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Home NEWS Science News Biology

Climate change enhances carbon dioxide flux from lakes

Bioengineer by Bioengineer
June 18, 2019
in Biology
Reading Time: 3 mins read
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The carbon cycling in lakes is studied using a process-based model that describes the temporal evolution of temperature distribution and water quality in a lake

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Credit: University of Jyväskylä

Boreal lakes play a significant role in global carbon cycling. Small and shallow lakes are abundant in northern areas, and they are often biologically active because of the loading of organic matter from the catchments. As microbes degrade organic matter that has been accumulated in the water column and in the bottom sediments, the water column carbon dioxide concentration exceeds the saturation level in many lakes and some of the carbon dioxide is released to the atmosphere.

In his thesis at the University of Jyväskylä, M.Sc. Petri Kiuru studied carbon cycling in lakes using a process-based model that describes the temporal evolution of temperature distribution and water quality in a lake. The study was especially focused on carbon dioxide exchange between the lake water column and the atmosphere. Another aim of the study was to assess the impact of climate change on carbon dynamics in boreal lakes.

Because of climate change-induced increases in air temperature and annual precipitation, boreal lakes are warming and the amount of external loading of organic matter to the lakes may increase. The study results indicated that these factors may also increase the lake carbon dioxide concentrations and enhance the release of carbon dioxide to the atmosphere. These increases should also be considered in the estimation of future changes in global carbon cycling.

Process-based models are important tools in illustrating dynamic processes in a lake

In the study, Kiuru also used model simulations to assess the effects of improved estimates of air-water carbon dioxide exchange on the determination of the carbon budgets of boreal lakes. Continuous carbon dioxide flux measurements that have been performed with new, advanced methods have shown that the exchange of carbon dioxide between the lake water column and the atmosphere occurs faster than previously estimated. Hence, also the extent of carbon dioxide production in lakes and the amount of external carbon loading, including loading through groundwater, should be assessed more closely.

Process-based models are important tools in illustrating and studying the complex dynamic processes in a lake. They enable researchers to build a comprehensive description of a lake and to study the interplay between different components of the lake system, such as ice cover; hydrodynamics; thermal, chemical, and biological conditions; and catchment loading. The vertical lake model that was developed and applied in the study can be further utilized in freshwater ecosystem research. The modelling tool can be applied to describe carbon cycling in different lakes both under present and future conditions, especially together with models that simulate hydrological and biochemical processes in lake catchments and substance loading from the catchments.

###

M.Sc. Petri Kiuru defends his doctoral dissertation in subject “Modeling CO2 emissions from boreal lakes in present and future” on Wednesday 19.6.2019 at noon 12.00 in the lecture hall YAA303 at Ylistönrinne. The opponent is Professor Anna Rutgersson (Uppsala University, Sweden) and custos Professor Markku Kataja (University of Jyväskylä). The dissertation is held in English.

Petri Kiuru graduated from Rautjärvi senior high school in 2000. He started his studies at the Department of Physics of the University of Jyväskylä in the fall of 2000 and obtained his Master’s degree in theoretical physics in 2007. Kiuru started his doctoral research in 2015. During the research, Kiuru worked as a visiting scientist at the Freshwater Centre of the Finnish Environment Institute in Jyväskylä. The doctoral research has been funded by the Kone Foundation and Maa- ja vesitekniikan tuki ry.

The dissertation is published in JYU Dissertations 89, 2019, ISSN 2489-9003, ISBN 978-951-39-7777-1.

Link to thesis: http://urn.fi/URN:ISBN:978-951-39-7777-1

More information:

M.Sc. Petri Kiuru, 050 308 9678, [email protected]

Communications Officer Tanja Heikkinen, [email protected], tel. 050 581 8351

The Faculty of Mathematics and Science at University of Jyvaskyla

Media Contact
Petri Kiuru
[email protected]

Original Source

http://urn.fi/URN:ISBN:978-951-39-7777-1

Tags: Chemistry/Physics/Materials SciencesClimate ChangeEcology/EnvironmentTemperature-Dependent Phenomena
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