Search results for "iron-porphyrins"

showing 2 items of 2 documents

Response of Soil Microbial Communities to Iron-Porphyrin Catalytic Amendments.

2010

Intensive agricultural practices strongly increase CO2 emission from soil. Synthetic metal-porphyrins were shown to significantly decreased CO2 emission from soil due to an in-situ catalysis of oxidative polymerization of soil organic matter. This research aimed to assess the effects of iron-porphyrin (POR) amendments on soil microbial communities in three arable soils under wheat and maize cropping located in Naples, Turin and Piacenza, characterized by different pedological and climatic conditions. Bulk-soil and rhizo-soil were sampled during 4 years and the microbial groups directly involved in organic matter (OM) mineralization and in key processes of the nitrogen cycle were examined. M…

microorganismSoil organic matterSoil biologyMicroorganismiron-porphyrinsBioengineeringGeneral MedicineSoil carbonApplied Microbiology and BiotechnologyPorphyrinCatalysischemistry.chemical_compoundsoil carbon sequestrationchemistryAgronomySoil carbon sequestrationEnvironmental scienceSoil ecologyBiotechnologySettore AGR/16 - Microbiologia Agraria
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Effect of iron-porphyrin treatment on soil microbial communities

2009

Intensive agricultural management have led to an increasing transfer of carbon from soil organic matter (SOM) to atmospheric CO2. It is noteworthy that the flux of CO2 from the soil is ten times greater than fossil fuel emission from industrial and automotive activities. Piccolo and co-workers (1999) suggested that hydrophobic humic components in soil exerted hydrophobic protection towards easily degradable compounds. They postulated that associations of apolar molecules deriving from plant degradation and microbial activity incorporate more polar molecules, thus preventing their otherwise rapid microbial degradation and enhancing their persistence in soil. Moreover, synthetic metal-porphyr…

microorganisms soil carbon sequestration iron-porphyrins
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