Related Experiment Video
Updated: Jul 6, 2026

Simulating Temperature in a Soil Incubation Experiment
Published on: October 28, 2022
Heatwave 2003: high summer temperature, rather than experimental fertilization, affects vegetation and CO2 exchange
Renato Gerdol1, Luca Bragazza1, Lisa Brancaleoni1
1Department of Biology and Evolution, Ferrara University, Corso Ercole I d'Este 32, I 44100 Ferrara, Italy.
Abstract:
Nitrogen and phosphorus were added experimentally in a bog in the southern Alps. It was hypothesized that alleviating nutrient limitation will increase vascular plant cover. As a consequence, more carbon will be fixed through higher rates of net ecosystem CO(2) exchange (NEE). The vascular cover did increase at the expense of Sphagnum mosses. However, such vegetation changes were largely independent of the treatment and were probably triggered by an exceptional heatwave in summer 2003. Contrary to the tested hypothesis, NEE was unaffected by the nutrient treatments but was strongly influenced by temperature and water-table depth. In particular, ecosystem respiration in the hot summer of 2003 increased dramatically, presumably owing to enhanced heterotrophic respiration in an increased oxic peat layer. At the end of the experiment, the Sphagnum cover decreased significantly in the nitrogen-fertilized treatment at hummock microhabitats. In the long term, this will imply a proportionally greater accumulation of vascular litter, more easily decomposable than the recalcitrant Sphagnum litter. As a result, rates of carbon fixation may decrease because of stimulated respiration.
Related Concept Videos
Responses to Heat and Cold Stress
Global Climate Change
Adaptations that Reduce Water Loss
Hot Weather Concreting
Mitigating the heat increase in concrete can be economically achieved by shading aggregate stockpiles to prevent heating from solar radiation,...
Microbes and Climate Change
Requirements for Human Life
Oxygen
Atmospheric air is only about 20 percent oxygen, but that oxygen is a key component of the chemical reactions that keep the body alive, including the reactions that produce ATP. Brain cells are susceptible to a lack of oxygen because they require a...

