Search results for "salinity"

showing 10 items of 374 documents

Optimization of net power density in Reverse Electrodialysis

2019

Abstract Reverse Electrodialysis (RED) extracts electrical energy from the salinity difference between two solutions using selective ion exchange membranes. In RED, conditions yielding a large net power density (NPD) are generally desired, due to the still large cost of the membranes. NPD depends on a large number of physical and geometric parameters. Some of these, for example the inlet concentrations of concentrate and diluate, can be regarded as “scenario” variables, imposed by external constraints (e.g., availability) or chosen by different criteria than NPD maximization. Others, namely the thicknesses HCONC, HDIL and the velocities UCONC, UDIL in the concentrate and diluate channels, c…

OptimizationSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciMathematical optimization020209 energy02 engineering and technologyIndustrial and Manufacturing Engineering020401 chemical engineeringStack (abstract data type)Reversed electrodialysisReverse electrodialysi0202 electrical engineering electronic engineering information engineering0204 chemical engineeringElectrical and Electronic EngineeringSettore ING-IND/19 - Impianti NucleariCivil and Structural EngineeringPower densityMathematicsGradient ascentOptimization algorithmMechanical EngineeringElectric potential energySalinity gradientBuilding and ConstructionMaximizationNet (mathematics)PollutionNet power densityGeneral EnergyIon-exchange membranesEnergy
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Plant-Based Protein Hydrolysate Improves Salinity Tolerance in Hemp: Agronomical and Physiological Aspects

2021

Hemp (Cannabis sativa L.) is a multipurpose plant attracting increasing interest as a source for the production of natural fibers, paper, bio-building material and food. In this research we studied the agronomical performance of Cannabis sativa cv. Eletta Campana irrigated with saline water. Under those conditions, we tested the effect of protein hydrolysate (PH) biostimulant application in overcoming and/or balancing deleterious salinity effects. The results of the diverse treatments were also investigated at the physiological level, focusing on photosynthesis by means of a chlorophyll a fluorescence technique, which give an insight into the plant primary photochemical reactions. Four sali…

0106 biological sciencesChlorophyll aIrrigationhemp; salt stress; biostimulants; seeds yield; chlorophyll fluorescencePhotosynthesis01 natural sciencesHydrolysatelcsh:AgricultureCropchemistry.chemical_compoundSalt streChlorophyll fluorescencesalt stresslcsh:Sfood and beverages04 agricultural and veterinary sciencesSeeds yieldSaline waterBiostimulantSalinitybiostimulantsHorticulturechemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesChlorophyll fluorescenceHempAgronomy and Crop Science010606 plant biology & botanyAgronomy
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Effects of foliar application of glycine betaine and chitosan on Puccinellia distans (Jacq.) Pari, subjected to salt stress.

2019

Introduction:Using brackish water for irrigation may expose turfgrasses to salinity stress.Employing the best treatments to maintain high-quality turfs under saline conditions is animportant requirement for turfgrass management.Methods:We tested the response of ahalophyte grass,Puccinellia distans, to irrigation with saline solutions and to foliarapplication of two osmoprotectants, such as glycine betaine (GB) or chitosan (CH). Plantswere grown in pots under controlled conditions and irrigated with 200 mM or 600 mM ofNaCl solutions. The response to salinity treatments and osmoprotectant application wasevaluated after 90 days by measuring leaffiring, leaf density, shoot length and biomass, r…

IrrigationBrackish waterbiologyChemistryturfgrass glycine betaine chitosan Puccinellia distans salt stressbiology.organism_classificationGeneral Biochemistry Genetics and Molecular BiologySalinityHorticultureWater potentialHalophyteSettore BIO/03 - Botanica Ambientale E ApplicataShootSettore BIO/04 - Fisiologia VegetaleOsmoprotectantPuccinellia distansGeneral Agricultural and Biological SciencesBiologia futura
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Comparison between MBR and MB-MBR pilot plants subject to a gradual salinity increase: analysis of biokinetic and fouling behaviour

2014

Two pilot plants were investigated for the treatment of wastewater subject to a gradual increase of salinity. In particular, a membrane bioreactor (MBR) and a moving bed biofilm membrane bioreactor (MB-MBR) were studied. Carbon and ammonium removal, kinetic constants and membranes fouling rates have been assessed. Both plants showed very high efficiency in terms of carbon and ammonium removal and the gradual salinity increase led to a good acclimation of the biomass, as confirmed by the respirometric tests. Significant biofilm detachments from carriers were experienced, which contributed to increase the irreversible superficial cake deposition. However, this aspect prevented the pore foulin…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleMBR MB-MBR salinity kinetic costants fouling
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Weathering of evaporites: natural versus anthropogenic signature on the composition of river waters

