Search results for "Microbial biomass C and N"

showing 2 items of 2 documents

Native and planted forest species determine different carbon and nitrogen pools in Arenosol developed on Holocene deposits from a costal Mediterranea…

2016

In a coastal Mediterranean area, the effects of two native [Quercus ilex (Holm), Alnus glutinosa and Fraxinus oxycarpa (Hygro)] and one planted [Pinus pinaster (Pine)] forest species on both content and quality of organic C and total N pools in Arenosols was assessed. Three soil profiles per each forest cover were opened and sampled. Total N in the organic layers was not affected by forest covers, whereas total organic C ranged from 36.1 to 63.2 Mg ha−1, being organic layers under Hygro those with the highest contents. Total organic C in the first 50 cm of mineral soil was 64 Mg ha−1 under Holm and 36.7 and 37.6 Mg ha−1 under Pine and Hygro, respectively. Soil covered by Holm and Hygro stor…

PollutionAlnus glutinosamedia_common.quotation_subjectSettore AGR/13 - Chimica AgrariaMicrobial biomass C and Nchemistry.chemical_elementSoil SciencePinus pinaster010501 environmental sciencesFraxinus01 natural sciencesBotanyFraxinus oxycarpaEnvironmental Chemistry0105 earth and related environmental sciencesmedia_commonWater Science and TechnologyEarth-Surface ProcessesGlobal and Planetary ChangebiologySoil organic matterGeology04 agricultural and veterinary sciencesbiology.organism_classificationNitrogenPollutionQuercus ilexAlnus glutinosaLabile C and N poolAgronomychemistryHumic acidSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesPinus pinasterCarbon
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Effects of compost input and tillage intensity on soil microbial biomass and activity under Mediterranean conditions

2010

Organic amendment and tillage reduction are two common practices to contrast soil organic matter decline, thus promoting sustainable cropping and carbon sequestration. In a horticultural land use system under Mediterranean climate, we evaluated the 9-year effects of two compost inputs (15 and 30 t ha−1 y−1, low and high input, respectively) and two tillage intensities (intensive and reduced) on soil macronutrients concentration, microbial biomass and activity. Total organic C, total N and POlsen were smaller in plots amended at low input, whilst intensive tillage decreased them at both compost inputs. These decreases in intensively tilled plots was ascribed to the disruption of soil aggrega…

chemistry.chemical_classificationCompostSoil organic matterSettore AGR/13 - Chimica AgrariaAmendmentSoil ScienceMineralization (soil science)engineering.materialCarbon sequestrationcomplex mixturesMicrobiologyTillageNo-till farmingCompost input . Tillage intensity . Microbial biomass C and N . Basal- and glucose-induced respiration. Enzyme activitiesAgronomychemistryengineeringEnvironmental scienceOrganic matterAgronomy and Crop ScienceBiology and Fertility of Soils
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