Search results for "soil water"

showing 10 items of 840 documents

Comparing Physical Quality of Forest and Pasture Soils in a Sicilian Watershed

2011

Forest and pasture soils should have differing properties due, for example, to differing root characteristics or livestock trampling rates, but contradictory results are reported in the literature. The surface soil physical and hydraulic properties of five forest and pasture sites were determined in a Sicilian watershed. In general, forest soils had a significantly lower bulk density, b (by 17 to 35%), and a higher field saturated hydraulic conductivity, Kfs (by a factor of 3.4-11.5) than pasture soils. Differences between water retention characteristics of forest and pasture soils were low when high levels of organic matter, OM, content (> 7.1%) were detected for both land uses. The mean …

geographysoil physical qualityWatershedgeography.geographical_feature_categoryAgroforestrymedia_common.quotation_subjectSoil SciencePasturelanguage.human_languageSoil waterlanguageSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliEnvironmental scienceQuality (business)SFH techniqueSicilianmedia_commonSoil Science Society of America Journal
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FeOOH-modified clay sorbents for arsenic removal from aqueous solutions

2019

The presence of arsenic (As) in natural and anthropogenic soils causes severe pollution of groundwater due to its harmful carcinogenic effects. The present work describes the research activities for searching of appropriate innovative sorbents based on clay material for As sorption using iron oxy-hydroxide modification. Natural and manufactured clay was chosen for comparison of modification efficiency in order to obtain best sorption results for As(V). The results of pilot testing were obtained and the sorption was studied as a function of initial arsenic concentration. Obtained results indicate that modification of clay with Fe compounds significantly improves the sorption capacity of a ne…

inorganic chemicalsPollutionAqueous solutionmedia_common.quotation_subjectSoil Sciencechemistry.chemical_elementSorption02 engineering and technologyPlant Science010501 environmental sciences021001 nanoscience & nanotechnologycomplex mixtures01 natural scienceschemistryEnvironmental chemistryIron contentSoil waterWater treatment0210 nano-technologyGroundwaterArsenic0105 earth and related environmental sciencesGeneral Environmental Sciencemedia_commonEnvironmental Technology & Innovation
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Testing the shape-similarity hypothesis between particle-size distribution and water retention for Sicilian soils

2012

Application of the Arya and Paris (AP) model to estimate the soil water retention curve requires a detailed description of the particlesize distribution (PSD) but limited experimental PSD data are generally determined by the conventional sieve-hydrometer (SH) method. Detailed PSDs can be obtained by fitting a continuous model to SH data or performing measurements by the laser diffraction (LD) method. The AP model was applied to 40 Sicilian soils for which the PSD was measured by both the SH and LD methods. The scale factor was set equal to 1.38 (procedure AP1) or estimated by a logistical model with parameters gathered from literature (procedure AP2). For both SH and LD data, procedure AP2 …

lcsh:AgricultureMechanical Engineeringlcsh:SSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliBioengineeringArya and Paris model laser diffraction method particle size distribution soil water retention curve.lcsh:Agriculture (General)lcsh:S1-972Arya and Paris model laser diffraction method particle size distribution soil water retention curveIndustrial and Manufacturing Engineering
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Land surface temperature representativeness in a heterogeneous area through a distributed energy-water balance model and remote sensing data

2010

Land surface temperature is the link between soil-vegetation-atmosphere fluxes and soil water content through the energy water balance. This paper analyses the representativeness of land surface temperature (LST) for a distributed hydrological water balance model (FEST-EWB) using LST from AHS (airborne hyperspectral scanner), with a spatial resolution between 2–4 m, LST from MODIS, with a spatial resolution of 1000 m, and thermal infrared radiometric ground measurements that are compared with the representative equilibrium temperature that closes the energy balance equation in the distributed hydrological model. <br><br> Diurnal and nocturnal images are analyzed due to the non s…

lcsh:GE1-350010504 meteorology & atmospheric scienceslcsh:Tlcsh:Geography. Anthropology. Recreation0207 environmental engineeringEnergy balance02 engineering and technology15. Life on landlcsh:Technology01 natural scienceslcsh:TD1-1066Spatial heterogeneityWater balanceHydrology (agriculture)lcsh:GSoil waterEnvironmental sciencelcsh:Environmental technology. Sanitary engineering020701 environmental engineeringScale (map)Spatial analysisWater contentlcsh:Environmental sciences0105 earth and related environmental sciencesRemote sensingHydrology and Earth System Sciences
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Yielding of a quartz sand from saturated to dry state

