Search results for "WATER"

showing 10 items of 9348 documents

DEVELOPMENT AND MODELING OF MEMBRANE PROCESSES FOR THE REGENERATION OF ACID PICKLING SOLUTIONS

2021

The doctoral thesis focuses on a novel integrated process for the recovery and valorisation of acid and metal salts present in the waste solutions of the pickling process. The proposed process is based on the integration of two innovative membrane technologies, the Diffusion Dialysis and the Membrane Distillation, coupled with a reactive precipitation section. This hybrid process allows the recovery and the enhancement of waste solutions, as well as optimal operating conditions for the continuous pickling process, thus improving its efficiency. Hydrochloric acid recovery was assessed through a detailed study on the Diffusion Dialysis process by implementing a wide experimental campaign usin…

membrane technologiedemonstrator plantIndustrial wastewaterSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimicipickling procecircular economyeconomic analysis optimizationmodeling
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Ecophysiological and molecular processes involved in water stress memory in pea: from gene expression regulation to plant hydromineral nutrition

2022

Climate change induces increasingly frequent periods of water deficits during the crop cycle. These periods of water stress negatively impact the plant, notably by limiting the availability of resources (water, mineral elements) and by limiting carbon fixation by the plant. In this context, several studies highlighted the beneficial effect of “priming” of a first stress on the response to a second stress by the induction of a transcriptional memory. This memory depends on epigenetic modifications implemented during the first stress. These modifications can regulate the expression of genes known as “memory genes” which have been characterized in the aerial parts of Arabidospsis and maize. Ho…

memory[SDV] Life Sciences [q-bio]water stresssystème racinaire nodulémémoirenutrientspoispeaéléments minérauxstress hydriquenodulated root system
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Inorganic Mercury Sequestration by a Poly(ethylene imine) Dendrimer in Aqueous Solution

2015

The interaction of the G-2 poly(ethylene imine) dendrimer L, derived from ammonia as initiating core, with Hg(II) and HgCl4 2− was studied in aqueous solution by means of potentiometric (pH-metric) measurements. Speciation of these complex systems showed that L is able to form a wide variety of complexes including 1:1, 2:1, 3:1 and 3:2 metal-to-ligand species, of different protonation states, as well as the anion complexes ((H7L)HgCl4) 5+ and ((H8L)HgCl4) 6+ . The stability of the metal complexes is very high, making L an excellent sequestering agent for Hg(II), over a large pH range, and a promising ligand for the preparation of functionalized activated carbons to be employed in the remedi…

mercuryImineInorganic chemistryPotentiometric titrationPharmaceutical Sciencechemistry.chemical_elementProtonationmercury dendrimers sequestration water contamination environmentArticleAnalytical Chemistrydendrimerspoly(ethylene imine)Metallcsh:QD241-441chemistry.chemical_compoundAmmoniacontaminationlcsh:Organic chemistryDendrimerDrug DiscoveryremediationPhysical and Theoretical ChemistryAqueous solutionMolecular StructureOrganic ChemistryMercury (element)chemistryChemistry (miscellaneous)visual_artPotentiometryvisual_art.visual_art_mediumMolecular MedicineEnvironmental PollutantsIminesPolyethylenesMolecules
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Increased sulfate availability in saline water promotes hydrogen sulfide production in fish organic waste

2020

The risk of hydrogen sulfide (H2S) production can be a challenge in marine land-based recirculating aquaculture systems (RAS). Hydrogen sulfide is a toxic gas that can cause massive fish mortality even at low concentrations, and in addition, serious odour problems in the surroundings. It is a bacterial by-product originating from the degradation of organic matter in sulfur-rich waters such as marine waters. In order to hinder H2S production in marine land-based RAS, more information on the H2S production conditions and the associated microbiology is needed. In this study, the production of H2S from rainbow trout (Oncorhynchus mykiss) organic waste was examined using a novel H2S measurement …

merivesisulfate reducing bacteriasulfaatitrikkivetyhydrogen sulfidesulfateorgaaninen ainesequipment and suppliesorganic matterseawater
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Data from: Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing

2014

Freshwaters ecosystems are critical but fragile environments directly affecting society and its welfare. However, our understanding of genuinely freshwater microbial communities, constrained by our capacity to manipulate its prokaryotic participants in axenic cultures, remains very rudimentary. Even the most abundant components, freshwater Actinobacteria, remain largely unknown. Here, applying deep metagenomic sequencing to the microbial community of a freshwater reservoir, we were able to circumvent this traditional bottleneck and reconstruct de novo seven distinct streamlined actinobacterial genomes. These genomes represent three new groups of photoheterotrophic, planktonic Actinobacteria…

metagenomicsLignin DegradationLife Sciencesactinobacterium acAMD-5Actinobacteriamedicine and health careactinobacterium acAMD-2Freshwater reservoiractinobacterium acMicro-4MedicineRhodopsinsactinobacterium acIB-AMD-7actinobacterium acIB-AMD-6actinobacterium acMicro-1
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Decomposition Process of Carboxylate MOF HKUST-1 Unveiled at the Atomic Scale Level

