Litcius/Paper detail

The effect of extreme temperatures on soil organic matter decomposition from Atlantic oak forest ecosystems

N. Barros, J. A. Rodríguez-Añón, J. Proupı́n-Castiñeiras, César Pérez‐Cruzado

2021iScience16 citationsDOIOpen Access PDF

Abstract

This work designs a heatwave with a calorimeter to analyze the response of soils from oak forest ecosystems to increasing temperature from 20°C to 60°C and to cooling from 60°C to 20°C. Calorimetry measures the heat rate of the soil organic matter decomposition and the response to increasing and decreasing temperatures directly. It was applied to soil samples representing different soil horizons with organic matter at different degree of decomposition given by their heat of combustion, calculated by differential scanning calorimetry. Results showed temperature-dependent decomposition rates from 20°C to 40°C or 50°C typical for enzymatic activity. From 40°C to 60°C, changes in the rates are less predictable. Data analysis during cooling showed that all samples suffered losses of their enzymatic capacity and that only those with the heat of combustion values close to that of carbohydrates resisted the heat wave.

Topics & Concepts

DecompositionOrganic matterSoil organic matterSoil waterDifferential scanning calorimetryCalorimetryCombustionEnvironmental chemistryEnvironmental scienceHeat of combustionCalorimeter (particle physics)EcosystemSoil scienceChemistryEcologyBiologyThermodynamicsPhysicsOrganic chemistryElectrical engineeringDetectorEngineeringthermodynamics and calorimetric analysesSoil Carbon and Nitrogen DynamicsAgriculture Sustainability and Environmental Impact