Search results for "Water content"

showing 10 items of 380 documents

Assessing Field and Laboratory Calibration Protocols for the Diviner 2000 Probe in a Range of Soils with Different Textures

2016

Frequency domain reflectometry (FDR) downhole sensors have been increasingly used for soil moisture field monitoring because they allow measurement, even continuously, along a soil profile. Moreover, they can also be installed with minimal soil disturbance around the access tube. The objectives of the paper were to assess the field and laboratory calibration protocols for a FDR capacitance probe (Diviner 2000) for a range of soils characterized by different particle size distributions and shrink/swell potential and to propose a practical and effective protocol on the basis of undisturbed soil samples, accounting for soil shrinkage/swelling processes characterizing swelling clay soils. The e…

Soil test0208 environmental biotechnologyShrinking/swellings soilCalibration protocolsSoil science02 engineering and technologySoil water contentCapacitance probeFrequency domain reflectometry (FDR); Capacitance probe; Soil water content; Dielectric permittivity; Shrinking/ swellings soils; Calibration protocols.Dielectric permittivityShrinking/ swellings soilsCalibrationReflectometryFrequency domain reflectometry (FDR)Water contentWater Science and TechnologyCivil and Structural EngineeringCalibration protocol04 agricultural and veterinary sciencesAgricultural and Biological Sciences (miscellaneous)Swell020801 environmental engineeringSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceSoil horizonCapacitance probeJournal of Irrigation and Drainage Engineering
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2014

Abstract. Biogenic NOx emissions from natural and anthropogenically influenced soils are currently estimated to amount to 9 Tg a−1, hence a significant fraction of global NOx emissions (45 Tg a−1). During the last three decades, a large number of field measurements have been performed to quantify biogenic NO emissions. To study biogenic NO emissions as a function of soil moisture, soil temperature, and soil nutrients, several laboratory approaches have been developed to estimate local/regional NO emissions by suitable upscaling. This study presents an improved and automated laboratory dynamic chamber system (consisting of six individual soil chambers) for investigation and quantification of…

Soil testChemistryMixing (process engineering)Soil scienceTrace gaschemistry.chemical_compoundEnvironmental chemistrySoil waterCarbon dioxideMixing ratioWater contentEcology Evolution Behavior and SystematicsNOxEarth-Surface ProcessesBiogeosciences
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Spatial Distribution of Soil Hydrological Properties in the Kilombero Floodplain, Tanzania

2017

Analysis and interpretation of soil properties dynamics is a keystone in understanding the hydrologic responses and yield potential of floodplain wetlands. This study characterizes the distribution and spatial trends of selected soil physical properties in the Kilombero floodplain, Tanzania. A total of 76 composite soil samples were taken from 0 to 20 cm and 20 to 40 cm depth in a regular grid design across three hydrological zones, related to flooding intensity defined as fringe, middle, and riparian during the rainy season of 2015. The samples were analyzed for soil texture, bulk density, organic carbon, and saturated hydraulic conductivity. Seasonal soil moisture content was monitored at…

Soil testSoil texture0208 environmental biotechnologySoil science02 engineering and technologyOceanographyhydrological zonesHydraulic conductivitysoil properties; hydrological zones; wetland; soil moisture; geostatisticsgeostatisticslcsh:ScienceWaste Management and DisposalWater contentSubsoilEarth-Surface ProcessesWater Science and TechnologyRiparian zoneTopsoilgeographygeography.geographical_feature_category04 agricultural and veterinary sciencesSoil carbonwetland020801 environmental engineeringsoil properties040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental sciencelcsh:Qsoil moistureHydrology; Volume 4; Issue 4; Pages: 57
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Effects of solarisation on soil thermal-physical properties under different soil treatments: A review

2020

Solarisation technology allows for improving soil quality as well as crop productivity. The influence of the properties and method of use of plastic materials used to cover soils, such as the number and thickness of layers, and colour of the material, significantly alters soil thermal-physical properties. These effects can be managed and modified to increase solarisation efficiency by achieving a decrease in vapour movement between the soil surface and the atmosphere. Also, soil solarisation establishes microclimates that increase the effectiveness of fertilisers, thus modifying the soil thermal-physical properties. However, there is a lack of complete and general overview of this widely us…

Soil textureSoil ScienceSoil science04 agricultural and veterinary sciences010501 environmental sciences01 natural sciencesSolarisationBulk densitySoil qualityTillageVolumetric heat capacitySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceWater content0105 earth and related environmental sciencesGeoderma
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A simplified approach to estimate water retention for Sicilian soils by the Arya-Paris model

2014

Application of the Arya and Paris (AP) model to estimate the soil water retention curve requires a detailed description of the particle-size distribution (PSD) because the scale factor a, relating the pore length of an ideal soil to that of the natural one, depends on the particle size distribution parameters. For a dataset of 140 Sicilian soils that were grouped in five texture groups, the logistic and linear models were applied to evaluate a, and the water retention values predicted by the AP model were compared with the measured ones. Using the parameters proposed by Arya et al. (1999), the two models yielded similar unsystematic root mean error of estimate (RMSEu). Therefore, their pote…

Soil water retention curve Particle size distribution Arya-Paris modelMean squared errorCalibration (statistics)Water retention curveSoil waterStatisticsLinear modelSoil ScienceSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliLogistic regressionScale parameterWater contentMathematics
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Comprehensive study of the heat resistance of dried Bacillus subtilis spores

