Search results for "mineralization"

showing 10 items of 312 documents

Bonding efficacy of an acetone/based etch-and-rinse adhesive after dentin deproteinization

2012

Objectives: to evaluate the effect of sodium hypochlorite (NaOCl) treatment on dentin bonding by means of shear bond strength (SBS) measurements when using Prime&Bond NT (PB NT) adhesive. Ultrastructure of the interfaces was examined by scanning electron microscopy (SEM). Study design: Extracted human third molars were sectioned and ground to expose flat surfaces of superficial or deep dentin. Specimens were randomly assigned to two equal groups, and bonded as follows: (1) according to the manufacturers’ directions, after 35% H3PO4 etching, (2) 5% NaOCl treated for 2 minutes, after 35% H3PO4 etching. Each sample was embedded in a Watanabe shear test assembly for a single plane lap shear. Af…

Sodium HypochloriteDentistryIn Vitro Techniqueschemistry.chemical_compoundPolymethacrylic Acidsstomatognathic systemBiomaterials and Bioengineering in DentistryMaterials TestingDentinmedicineAcetoneHumansComposite materialResin tagsGeneral Dentistrybusiness.industryBond strengthDental Bonding:CIENCIAS MÉDICAS [UNESCO]Demineralizationstomatognathic diseasesmedicine.anatomical_structureOtorhinolaryngologychemistrySodium hypochloriteUNESCO::CIENCIAS MÉDICASDentinResearch-ArticleMolar ThirdSurgeryAdhesiveEtch and rinsebusiness
researchProduct

Shifts in microbial diversity through land use intensity as drivers of carbon mineralization in soil

2015

10 pages; International audience; Land use practices alter the biomass and structure of soil microbial communities. However, the impact of land management intensity on soil microbial diversity (i.e. richness and evenness) and consequences for functioning is still poorly understood. Here, we addressed this question by coupling molecular characterization of microbial diversity with measurements of carbon (C) mineralization in soils obtained from three locations across Europe, each representing a gradient of land management intensity under different soil and environmental conditions. Bacterial and fungal diversity were characterized by high throughput sequencing of ribosomal genes. Carbon cycl…

Soil biodiversitySoil biologyLand managementSoil Science[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studyMicrobiologycomplex mixturesSoil management03 medical and health sciencesLaboratorium voor Nematologie030304 developmental biology2. Zero hungerCarbon cycling0303 health sciencesEcologySoil organic matter04 agricultural and veterinary sciencesMineralization (soil science)Biodiversity15. Life on landPE&RCAgronomyinternationalSoil waterLand use040103 agronomy & agricultureEcosystem functioning0401 agriculture forestry and fisheriesEnvironmental scienceSpecies richnessLaboratory of Nematology
researchProduct

Interactions of earthworms with Atrazine-degrading bacteria in an agricultural soil

2006

In the last 10 years, accelerated mineralization of Atrazine (2-chloro-ethylamino-6-isopropylamino-s-triazine) has been evidenced in agricultural soils repeatedly treated with this herbicide. Here, we report on the interaction between earthworms, considered as soil engineers, and the Atrazine-degrading community. The impact of earthworm macrofauna on Atrazine mineralization was assessed in representative soil microsites of earthworm activities (gut contents, casts, burrow linings). Soil with or without earthworms, namely the anecic species Lumbricus terrestris and the endogenic species Aporrectodea caliginosa, was either inoculated or not inoculated with Pseudomonas sp. ADP, an Atrazine-deg…

Soil biologyPopulation010501 environmental sciences01 natural sciencesApplied Microbiology and BiotechnologyMicrobiologychemistry.chemical_compoundAtrazineeducation0105 earth and related environmental sciences2. Zero hungereducation.field_of_studyEcologybiologyEarthworm04 agricultural and veterinary sciencesMineralization (soil science)15. Life on landbiology.organism_classificationAgronomychemistrySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesSoil microbiologyLumbricus terrestrisFEMS Microbiology Ecology
researchProduct

Contamination of soil by copper affects the dynamics, diversity, and activity of soil bacterial communities involved in wheat decomposition and carbo…

2009

ABSTRACT A soil microcosm experiment was conducted to evaluate the influence of copper contamination on the dynamics and diversity of bacterial communities actively involved in wheat residue decomposition. In the presence of copper, a higher level of CO 2 release was observed, which did not arise from greater wheat decomposition but from a higher level of stimulation of soil organic matter mineralization (known as the priming effect). Such functional modifications may be related to significant modifications in the diversity of active bacterial populations characterized using the DNA stable-isotope probing approach.

Soil biology[SDE.MCG]Environmental Sciences/Global Changes[ SDV.SA.SDS ] Life Sciences [q-bio]/Agricultural sciences/Soil study010501 environmental sciences[ SDV.MP.BAC ] Life Sciences [q-bio]/Microbiology and Parasitology/Bacteriology[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil study01 natural sciencesApplied Microbiology and BiotechnologyTOXICITYIsotopesEnvironmental Microbiology[ SDU.ENVI ] Sciences of the Universe [physics]/Continental interfaces environmentSoil PollutantsMICROBIAL COMMUNITIESAGRICULTURAL SOILS[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentSoil MicrobiologyTriticum0105 earth and related environmental sciencesEcologyBacteriaChemistrySoil organic matterSoil classification04 agricultural and veterinary sciencesMineralization (soil science)Biodiversity15. Life on landCarbon DioxideSoil contamination[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyCarbon[ SDE.MCG ] Environmental Sciences/Global ChangesAgronomy13. Climate actionSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesMicrocosmSoil microbiologyCopperFood ScienceBiotechnology
researchProduct

