0000000001293404

AUTHOR

A. Virzo

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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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