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Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains determined by vegetation type. In this study, we selected a long transect (3.6 km) across the five ecosystems

Mesofauna influence on hamification process of vegetable oddments with partticipation microarthropodRelevance of the studied problem is caused by the fact that stability of natural ecosystems

Impact of subgrid-scale vegetation heterogeneity on the simulation of carbon-cycle characteristics the photosynthesis intensity and increases vegetation and soil carbon stocks in grass-dominated regions. In forest

The need to understand the stability of arctic vegetation during rapid climate change: An assessment of imbalance in the literatureIn early studies, northern vegetation response to global warming recognised both increases

Effects of biochar amendment on greenhouse gas emissions, net ecosystem carbon budget and properties of an acidic soil under intensive vegetable production on greenhouse gas emissions from intensively managed soils under vegetable production at the field scale

Plants of the First Terrestrial Ecosystems© 2019, Pleiades Publishing, Ltd. Abstract: The preconditions of an ecosystem for and major phases

Vegetation and Precipitation Patterns Define Annual Dynamics of CO2 Efflux from Soil and Its Components balance in terrestrial ecosystems, which tie up organic matter decomposition with the rise of atmospheric

Monitoring and assessment of vegetation covers of different biogeographical zones in Jordan using remote sensing and mathematical modelling-predicted climate impacts. The impacts of the land and the vegetation in the whole regional ecosystem on the carbon

Impact of subgrid-scale vegetation heterogeneity on the simulation of carbon-cycle characteristics the photosynthesis intensity and increases vegetation and soil carbon stocks in grass-dominated regions. In forest

Heterotrophic and Autotrophic Components of Soil Respiration in Russian Subtaiga and Forest-steppe Zones Measured by Substrate-induced Respiration Technique) to environmental changes is necessary to improve the carbon cycle models of terrestrial ecosystems. Using substrate

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