2020

The paper presents the results of an experimental work where we analyse the behaviour of an unsaturated quartz sand in a wide range of degree of saturation (from saturated to dry state). The possibility of anticipating the hydro-mechanical behaviour of the soils when they approach the dry state is fundamental in many areas. An extensive experimental program, including controlled-suction and constant water content oedometric tests, was carried out to deeply analyse the water retention behaviour and the relationship between the yield stress and suction (Loading-Collapse curve). All elasto-plastic models provide a monotonically increase of the yield stress with suction. This assumption implies…

lcsh:GE1-350021110 strategic defence & security studiesWork (thermodynamics)Materials scienceSuctionSettore ICAR/07 - GeotecnicabehaviorDegree of saturation0211 other engineering and technologies02 engineering and technologyGranular materialcompressionWater retentionYielding model unsaturated soilSoil watermedicineGeotechnical engineeringmedicine.symptomQuartzWater contentlcsh:Environmental sciences021101 geological & geomatics engineering
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A physical model for the interaction between unsaturated soils and retaining structures

2020

Temporary and permanent retaining structures interact with soils that are usually in unsaturated conditions. In this work, a 1g-scale physical model is presented to investigate the interactions between retaining walls and unsaturated soils. The physical model is equipped with a water-filled hydraulic cylinder connected to a pressure-volume controller to measure the horizontal component of the later earth thrust and high capacity tensiometers to measure soil matric suction. A system of low-friction linear guideways has been installed at the base of the wall-model. The failure surface is observed through a 3 cm thick glass wall on one side of the container. A series of images are acquired dur…

lcsh:GE1-350021110 strategic defence & security studiesWork (thermodynamics)SuctionCylinder (containers)Velocity measurementGuideways0211 other engineering and technologiesBase (geometry)Thrust02 engineering and technologyFailure (mechanical)Hydraulic cylinderParticle image velocimetrySoil waterDisplacement fieldSoilsGeotechnical engineeringlcsh:Environmental sciencesGeology021101 geological & geomatics engineeringE3S Web of Conferences
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BEST-2K Method for Characterizing Dual-Permeability Unsaturated Soils with Ponded and Tension Infiltrometers

2019

This study presents a new method (BEST-2K) that extends the existing BEST methods for use in characterizing the water retention and hydraulic conductivity functions of matrix and fast-flow regions in dual-permeability soils. BEST-2K requires input information from two water infiltration experiments that are performed under ponded (Beerkan) and unsaturated (tension infiltrometer) conditions at the surface. Other required inputs include water content measurements and the traditional BEST inputs (particle size distribution and bulk density). In this study, first, a flowchart of the BEST-2K method was developed and illustrated with analytically generated data for a synthetic dual-permeability s…

lcsh:GE1-350Beerkan BEST method Dual Permeability Hydraulic characterization Tension infiltrometerlcsh:QE1-996.50207 environmental engineeringSoil Science04 agricultural and veterinary sciences02 engineering and technology15. Life on land6. Clean waterlcsh:GeologyPermeability (earth sciences)Soil water040103 agronomy & agricultureSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestali0401 agriculture forestry and fisheriesEnvironmental scienceGeotechnical engineering[SDE.BE]Environmental Sciences/Biodiversity and Ecology020701 environmental engineeringlcsh:Environmental sciencesComputingMilieux_MISCELLANEOUS
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Magnetic Susceptibility in the Soils Along Communication Routes in the Town of Opole