2013

In response to starvation, species from the genre Bacillus are able to form metabolicallydormant spores which are very resistant to multiple forms of stress. They are found in quitehigh concentrations in some dried foods which, upon rehydration, may lead to food deterioration or food-borne diseases. Moreover, their destruction is rather difficult and mostof the techniques commonly used to treat dry foods result in a very low spore inactivation.The aim of this work is to better understand the role spore hydration in the inactivation ofdried Bacillus subtilis spores. A fundamental study was conducted using DifferentialScanning Calorimetry pans as reactors to perform a heat treatment in dried …

SporesIRTFWater content[SDV.AEN] Life Sciences [q-bio]/Food and NutritionFTIRAEDAliments secsHydratationDried foods[SDV.IDA] Life Sciences [q-bio]/Food engineeringDecontaminationBacillus subtilisDSC
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Water properties in fern spores: sorption characteristics relating to water affinity, glassy states, and storage stability.

2007

Ex situ conservation of ferns may be accomplished by maintaining the viability of stored spores for many years. Storage conditions that maximize spore longevity can be inferred from an understanding of the behaviour of water within fern spores. Water sorption properties were measured in spores of five homosporeous species of ferns and compared with properties of pollen, seeds, and fern leaf tissue. Isotherms were constructed at 5, 25, and 45 degrees C and analysed using different physicochemical models in order to quantify chemical affinity and heat (enthalpy) of sorption of water in fern spores. Fern spores hydrate slowly but dry rapidly at ambient relative humidity. Low Brunauer-Emmet-Tel…

SporesPhysiologyfungiEnthalpyTemperatureHumidityWaterSorptionPlant ScienceBiologybiology.organism_classificationSporeSpecies SpecificityEnvironmental chemistryBotanyFernsRelative humidityFernHydrateWater contentJournal of experimental botany
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Calorimetric properties of water and triacylglycerols in fern spores relating to storage at cryogenic temperatures.

2007

Abstract Storing spores is a promising method to conserve genetic diversity of ferns ex situ . Inappropriate water contents or damaging effects of triacylglycerol (TAG) crystallization may cause initial damage and deterioration with time in spores placed at −15 °C or liquid nitrogen temperatures. We used differential scanning calorimetry (DSC) to monitor enthalpy and temperature of water and TAG phase transitions within spores of five fern species: Pteris vittata , Thelypteris palustris , Dryopteris filix-mas , Polystichum aculeatum , Polystichum setiferum . The analyses suggested that these fern spores contained between 26% and 39% TAG, and were comprised of mostly oleic ( P. vittata ) or …

SporesPolystichum aculeatumDryopterisDryopterisGeneral Biochemistry Genetics and Molecular BiologyPhase TransitionBotanyFreezingWater contentTriglyceridesCryopreservationbiologyCalorimetry Differential ScanningfungiWaterPterisGeneral Medicinebiology.organism_classificationSporePolystichum setiferumPteris vittataFernsPolystichumFernGeneral Agricultural and Biological SciencesDesiccationCrystallizationCryobiology
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Nonlinear Complex PCA for spatio-temporal analysis of global soil moisture

2020

Soil moisture (SM) is a key state variable of the hydrological cycle, needed to monitor the effects of a changing climate on natural resources. Soil moisture is highly variable in space and time, presenting seasonalities, anomalies and long-term trends, but also, and important nonlinear behaviours. Here, we introduce a novel fast and nonlinear complex PCA method to analyze the spatio-temporal patterns of the Earth's surface SM. We use global SM estimates acquired during the period 2010-2017 by ESA's SMOS mission. Our approach unveils both time and space modes, trends and periodicities unlike standard PCA decompositions. Results show the distribution of the total SM variance among its differ…

State variable010504 meteorology & atmospheric sciencesFOS: Physical sciences020206 networking & telecommunications02 engineering and technology15. Life on landAtmospheric sciences01 natural sciencesPhysics::GeophysicsKernel (linear algebra)Nonlinear systemVariable (computer science)Physics - Atmospheric and Oceanic Physics13. Climate actionPrincipal component analysisAtmospheric and Oceanic Physics (physics.ao-ph)0202 electrical engineering electronic engineering information engineeringEnvironmental scienceWater cycleTime seriesWater contentPhysics::Atmospheric and Oceanic Physics0105 earth and related environmental sciences
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Deficit irrigation does not affect alternate bearing of ‘Valencia’ orange trees

2018

This study evaluated the effect of long-term partial rootzone drying and continuous deficit irrigation on the degree of alternate bearing of adult ‘Valencia’ orange trees grown in northern Sicily. Three irrigation strategies were imposed in summer from 2007 to 2011: irrigation with volumes corresponding to 100% of crop evapotranspiration applied to entire rootzone (CI), partial rootzone drying (PRD) with 50% of CI water applied to one alternated side of the rootzone, and continuous deficit irrigation (CDI) with 50% of CI water applied to both sides of the rootzone. The experiment was conducted on 48 adult orange trees arranged according to a randomized block design. Weather and soil paramet…

Stomatal conductanceBearing (mechanical)Fruit yieldDeficit irrigationBiennial bearingRelative water contentStomatal conductanceBiologyHorticultureAffect (psychology)Valencia orangeBiennial bearingfood.foodlaw.inventionSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeHorticulturefoodlawPartial rootzone drying
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