Search results for "Science and technology"

showing 10 items of 1592 documents

Assessment of the Total Factor Productivity Change in the Spanish Ports: Hicks–Moorsteen Productivity Index Approach

2016

AbstractThe assessment of the productivity growth of ports is essential to improve their performance and competitiveness. Although there are several nonparametric methodologies to compute the productivity change, the Hicks–Moorsteen productivity index is the only multiplicatively completed index that can be computed without price data. For the first time, the total factor productivity (TFP) change of a sample of ports is evaluated. The analysis covers the 28 ports comprising the Spanish port system, using data over the period 2005–2012. The drivers of TFP—technical change, technical efficiency, mix efficiency, and residual scale efficiency—are also investigated. The results indicate that fr…

050210 logistics & transportationIndex (economics)Operations research05 social sciencesPartial productivityOcean EngineeringPort (computer networking)Technical changeScale (social sciences)0502 economics and businessEconomicsEconometricsData envelopment analysisTotal factor productivityProductivity050203 business & managementWater Science and TechnologyCivil and Structural EngineeringJournal of Waterway, Port, Coastal, and Ocean Engineering
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Multi-criteria analysis applied to multi-objective optimal pump scheduling in water systems

2019

Abstract This work presents a multi-criteria-based approach to automatically select specific non-dominated solutions from a Pareto front previously obtained using multi-objective optimization to find optimal solutions for pump control in a water supply system. Optimal operation of pumps in these utilities is paramount to enable water companies to achieve energy efficiency in their systems. The Fuzzy Technique for Order of Preference by Similarity to Ideal Solution (FTOPSIS) is used to rank the Pareto solutions found by the non-dominated sorting genetic algorithm (NSGA-II) employed to solve the multi-objective problem. Various scenarios are evaluated under leakage uncertainty conditions, res…

050210 logistics & transportationMathematical optimizationMulti-criteria analysisWater distribution systemsComputer science0208 environmental biotechnology05 social sciencesScheduling (production processes)02 engineering and technologyMulti-objective optimization020801 environmental engineeringMulti-objective optimizationMulti criteria0502 economics and businessSettore ING-IND/17 - Impianti Industriali MeccaniciOptimal pump schedulingMATEMATICA APLICADAWater Science and Technology
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Substituted Dibenzothiophenes I: Synthesis, Chromatography, Mass Spectrometry and Structure Elucidation by1H NMR Spectroscopy

1992

Abstract Some polychlorinated and polymethylated dibenzothiophenes have been synthesized to serve as model compounds in environmental analysis. In order to obtain pure isomers, the synthesis mixtures have been fractionated with reversed-phase high performance liquid chromatography. In spite of a high sensitivity, mass spectrometry does not provide any reliable way to determine the precise structures of different isomers. Therefore, 1H NMR spectroscopy has been utilized as an aid in their analysis. The structures for two isomeric tetramethyldibenzothiophenes could be suggested on the basis of their 1H NMR spectra. Also some proposals for possible structures of two isomeric trimethyldibenzoth…

1h nmr spectroscopyChromatographyChemistryHealth Toxicology and MutagenesisPublic Health Environmental and Occupational HealthSoil ScienceReversed-phase chromatographyMass spectrometryPollutionHigh-performance liquid chromatographyAnalytical ChemistryProton NMRStructural isomerEnvironmental ChemistryOrganic chemistryGas chromatographyWaste Management and DisposalWater Science and TechnologyInternational Journal of Environmental Analytical Chemistry
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Formation of 2,4,6-trichlorophenol and 2,4,6-trichloroanisole during treatment and distribution of drinking water

1995

Biomethylation of 2,4,6-trichlorophenol to the potent off-flavour compound 2,4,6-trichloroanisole has previously been found to cause taste and odour problems in drinking water. In the present study, both compounds were detected in seemingly unpolluted surface waters. However, the highest concentrations of 2,4,6-trichloroanisole in tap water were caused by the formation of 2,4,6-trichlorophenol during chlorine disinfection of drinking water and subsequent methylation of this compound in the distribution system. Analysis of samples from several sites in the investigated distribution systems showed that there was a substantial spatial and temporal variation of the concentration of both 2,4,6-t…

