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Biology and Fertility of Soils, ISSN 0178-2762, 4/2010, Volume 46, Issue 4, pp. 355 - 369
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 2008, Volume 40, Issue 7, pp. 1567 - 1574
Determining the relative temperature sensitivities of the decomposition of the different soil organic matter (SOM) pools is critical for predicting the... 
Labile | CO 2 | Climate change | Temperature | Feedback | Soil organic matter | Recalcitrant | Respiration | TURNOVER | labile | CO2 | CLIMATE-CHANGE | respiration | CARBON MINERALIZATION | MODEL | soil organic matter | CO2 EMISSIONS | RADIOCARBON | DEPENDENCE | feedback | FEEDBACKS | SOIL SCIENCE | temperature | PREDICTIONS | recalcitrant | climate change | Global warming
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 05/2017, Volume 108, pp. 41 - 54
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 2010, Volume 42, Issue 10, pp. 1811 - 1815
No consensus exists regarding soil organic carbon (SOC) lability and the temperature sensitivity of its decomposition. This lack of clear understanding limits... 
Labile | Temperature sensitivity | Recalcitrant | Decomposition | Soil organic carbon | Elevational gradient (vegetation) | QUALITY | FOREST | RATES | SOIL SCIENCE | MATTER DECOMPOSITION | RESPIRATION | MINERALIZATION | POOLS | MICROBIAL ACTIVITY | CLIMATE | Soils | Carbon content | Global temperature changes | Universities and colleges | Evolutionary biology
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 01/2015, Volume 80, Issue C, pp. 127 - 135
Although the temperature sensitivity (Q ) of soil organic matter (SOM) decomposition has been widely studied, the estimate substantially depends on the methods... 
MCMC | Temperature sensitivity | Decay rate | Residence time | Ecological model | Data assimilation | TURNOVER | CARBON-CYCLE | DECOMPOSITION | MODEL | FEEDBACKS | SOIL SCIENCE | RESPIRATION | LABILE | NITROGEN | POOLS | Markov processes | Monte Carlo method | Plant physiology | Comparative analysis | Methods
Journal Article
Journal Article
Geoderma, ISSN 0016-7061, 06/2012, Volume 179-180, pp. 9 - 19
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 05/2017, Volume 108, pp. 91 - 100
The degradation of soil organic matter (SOM) is determined by its compositional and structural properties, but the properties of the remaining SOM can be... 
Soil organic matter | N availability | Structure | Mineralization | C pool | CARBON POOLS | HUMIC ACIDS | ENZYME-ACTIVITIES | BIODEGRADATION | FLUORESCENCE SPECTROSCOPY | C MINERALIZATION | MUNICIPAL SOLID-WASTE | SOIL SCIENCE | MICROBIAL BIOMASS | LABILE | RECALCITRANT | Fluorescence spectroscopy | Hydrolysis | Fluorescence | Analysis | Forest soils
Journal Article
Translation and Interpreting, ISSN 1676-546X, 03/2017, Volume 38, Issue 2, pp. 607 - 622
The identification of the labile and recalcitrant forms of soil organic matter (SOM) allows to rapidly define, or even predict if the management used favors... 
Grazing intensities | Cerrado | SOM fractionation | Urochloa ruziziensis | Som fractionation | PASTURE | BRAZILIAN CERRADO | LABILE FRACTIONS | LATOSOL | BRACHIARIA | SOUTHERN BRAZIL | AGRICULTURE, MULTIDISCIPLINARY | DIFFERENT MANAGEMENT-SYSTEMS | STOCKS | NO-TILLAGE | Fracionamento da MOS | Intensidades de pastejo
Journal Article
Soil & Tillage Research, ISSN 0167-1987, 12/2015, Volume 154, pp. 126 - 135
Tillage practices have a major effect on soil C storage and cropping sustainability, due to their impact on soil aggregation, organic residue decomposition... 
Ripper subsoiling | Aggragate stability | Recalcitrant OC | Soil tillage | C sequestration | Labile OC | LOAM SOIL | MANAGEMENT | CARBON | CONSERVATION TILLAGE | SOIL SCIENCE | AGGREGATE | AGRICULTURAL SOILS | DYNAMICS | NITROGEN | SYSTEMS | NO-TILLAGE
Journal Article
Global Change Biology, ISSN 1354-1013, 05/2006, Volume 12, Issue 5, pp. 804 - 809
Ecosystem and soil scientists frequently use whole soil carbon:nitrogen (C : N) ratios to estimate the rate of N mineralization from decomposition of soil... 
C:N ratio | mineralization | carbon | nitrogen | Simpson's paradox | decomposition | soil | Mineralization | Soil | Decomposition | Nitrogen | Carbon | ORGANIC-MATTER POOLS | FOREST | FEEDBACKS | ENVIRONMENTAL SCIENCES | C : N ratio | LAND-USE CHANGE | FRACTIONS | LABILE | DYNAMICS | ECOLOGY | CARBON STORAGE | BIODIVERSITY CONSERVATION | GRASSLAND SOILS | Soil testing | Models
Journal Article
Journal of Soils and Sediments, ISSN 1439-0108, 9/2012, Volume 12, Issue 8, pp. 1231 - 1240
Peatland soils play an important role in the global carbon (C) cycle due to their high organic carbon content. Lowering of the water table e.g. for... 
Environment, general | Environmental Physics | Soil organic matter | Environment | Decomposition | Drained fen soils |