2019

Magnetic susceptibility measurements were taken in eight selected streets of Opole, with diversified vehicle traffic intensity. The experiment surfaces were marked on every street, with two separate zones: A – a strip directly adjacent to the road and B – a strip 1 m away from the road edge. The carried out research indicated considerable influence of communication-generated pollution, with simultaneous influence of other local emission sources. The relation of magnetic anomalies was indicated, which may be the result of ferromagnetic materials aggregation, originating mainly from combustion processes. The road structure, including the surface condition, the main construction material and s…

lcsh:GE1-350HydrologyTraffic pollutiontraffic pollutionMagnetic susceptibilitylcsh:TD1-1066Soil waterEnvironmental scienceurban soilslcsh:Environmental technology. Sanitary engineeringlcsh:Environmental sciencesEcology Evolution Behavior and SystematicsGeneral Environmental Sciencemagnetic susceptibilityJournal of Ecological Engineering
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Tillage Versus No-Tillage. Soil Properties and Hydrology in an Organic Persimmon Farm in Eastern Iberian Peninsula

2020

There is an urgent need to implement environmentally friendly agriculture management practices to achieve the Sustainable Goals for Development (SDGs) of the United Nations by 2030. Mediterranean agriculture is characterized by intense and millennia-old tillage management and as a consequence degraded soil. No-Tillage has been widely examined as a solution for soil degradation but No-Tillage relies more on the application of herbicides that reduce plant cover, which in turn enhances soil erosion. However, No-Tillage with weed cover should be researched to promote organic farming and sustainable agriculture. Therefore, we compare Tillage against No-Tillage using weed cover as an alternative …

lcsh:Hydraulic engineeringGeography Planning and Developmentrunoff010501 environmental sciencesAquatic Science01 natural sciencesBiochemistryTillagesoillcsh:Water supply for domestic and industrial purposeslcsh:TC1-978Soil retrogression and degradationSustainable agricultureweedsNo-Tillage0105 earth and related environmental sciencesWater Science and Technologylcsh:TD201-500rainfall simulation04 agricultural and veterinary scienceserosionSettore AGR/02 - Agronomia E Coltivazioni ErbaceepersimmonTillageAgronomySoil waterINGENIERIA CARTOGRAFICA GEODESIA Y FOTOGRAMETRIA040103 agronomy & agricultureOrganic farmingErosion0401 agriculture forestry and fisheriesEnvironmental sciencePlant coverSurface runoffweedIberian PeninsulaWater
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Application of EMI and FDR Sensors to Assess the Fraction of Transpirable Soil Water over an Olive Grove

2018

Accurate soil water status measurements across spatial and temporal scales are still a challenging task, specifically at intermediate spatial (0.1–10 ha) and temporal (minutes to days) scales. Consequently, a gap in knowledge limits our understanding of the reliability of the spatial measurements and its practical applicability in agricultural water management. This paper compares the cumulative EM38 (Geonics Ltd., Mississauga, ON, Canada) response collected by placing the sensor above ground with the corresponding soil water content obtained by integrating the values measured with an FDR (frequency domain reflectometry) sensor. In two field areas, characterized by different soil clay conte…

lcsh:Hydraulic engineeringSoil texture0208 environmental biotechnologyGeography Planning and Developmentfraction transpiration soil waterSoil science02 engineering and technologyAquatic ScienceBiochemistryrelative transpirationEM38; FDR sensor; Fraction transpiration soil water; Olive grove; Relative transpiration; Sap flow; Biochemistry; Geography Planning and Development; Aquatic Science; Water Science and Technologylcsh:Water supply for domestic and industrial purposessap flowEMIlcsh:TC1-978CalibrationReflectometrySubsurface flowTemporal scalesolive grove; sap flow; relative transpiration; FDR sensor; EM38; fraction transpiration soil waterTranspirationWater Science and TechnologyPlanning and Developmentlcsh:TD201-500GeographyEM38FDR sensor04 agricultural and veterinary sciencesolive grove020801 environmental engineeringSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesWater
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