246-TrichloroanisoleEnvironmental EngineeringOff-flavourchemistry.chemical_elementchemistry.chemical_compoundchemistryTap waterEnvironmental chemistry246-TrichlorophenolChlorineWater treatmentGas chromatographyPhenolsWater Science and TechnologyWater Science and Technology
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Plant-wide modelling in wastewater treatment: showcasing experiences using the Biological Nutrient Removal Model

2020

Abstract Plant-wide modelling can be considered an appropriate approach to represent the current complexity in water resource recovery facilities, reproducing all known phenomena in the different process units. Nonetheless, novel processes and new treatment schemes are still being developed and need to be fully incorporated in these models. This work presents a short chronological overview of some of the most relevant plant-wide models for wastewater treatment, as well as the authors' experience in plant-wide modelling using the general model BNRM (Biological Nutrient Removal Model), illustrating the key role of general models (also known as supermodels) in the field of wastewater treatment…

2019-20 coronavirus outbreakEnvironmental EngineeringProcess (engineering)Computer scienceSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)0208 environmental biotechnologySewagePlant-wide modelling02 engineering and technologyWastewater treatmentWastewater010501 environmental sciencesModels BiologicalWaste Disposal Fluid01 natural sciencesField (computer science)Physico-chemicalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesWater Science and TechnologySewagebusiness.industryChemical and biological processesWater resource recoveryNutrients020801 environmental engineeringWork (electrical)Sewage treatmentAigües residuals Plantes de tractamentBiochemical engineeringbusinessWaste disposalFisicoquímica
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Analytical solution of kinematic wave time of concentration for overland flow under green-ampt infiltration

2015

In this paper the well-known kinematic wave equation for computing the time of concentration for impervious surfaces has been extended to the case of pervious hillslopes, accounting for infiltration. An analytical solution for the time of concentration for overland flow on a rectangular plane surface is derived using the kinematic wave equation under the Green-Ampt infiltration. The relative time of concentration is defined as the ratio between the time of concentration of an infiltrating plane and the soil sorptivity time scale, depending on the normalized rainfall intensity and a parameter synthesizing the soil and hillslope characteristics. It is shown that for a more complex case (corre…

2300Sorptivity0208 environmental biotechnologyGreen-Ampt infiltration model; Hillslope hydrology; Kinematic wave equations; 2300; Environmental Chemistry; Water Science and Technology; Civil and Structural Engineering02 engineering and technologyMechanicsGreen-Ampt infiltration modelHillslope hydrologyPhysics::Geophysics020801 environmental engineeringKinematic wave equationKinematic waveInfiltration (hydrology)Error analysisImpervious surfaceEnvironmental ChemistrySettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliGeotechnical engineeringSurface runoffTime of concentrationGeologyGeneral Environmental ScienceWater Science and TechnologyCivil and Structural Engineering
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Soil moisture variations from boreal forests to the tundra

2023

Soil moisture has a profound influence on life on Earth, and this vital water resource varies across space and time. Here, we explored soil moisture variations in boreal forest and tundra environments, where comprehensive soil moisture datasets are scarce. We installed soil moisture sensors up to 14 cm depth at 503 measurement sites within seven study areas across northern Europe. We recorded 6,138,528 measurements to capture soil moisture variations of the snowless season from April to September 2020. We described the spatio-temporal patterns of soil moisture, and test how these patterns are linked to topography and how these links vary in space and time. We found large spatial variation a…

4112 ForestrymaaperäkosteusSoil waterWetlandSoil wetnessSubarcticAlpinemetsätWater Science and Technologymittausmenetelmät
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Constraining Uncertainty in Projected Gross Primary Production With Machine Learning