2015

Weathering of evaporites strongly influences the chemistry of continental runoff, making surface waters poorly exploitable for civil uses. In south-central Sicily, this phenomenon is worsened by the occurrence of abandoned landfills of old sulphur and salt mines. The industrial evolution of the Bosco-S. Cataldo mining site leaved two landfills from the early exploitation of a sulphur mine followed by that of a kainite deposit. In particular, the weathering of these landfills leads the dissolved salt (TDS) values up to about 200 g l−1 in the Stincone–Salito Stream waters. This process induces the V, Cr and Fe desorption from sediments and particulates in the aqueous phase under reducing cond…

Evaporitechemistry.chemical_elementWeathering010501 environmental sciencesengineering.material010502 geochemistry & geophysics01 natural sciencesEvaporites; Landfill; Salt waters; Trace elements; Earth and Planetary Sciences (all); Agricultural and Biological Sciences (all); 2300Salt waterScavenging0105 earth and related environmental sciencesGeneral Environmental ScienceHydrology2300ParticulatesSulfurSettore GEO/08 - Geochimica E VulcanologiaSalinityEvaporitechemistryAgricultural and Biological Sciences (all)Environmental chemistryengineeringTrace elementGeneral Earth and Planetary SciencesHaliteLandfillGeneral Agricultural and Biological SciencesSurface runoffEarth and Planetary Sciences (all)Geology
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Salinity effects on asexual reproduction of Carybdea sp. (Cnidaria: Cubozoa)

2014

6 pages, 2 figures, 1 table, supplementary data http://plankt.oxfordjournals.org/content/36/2/585/suppl/DC1

CnidariaBuddingBuddingEcologybiologyMetamorphosisEcologymedia_common.quotation_subjectAsexual reproductionAquatic ScienceSurvival analysisbiology.organism_classificationSalinityBox jellyfishJellyfish bloomBox jellyfishMetamorphosisMixed modelsEcology Evolution Behavior and Systematicsmedia_commonJournal of Plankton Research
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Techno-economic evaluation of Reverse Electrodialysis process in different real environments

2018

Salinity Gradient Power is a promising renewable energy source based on the recovery of the chemical potential released from the mixing of solutions at different concentrations. Natural salinity gradients are extensively available worldwide in natural reservoirs. Reverse Electrodialysis is an innovative technology able to perform a direct conversion of the energy of mixing into electricity. Salinity gradients coming from natural resources or from human activities are worldwide available. In the present work a number of different scenarios, including natural resources (e.g. rivers, seas, lakes and salt ponds), industrial/urban wastes (e.g. brine and treated wastewaters) are analysed. The aim…

Reverse Electrodialysis Salinity Gradient Power Open-loop RED Gibbs free energy of mixing.
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Persentase Tutupan Terumbu Karang di Perairan Pasir Putih Kabupaten Manokwari

2017

Penelitian ini dilakukan pada bulan Oktober sampai November 2014 di perairan Pasir Putih Kabupaten Manokwari, berlokasi di Pantai Air Salobar. Tujuan penelitian adalah untuk mengetahui persentase tutupan terumbu karang, kualitas fisik-kimia air dan korelasi kualitas fisik-kimia air terhadap persentase tutupan terumbu karang di bagian barat daya perairan Pasir Putih, Manokwari. Metode yang digunakan untuk memperoleh data persentase tutupan karang adalah Point Intercept Transect (PIT) pada kedalaman 3 m (Transek I), 7 m (Transek II) dan 10 m (Transek III). Hasil pengamatan diperoleh persentase tutupan karang pada Transek I adalah 91%, Transek II adalah 78% dan Transek III adalah 54%. Kondisi …

geographygeography.geographical_feature_categorybiologyCoralCoral reefbiology.organism_classificationMontipora digitataMontiporaWater depthSalinityOceanographyWater qualityTransectGeologyJURNAL SUMBERDAYA AKUATIK INDOPASIFIK
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Agriculture and grazing environments

2019

Abstract The increase in world population increases the pressure on soil resources and triggers land degradation. Agricultural and grazing environments are one of the most vulnerable ecosystems to this process. Degradation affects importantly soil fertility. Millions of hectares are affected and soil productivity is endangered. This decreases soil ability to provide ecosystem services in quantity and quality. Managers and decision-makers should be open to adopt environmentally-friendly practices and contribute to land degradation neutrality. This chapter focuses on the problems induced by some of the most common soil degradation processes caused by in agriculture and grazing activities. Rev…

Soil salinityEnvironmental protectionAgriculturebusiness.industrySustainable managementSoil retrogression and degradationGrazingLand degradationEnvironmental scienceSoil fertilitybusinessEcosystem services
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A novel Reverse Electrodialysis application to generate power from low-grade heat

2015

A novel idea for the conversion of low-temperature heat into electricity is based on the generation of electricity from salinity gradients using a Reverse Electrodialysis (RED) device in a closed-loop system. In this concept a limited amount of artificial saline solutions can be used as the working fluids in a closed-loop. The solutions exiting from the RED unit are then regenerated, in order to restore the original salinity gradient, by means of a separation step, which uses low-temperature heat (40-100°C) as its energy source. A theoretical analysis of potentials of this technology is illustrated in the present work.

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciReverse Electrodialysis Heat Engine Closed loop Salinity Gradient Energy
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