On the risks from sediment and overlying water by replenishing urban landscape ponds with reclaimed wastewater

Environ Pollut. 2018 May:236:488-497. doi: 10.1016/j.envpol.2018.01.105.

Abstract

The extensive use of reclaimed wastewater (RW) as a source of urban landscape pond replenishment, stimulated by the lack of surface water (SW) resources, has raised public concern. Greater attention should be paid to pond sediments, which act as 'sinks' and 'sources' of contaminants to the overlying pond water. Three ponds replenished with RW (RW ponds) in three Chinese cities were chosen to investigate 22 indices of sediment quality in four categories: eutrophication, heavy metal, ecotoxicity and pathogens risk. RW ponds were compared with other ponds of similar characteristics in the same cities that were replenished with SW (SW ponds). Our results show a strong impact of RW to the eutrophication and pathogenic risks, which are represented by organic matter, water content, total nitrogen, total phosphorus and phosphorus fractions, and pathogens. In particular, total phosphorus concentrations in the RW pond sediments were, on average, 50% higher than those of SW ponds. Moreover, the content of phosphorus, extracted by bicarbonate/dithionite (normally represented by BD-P) and NaOH (NaOH-P), were 2.0- and 2.83-times higher in RW ponds, respectively. For pathogens, the concentrations of norovirus and rotavirus in RW pond sediments were, on average, 0.52 and 0.30- log times those of SW ponds. The duration of RW replenishment was proved to have a marked impact on the eutrophication and pathogens risks from sediments. The continued use of RW for replenishment increases the eutrophication risk, and the pathogens risk, especially by viral pathogens, becomes greater.

Keywords: Eutrophication risk; Landscape pond; Pathogenic risk; Reclaimed water; Replenishment; Sediment.

MeSH terms

  • China
  • Cities
  • Environmental Monitoring / methods*
  • Eutrophication
  • Geologic Sediments / chemistry*
  • Nitrogen / analysis
  • Phosphorus / analysis
  • Ponds / chemistry*
  • Wastewater / chemistry*
  • Water Pollutants, Chemical / analysis*

Substances

  • Waste Water
  • Water Pollutants, Chemical
  • Phosphorus
  • Nitrogen