2020

The terrestrial biosphere is currently slowing down global warming by absorbing about 30% of human emissions of carbon dioxide (CO2). The largest flux of the terrestrial carbon uptake is gross primary production (GPP) defined as the production of carbohydrates by photosynthesis. Elevated atmospheric CO2 concentration is expected to increase GPP (“CO2 fertilization effect”). However, Earth system models (ESMs) exhibit a large range in simulated GPP projections. In this study, we combine an existing emergent constraint on CO2 fertilization with a machine learning approach to constrain the spatial variations of multimodel GPP projections. In a first step, we use observed changes in the CO2 sea…

551.6Atmospheric Science010504 meteorology & atmospheric sciencesComputer scienceSoil ScienceAquatic Science01 natural sciences7. Clean energy010104 statistics & probabilityEconometricsErdsystemmodell -Evaluation und -Analyse[MATH]Mathematics [math]0101 mathematics0105 earth and related environmental sciencesWater Science and TechnologyEcologyEarth System ModelsPaleontologyPrimary productionmodelingForestryGross Primary Production15. Life on landCMIPFuture Climate Projections13. Climate actionEnvironmental scienceJournal of Geophysical Research: Biogeosciences
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Extent and persistence of soil water repellency induced by pines in different geographic regions

2018

The extent (determined by the repellency indices RI and RIc) and persistence (determined by the water drop penetration time, WDPT) of soil water repellency (SWR) induced by pines were assessed in vastly different geographic regions. The actual SWR characteristics were estimated in situ in clay loam soil at Ciavolo, Italy (CiF), sandy soil at Culbin, United Kingdom (CuF), silty clay soil at Javea, Spain (JaF), and sandy soil at Sekule, Slovakia (SeF). For Culbin soil, the potential SWR characteristics were also determined after oven-drying at 60°C (CuD). For two of the three pine species considered, strong (Pinus pinaster at CiF) and severe (Pinus sylvestris at CuD and SeF) SWR conditions we…

631 - Agricultura. Agronomía. Maquinaria agrícola. Suelos. Edafología agrícola0208 environmental biotechnologyRepellency indexSoil science02 engineering and technologySoilSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliClay soilWater Science and TechnologyFluid Flow and Transfer Processesrepellency indexbiologyMechanical EngineeringHydraulic engineering04 agricultural and veterinary sciencesbiology.organism_classificationPine020801 environmental engineeringRepellency index.Water repellencyLoamSoil water040103 agronomy & agricultureGeographic regions0401 agriculture forestry and fisheriesEnvironmental sciencePinus pinasterTC1-978Water drop penetration time
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Are remote sensing evapotranspiration models reliable across South American ecoregions?

2021

Many remote sensing-based evapotranspiration (RSBET) algorithms have been proposed in the past decades and evaluated using flux tower data, mainly over North America and Europe. Model evaluation across South America has been done locally or using only a single algorithm at a time. Here, we provide the first evaluation of multiple RSBET models, at a daily scale, across a wide variety of biomes, climate zones, and land uses in South America. We used meteorological data from 25 flux towers to force four RSBET models: Priestley–Taylor Jet Propulsion Laboratory (PT-JPL), Global Land Evaporation Amsterdam Model (GLEAM), Penman–Monteith Mu model (PM-MOD), and Penman–Monteith Nagler model (PME-VI).…

ATMOSPHERE WATER FLUXVEGETATION INDEXCalibration (statistics)Penman-MonteithBiomeRIPARIAN EVAPOTRANSPIRATIONFluxLand coverSURFACE-TEMPERATUREtranspirationSEMIARID ENVIRONMENTCARBON-DIOXIDEENERGY-BALANCE CLOSUREEvapotranspirationPenman–Monteith equationWater Science and TechnologyRemote sensingRAINFALL INTERCEPTIONLand useWACMOS-ET PROJECTEDDY COVARIANCE MEASUREMENTSMODISEarth and Environmental SciencesEnvironmental sciencePriestley-TaylorScale (map)
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