4.7 Article

Dissolved oxygen and its response to eutrophication in a tropical black water river

Journal

JOURNAL OF ENVIRONMENTAL MANAGEMENT
Volume 91, Issue 8, Pages 1730-1737

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2010.03.009

Keywords

Black water river; Dissolved oxygen; Dissolved organic matter; Wastewater; Siak River; Sumatra; Indonesia

Funding

  1. German Federal Ministry of Education and Research [03F0392C - ZMT]
  2. Indonesian Ministry of Marine Affairs and Fisheries (DKP)
  3. Ministry for Research and Technology (RISTEK)
  4. University of Riau

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The Siak is a typical, nutrient-poor, well-mixed, black water river in central Sumatra, Indonesia, which owes its brown color to dissolved organic matter (DOM) leached from surrounding, heavily disturbed peat soils. We measured dissolved organic carbon (DOC) and oxygen concentrations along the river, carried out a 36-h experiment in the province capital Pekanbaru and quantified organic matter and nutrient inputs from urban wastewater channels into the Siak. In order to consider the complex dynamic of oxygen in rivers, a box-diffusion model was used to interpret the measured data. The results suggest that the decomposition of soil derived DOM was the main factor influencing the oxygen concentration in the Siak which varied between similar to 100 and 140 mu mol l(-1). Additional DOM input caused by wastewater discharges appeared to reduce the oxygen concentrations by similar to 20 mu mol l(-1) during the peak-time in household water use in the early morning and in the early evening. Associated enhanced nutrient inputs appear to reduce the impact of the anthropogenic DOM by favoring the photosynthetic production of oxygen in the morning. A reduction of 20 mu mol l(-1), which although perhaps not of great significance in Pekanbaru, has strong implications for wastewater management in the fast developing areas downstream Pekanbaru where oxygen concentrations rarely exceed 20 mu mol l(-1). (C) 2010 Elsevier Ltd. All rights reserved.

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