova, covering 5 hectares and designed to function effectively in cold climates, even with winter temperatures dropping below -20 °C.
  • The report presents treatment performance data from 2013 to 2015, focusing on operational choices and results during the system's commissioning phase, demonstrating its applicability to medium-large municipal wastewater treatment.
  • The system achieved significant removal rates for organic carbon (86% COD and 96% BOD), suspended solids (96%), and ammonia (66%), consistently meeting national discharge limits, with a daily treated flow of 1,000-2,000 m³.

Article Abstract

A two-stage vertical flow treatment wetlands system (French reed beds) was realized in 2012-2013 for the Orhei's town in Moldova. The treatment system occupies a total area of about 5 ha and operates in cold climate conditions during winter, with air temperatures below -20 °C. The first 2 years (2013-2015) of treatment performances for this system are presented here, with a particular highlight on the analysis of the commissioning phase and the operative choices taken along this period basing on the observed results. The specific classification of this application of constructed wetlands (CWs) for the primary and secondary treatment of municipal wastewater as a medium-large size system makes this technical report a relevant reference for demonstrating the possible extension to the highest numbers of inhabitants for the common application range of this family of technologies (CWs) for municipal wastewater. The observed performances for organic carbon (both as chemical oxygen demand (COD) and biochemical oxygen demand (BOD)), suspended solids and ammonia removals in the whole first operational period consistently satisfied the national limits for discharge in rivers, respectively, with average values of 86%, 96% and 66%. The treated daily flow was measured in the range of 1,000-2,000 m/d.

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Source
http://dx.doi.org/10.2166/wst.2017.188DOI Listing

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