2016

HKUST-1 is a metal-organic framework (MOF) which plays a significant role both in applicative and basic fields of research, thanks to its outstanding properties of adsorption and catalysis but also because it is a reference material for the study of many general properties of MOFs. Its metallic group comprises a pair of Cu2+ ions chelated by four carboxylate bridges, forming a structure known as paddle-wheel unit, which is the heart of the material. However, previous studies have well established that the paddle-wheel is incline to hydrolysis. In fact, the prolonged exposure of the material to moisture promotes the hydrolysis of Cu-O bonds in the paddle-wheels, so breaking the crystalline n…

metal-organic-frameworks MOF electron paramagnetic resonance EPR ESR water structural stabilityInorganic chemistryFOS: Physical sciences02 engineering and technology010402 general chemistry01 natural sciencesAtomic unitslaw.inventionCatalysisMetalCrystalchemistry.chemical_compoundAdsorptionlawPhysics - Chemical PhysicsCarboxylatePhysical and Theoretical ChemistryElectron paramagnetic resonanceChemical Physics (physics.chem-ph)Condensed Matter - Materials ScienceChemistryMaterials Science (cond-mat.mtrl-sci)021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsGeneral EnergyChemical engineeringvisual_artvisual_art.visual_art_mediumMetal-organic framework0210 nano-technologyThe Journal of Physical Chemistry C
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Zastosowanie skorup jaj do usuwania metali ciężkich ze ścieków z instalacji odsiarczania spalin

2018

Przeprowadzono badania skuteczności usuwania kationów Ni, Cu i Cd z roztworów wodnych z zastosowaniem wapienia marglistego, skorup jaj kurzych przeznaczonych do konsumpcji oraz skorup jaj kurzych po wylęgu, których głównym składnikiem jest węglan wapnia. Skorupy jaj kurzych są produktem ubocznym przemysłu spożywczego, który może znaleźć zastosowanie jako zamiennik wapienia marglistego wykorzystywanego do usuwania metali ciężkich z instalacji mokrego odsiarczania spalin. Do badań użyto mieszanych roztworów Ni, Cu i Cd składem zbliżonych do ścieków z instalacji mokrego odsiarczania spalin: Ni (0,526-3,118 mg/dm3 ), Cu (0,483-4,285 mg/dm3 ) i Cd (0,372-0,875 mg/dm3 ). Metale oznaczano metodą a…

metale ciężkieindustrial wastewaterścieki przemysłowewytrącanieprecipitationheavy metalschicken egg shellsskorupy jaj kurzychProceedings of ECOpole
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Treated waste water reuse impact on soil microbial community structure as assessed by Automated Ribosomal Intergenic Spacer Analysis (ARISA) fingerpr…

2007

International audience

microbe[SDV] Life Sciences [q-bio][SDE] Environmental Sciences[SDV]Life Sciences [q-bio]Automated Ribosomal Intergenic Spacer AnalysisARISA[SDE]Environmental Scienceswaste water reusefingerprint techniqueComputingMilieux_MISCELLANEOUSsoil
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Microbial fuel cell with Cu-B cathode and KMnO4 catholyte

2017

The increasing of standard living causes the increases energy consumption and waste or wastewater production. The possibility to combine wastewater treatment and electricity production can accomplish a microbial fuel cell. The possibility of wastewater treatment using the Cu-B catalyst with KMnO4 catholyte for microbial fuel cells is presented in this paper. The measurements covered comparison of changes in the concentration of COD, NH4+ and NO3- in the reactor without aeration, with aeration and with using a microbial fuel cell (with Cu-B cathode and KMnO4 catholyte). The reduction time for COD with the use of microbial fuel cell with the Cu-B catalyst (and KMnO4 catholyte) is similar to t…

microbial fuel cellwastewater treatmentcathodeNi-Co alloysustainable developmentclean technologyenvironment protectionrenewable energy sourcesInfrastruktura i Ekologia Terenów Wiejskich - Infrastructure and Ecology of Rural Areas
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Electricity production in microbial fuel cell with Cu-B alloy as catalyst of anode

2015

Considering the increasing standard of living, the energy consumption increases as well, and so does waste production. However, there is a possibility to combine energy production and wastewater treatment. A device that can accomplish this task is a microbial fuel cell. In microbial fuel cells activated sludge bacteria can be used for electricity production during wastewater treatment. One of the problems with microbial fuel cells is a low current density of those energy sources. Nonetheless, it is possible to increase the current density by using the catalyst for fuel electrode (anode) – as long as a low cost catalyst can be found. The possibility of wastewater treatment using the Cu-B all…

microbial fuel cellwastewater treatmentenvironmental engineeringcopper boride catalystrenewable energy sources
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