Nutrient enrichment and vertical mixing mediate 2-methylisoborneol and geosmin concentrations in a drinking water reservoir

Author:

Olsen Brianna K.1,Chislock Michael F.1,Rebelein Anja2,Wilson Alan E.1

Affiliation:

1. School of Fisheries, Aquaculture, and Aquatic Sciences, Auburn University, 203 Swingle Hall, Auburn, Alabama, USA

2. Department of Biology, University of Erlangen-Nuremberg, Staudtstraße 5, Erlangen D-91058, Germany

Abstract

Few ecosystem-level studies have experimentally determined the physicochemical and biological factors that mediate concentrations of off-flavor compounds in drinking water reservoirs. Consequently, the watershed-scale mechanisms determining production of these compounds are still poorly understood. In a recent study, the addition of both nitrogen and phosphorus significantly increased 2-methylisoborneol (MIB). Not surprisingly, MIB was correlated with cyanobacterial abundance (a well-known producer of off-flavor compounds); however, MIB was most strongly correlated with diatom abundance. To empirically test for differences in the production of two important off-flavor compounds, specifically MIB and geosmin, by either cyanobacteria or diatoms, we conducted a fully factorial experiment that manipulated two factors that typically promote cyanobacteria (nitrogen and phosphorus fertilization) or diatoms (vertical mixing of the water column). As predicted, fertilization promoted cyanobacteria, and vertical mixing favored diatoms. Interestingly, the production of geosmin was rapid and consistent with an increase in cyanobacteria while MIB production increased later in the experiment when cyanobacterial biovolume tended to decline and diatom biovolume increased. Based on our current and previous studies, MIB and geosmin production is associated with cyanobacteria, but the direct or indirect influence of diatoms on production should not be ignored.

Publisher

IWA Publishing

Subject

Water Science and Technology

Reference25 articles.

1. Diversity and seasonal dynamics of actinobacteria populations in four lakes in northeastern Germany;Allgaier;Applied and Environmental Microbiology,2006

2. Monitoring to determine geosmin sources and concentrations in a Northern Colorado reservoir;Billica,2010

3. Cylindrospermopsis raciborskii dominates under very low and high nitrogen-to-phosphorus ratios;Chislock;Water Research,2014

4. Development of predictive models for geosmin-related taste and odor in Kansas, USA, drinking water reservoirs;Dzialowski;Water Research,2009

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