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
researchProduct

Dependence of accelerated degradation of atrazine on soil pH in French and Canadian soils

2000

Abstract A series of agricultural soils varying in their atrazine treatment history were sampled from 12 sites in France and two sites in Canada. The soils varied widely with respect to soil chemical, physical and microbiological (total microbial biomass, kinetics of C and N mineralization) properties. Soils treated with as few as two successive atrazine field applications mineralized [U- ring - 14 C]atrazine significantly more rapidly in 35 d laboratory incubations than did soils which had never received atrazine. Longer treatment history tended to favour more rapid mineralization in the so-called “adapted” soils. Up to 80% of the initially applied 14 C-atrazine was mineralized at the end …

Soil testTYPE DE SOLSoil Science[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil study010501 environmental sciencescomplex mixtures01 natural sciencesMicrobiologychemistry.chemical_compoundSoil pHAtrazine[SDV.SA.SDS] Life Sciences [q-bio]/Agricultural sciences/Soil studyComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciences2. Zero hungerChemistryEcologySorption04 agricultural and veterinary sciencesMineralization (soil science)15. Life on landBiodegradationPesticideEnvironmental chemistrySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesSoil Biology and Biochemistry
researchProduct

Porous titania surfaces on titanium with hierarchical macro- and mesoporosities for enhancing cell adhesion, proliferation and mineralization

2014

Titanium received a macroporous titania surface layer by anodization, which contains open pores with average pore diameter around 5 μm. An additional mesoporous titania top layer following the contour of the macropores, of 100-200 nm thickness and with a pore diameter of 10nm, was formed by using the evaporation-induced self-assembly (EISA) method with titanium (IV) tetraethoxide as the precursor. A coherent laminar titania surface layer was thus obtained, creating a hierarchical macro- and mesoporous surface that was characterized by high-resolution electron microscopy. The interfacial bonding between the surface layers and the titanium matrix was characterized by the scratch test that con…

Solid-state chemistryMaterials scienceSurface Propertieschemistry.chemical_elementBone NeoplasmsBioengineeringNanotechnologyMineralization (biology)BiomaterialsCalcification PhysiologicCell Line TumorCell AdhesionHumansSurface layerPorosityCell ProliferationTitaniumOsteosarcomaAnodizingTitanium oxideChemical engineeringchemistryMechanics of MaterialsMicroscopy Electron ScanningPorosityLayer (electronics)TitaniumMaterials Science and Engineering: C
researchProduct

Mollusc and brachiopod skeletal hard parts: Intricate archives of their marine environment

2015

The biogenic carbonate hard parts of fossil bivalves, cephalopods and brachiopods are among the most widely exploited marine archives of Phanerozoic environmental and climate dynamics research. The advent of novel analytical tools has led many workers to explore non-traditional geochemical and petrographic proxies, and work performed in neighbouring disciplines sheds light on the complex biomineralization strategies applied by these organisms. These considerations form a strong motivation to review the potential and problems related to the compilation and interpretation of proxy data from bivalve, cephalopod and brachiopod hard parts from the viewpoint of the sedimentologist and palaeoceano…

Strontium010504 meteorology & atmospheric sciencesPeriostracumStratigraphyEarth sciencechemistry.chemical_elementGeology010502 geochemistry & geophysics01 natural sciencesDiagenesisPetrographychemistry.chemical_compoundPaleontologyCalcium carbonatechemistryCarbonateSeawaterGeology0105 earth and related environmental sciencesBiomineralizationSedimentology
researchProduct

Templated Crystallisation of Calcium and Strontium Carbonates on Centred Rectangular Self-Assembled Monolayer Substrates

1998

SrCO3crystals display patterns of templating when grown on tailored self-assembled monolayers (right). As SrCO3 is isostructural with aragonite, comparison of the crystallisation of SrCO3 in the aragonite/strontianite modification with the crystallisation of CaCO3 in all three modifications might yield some insights into which factors are important for crystal growth.

StrontiumChemistryAragoniteOrganic Chemistrychemistry.chemical_elementCrystal growthSelf-assembled monolayerGeneral Chemistryengineering.materialCatalysisStrontianiteCrystallographyMonolayerengineeringIsostructuralBiomineralizationChemistry - A European Journal
researchProduct

Trapping Amorphous Intermediates of Carbonates – A Combined Total Scattering and NMR Study

2018

Crystallization via metastable phases plays an important role in chemical manufacturing, biomineralization, and protein crystallization, but the kinetic pathways leading from metastable phases to the stable crystalline modifications are not well understood. In particular, the fast crystallization of amorphous intermediates makes a detailed characterization challenging. To circumvent this problem, we devised a system that allows trapping and stabilizing the amorphous intermediates of representative carbonates (calcium, strontium, barium, manganese, and cadmium). The long-term stabilization of these transient species enabled a detailed investigation of their composition, structure, and morpho…

StrontiumCoordination numberchemistry.chemical_element02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesBiochemistryCatalysisAmorphous calcium carbonate0104 chemical scienceslaw.inventionAmorphous solidCondensed Matter::Materials Sciencechemistry.chemical_compoundColloid and Surface ChemistrychemistryChemical engineeringlawMetastabilityCrystallization0210 nano-technologyProtein crystallizationBiomineralizationJournal of the American Chemical Society
researchProduct