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Rain is important for how carbon dioxide affects grasslands by Staff Writers Gothenburg, Sweden (SPX) Mar 07, 2019
Vegetation biomass on grasslands increases in response to elevated carbon dioxide levels, but less than expected. Vegetation on grasslands with a wet spring season has the greatest increase. This has been demonstrated in a new study published in the scientific journal Nature Plants. An important, but uncertain, factor in climate research is the extent to which all ecosystems can accumulate carbon from the increasing atmospheric concentration of carbon dioxide. Areas covered by grass and similar vegetation play a significant role in this context. Worldwide these areas cover 29 per cent of Earth's ice-free land surface. "These grasslands have great importance for carbon storage," says Louise C. Andresen, a researcher at the University of Gothenburg and one of the researchers behind the new research study. In the study the researchers examined how 19 different land areas that were exposed to varying amounts of precipitation - in Australia, Germany, New Zealand, Switzerland, the United States, China and elsewhere - reacted in field-experiments with elevated carbon dioxide concentrations. "In general the response was an increase in plant growth of less than 10 per cent, but there were large variations."
Spring rain affects plant growth "Vegetation on grasslands with a very wet spring season increased most with elevated carbon dioxide concentration," Andresen says. In addition, biomass on land with a very dry low season increased more than on land with a wet low season. "Elevated atmospheric carbon dioxide allows plants to save water," Andresen adds. "We found that both the extra carbon dioxide and better water household helped plants in dry ecosystems too."
Research Report: Globally consistent influences of seasonal precipitation limit grassland biomass response to elevated CO2.
A water-splitting catalyst unlike any other Lausanne, Switzerland (SPX) Feb 28, 2019 Electricity can be generated by renewable sources such as sunlight, wind Electricity can then be used to split water, which makes hydrogen as a fuel for emerging energy devices such as fuel cells. Because hydrogen is a clean fuel, researchers in the world are putting a lot of effort in developing water-splitting catalysts, which are essential for the reaction's energy efficiency. The focus is mostly on the so-called oxygen evolution reaction (OER), which is arguably the most challenging process in ... read more
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