Search results for "SOIL ORGANIC"

showing 10 items of 214 documents

Differential copper impact on density, diversity and resistance of adapted culturable bacterial populations according to soil organic status

2010

International audience; The effect of copper on the abundance, diversity and resistance of viable heterotrophic and copper resistant bacterial populations (CuR) was evaluated in soils differing only by their amount and type of organic matter. These soils have been obtained using a vineyard soil that had been subjected to three different organic matter managements (Not Amended (NA) or amended with Straw (S) or Conifer Compost (CC)) in a long term field experiment. Soil microcosms were artificially contaminated with copper (250 mg Cu kg−1 of soil) and incubated for 35 days. Throughout the incubation, a differential copper impact on viable heterotrophic and CuR bacterial enumeration was demons…

Soil biology[SDV]Life Sciences [q-bio]PopulationSOIL ORGANIC MATTERSoil Sciencechemistry.chemical_element010501 environmental sciencesengineering.material01 natural sciencesMicrobiologycomplex mixturesCOPPER IMPACT03 medical and health sciencesSUBSTANCE ORGANIQUERalstoniaBotanyOrganic mattereducation030304 developmental biology0105 earth and related environmental sciences2. Zero hungerchemistry.chemical_classificationCOPPER RESISTANCE0303 health scienceseducation.field_of_studybiologyCompostSoil organic matter15. Life on landbiology.organism_classificationCopper6. Clean waterHorticulturechemistryInsect ScienceSoil waterBACTERIA[SDE]Environmental SciencesengineeringRESISTANCE
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Modelling soil carbon fate under erosion process in vineyard

2017

Soil erosion processes in vineyards beyond water runoff and sediment transport have a strong effect on soil organic carbon loss (SOC) and redistribution along the slope. The variation of SOC across the landscape determines a difference in soil fertility and vine productivity. The aim of this research was to study erosion of a Mediterranean vineyard, develop an approach to estimate the SOC loss, correlate the vines vigor with sediment and carbon erosion. The study was carried out in a Sicilian (Italy) vineyard, planted in 2011. Along the slope, six pedons were studied by digging 6 pits up to 60cm depth. Soil was sampled in each pedon every 10cm and SOC was analyzed. Soil erosion, detachment …

Soil erosion water runoff sediment transport soil organic carbon loss vineyard remote sensing
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Fire effects on soil aggregation: A review

2011

Abstract Fire can affect soil properties depending on a number of factors including fire severity and soil type. Aggregate stability (AS) refers to soil structure resilience in response to external mechanical forces. Many authors consider soil aggregation to be a parameter reflecting soil health, as it depends on chemical, physical and biological factors. The response of AS to forest fires is complex, since it depends on how fire has affected other related properties such as organic matter content, soil microbiology, water repellency and soil mineralogy. Opinions differ concerning the effect of fire on AS. Some authors have observed a decrease in AS in soils affected by intense wildfire or …

Soil healthSoil structureRecrystallization (geology)Soil retrogression and degradationSoil organic matterSoil waterGeneral Earth and Planetary SciencesSoil horizonEnvironmental scienceSoil scienceSoil typeEarth-Science Reviews
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Effect of land management on soil properties in flood irrigated citrus orchards in Eastern Spain

2018

Abstract. Agricultural land management greatly affects soil properties. Microbial soil communities are the most sensitive and rapid indicators of perturbations in land use and soil enzyme activities are sensitive biological indicators of the effects of soil management practices. Citrus orchards frequently have degraded soils and this paper evaluates how land management in citrus orchards can improve soil quality. A field experiment was performed in an orchard of orange trees (Citrus Sinensis) in the Alcoleja Experimental Station (Eastern Spain) with clay-loam agricultural soils to assess the long-term effects of herbicides with inorganic fertilizers (H), intensive ploughing and inorganic fe…

Soil managementAgronomySoil biodiversitySoil organic matterSoil biologyEnvironmental scienceSoil carbonSoil fertilitySoil typeSoil qualitycomplex mixtures
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Soil Quality as Affected by Intensive Versus Conservative Agricultural Managements

2017

Soils, the earth’s skin, are at the intersection of the lithosphere, hydrosphere, atmosphere, and biosphere. The persistence of life on our planet depends on the maintenance of soils as they constitute the biological engines of earth. Human population has increased exponentially in recent decades, along with the demand for food, materials, and energy, which have caused a shift from low-yield and subsistence agriculture to a more productive, high-cost, and intensive agriculture. However, soils are very fragile ecosystems and require centuries for their development, thus within the human timescale they are not renewable resources. Modern and intensive agriculture implies serious concern about…

Soil managementNo-till farmingConservation agriculture conventional agriculture tillage mulching cover crops rotation mineral fertilization manure soil organic matter soil microbial biomassAgricultural soil scienceAgroforestrySoil biodiversitySoil organic matterSettore AGR/13 - Chimica AgrariaEnvironmental scienceSoil fertilitySoil conservationcomplex mixturesSoil quality
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Cover Crop Impact on Soil Organic Carbon, Nitrogen Dynamics and Microbial Diversity in a Mediterranean Semiarid Vineyard

2020

Cover crop (CC) management in vineyards increases sustainability by improving soil chemical and biological fertility, but knowledge on its effects in semiarid soils is lacking. This study evaluated the effect of leguminous CC management on soil organic carbon (SOC) sequestration, soil nitrate content and microbial diversity in a semiarid vineyard, in comparison to conventional tillage (CT). SOC and nitrate were monitored during vine-growing season

Soil managementRibosomal Intergenic Spacer analysisGeography Planning and DevelopmentTJ807-830010501 environmental sciencesManagement Monitoring Policy and LawTD194-195NitrateSettore BIO/19 - Microbiologia Generalecomplex mixtures01 natural sciencesVineyardRenewable energy sourcesSoil respirationchemistry.chemical_compoundNitrateGE1-350Soil microbiotaCover crop0105 earth and related environmental sciencesLeguminous cover cropConventional tillageEnvironmental effects of industries and plantsSoil organic carbonRenewable Energy Sustainability and the Environmentfood and beverages04 agricultural and veterinary sciencesSoil carbonSettore AGR/02 - Agronomia E Coltivazioni ErbaceeEnvironmental scienceschemistryAgronomySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceSustainability
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Turnover and availability of soil organic carbon under different Mediterranean land-uses as estimated by 13C natural abundance

2013

Summary Soil organic matter (SOM) is an important factor in ecosystem stability and productivity. This is especially the case for Mediterranean soils suffering from the impact of humans and degradation as well as harsh climatic conditions. We used the carbon (C) exchange resulting from C3-C4 and C4-C3 vegetation change under field conditions combined with incubations under controlled conditions to evaluate the turnover and availability of soil organic C under different land-uses. The 40-year succession of Hyparrenia hirta L. (C4 photosynthesis) after more than 85 years of olive (Olea europaea L.) tree (C3 photosynthesis) growth led to the exchange of 54% of soil organic C from C3 to C4 form…

Soil organic matter turnover 13C natural abundance Mediterranean environment C3-C4 vegetation changeSettore AGR/13 - Chimica Agraria
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Threshold climatic changes for SOM variations in different Mediterranean crop systems

2013

Soil organic matter climosequence climate changeSettore AGR/14 - Pedologia
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Soil organic matter and soil nitrogen fractions as affected by crop rotation in rainfed Mediterranean conditions

2005

Soil organic matter nitrogen fractions crop rotation Mediterranean conditionsSettore AGR/02 - Agronomia E Coltivazioni Erbacee
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Responses to increases in temperature of heterotrophic micro-organisms in soils from the maritime Antarctic

2015

Understanding relationships between environmental changes and soil microbial respiration is critical for predicting changes in soil organic carbon (SOC) fluxes and content. The maritime Antarctic is experiencing one of the fastest rates of warming in the world and is therefore a key location to examine the effect of temperature on SOC mineralization by the respiration of soil micro-organisms. However, depletion of the labile substrates at higher temperatures relative to the total SOC and greater temperature sensitivity of recalcitrant components of the SOC confound simple interpretations of the effects of warming. We have addressed these issues by testing the hypothesis that respiration by …

Soil organic matterEcologySoil organic matterSettore AGR/13 - Chimica AgrariaMineralization (soil science)Soil carbonBiologySoil respirationchemistry.chemical_compoundCarbon dioxideAgricultural and Biological Sciences (all)chemistryThermalEnvironmental chemistryCarbon dioxideRespirationSoil watersense organsGeneral Agricultural and Biological SciencesRespiration rateAcclimationPolar Biology
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