Search results for "hydroxide"

showing 7 items of 317 documents

Activation of Stainless Steel 316L Anode for Anion Exchange Membrane Water Electrolysis

2023

The increased emphasis on renewable energy has resulted in a surge of R&D efforts into hydrogen and battery research. The intensive electrochemical environment surrounding the anodic oxygen evolution reaction (OER) has plagued both the activity and stability of the catalytic layer, substrate and porous transport layer, ultimately affecting both these industries. Herein, we report the benefits of potential cycling (PC) a 316L stainless steel felt porous transport layer (PTL) for use in anion exchange membrane water electrolysis. The PC increased surface roughness and created a CrFe5Ni2-OxHy layer through the oxidation of iron as shown by SEM, EDS, XPS, XRD and Raman spectroscopy. Post-PC tes…

nianodeoxidationnifecr hydroxideporous transport layer316l stainless steelanion exchange membrane water electrolysisVDP::Teknologi: 500electrochemical impedance spectroscopyoxygen evolution reactionevolutionElectrochemistryelectrocatalystfilmspotential cycling
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Preparation, Characterisation and Photocatalytic Activity of Zn,Al Oxides Derived from Zn,Al LDHs

2009

photocatalysiZnAl2O4Layered double hydroxideZnOSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Assessment of Physical and Chemical Stability of Different Magnesium Compounds in Tablets

2020

Modern lifestyle, excessive chemicalization of agricultural products, excessive processing and refining of food, cause a decrease in daily intake of magnesium, cation with an extremely important role in prevention and treatment of many diseases. As a result, there arises the need for extra magnesium intake in the form of dietary supplements. In this study were evaluated the physical and chemical stability of magnesium-containing tablets, depending on the active compound and the excipients used. Magnesium tablets in the form of orotate, lactate, citrate, oxide and hydroxide were taken into study and physical and chemical stability were observed over the validity period, at 6 and at 12 month…

physicochemical stabilityDaily intakeMaterials Science (miscellaneous)Oxidechemistry.chemical_elementGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundMaterials ChemistryFood scienceGeneral Pharmacology Toxicology and PharmaceuticsChemical composition2. Zero hungerMagnesium intakeMagnesiumProcess Chemistry and TechnologytabletsGeneral EngineeringGeneral ChemistryGeneral Medicinemagnesium compoundsvalidity period.3. Good healthchemistryActive compound[SDE]Environmental SciencesHydroxideChemical stability
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Influence of different dehydration levels on volatile profiles, phenolic contents and skin hardness of alkaline pre-treated grapes cv Muscat of Alexa…

2020

A dehydration experiment was carried out on Vitis vinifera L. cv Muscat of Alexandria (synonym Zibibbo) following the process for the production of renowned special dessert wines produced on Pantelleria island (Sicily, Italy). Harvested berries were pre-treated in a sodium hydroxide dipping solution (45 g/L, dipped for 185 s, 25 &deg

postharvest dehydrationHealth (social science)linaloolPlant Sciencelcsh:Chemical technology01 natural sciencesHealth Professions (miscellaneous)Microbiologychemistry.chemical_compound0404 agricultural biotechnologyLinaloolNerolmedicinelcsh:TP1-1185Dehydrationalkaline pre-treatmentAromaCitronellolWinearoma compoundaroma compoundsbiology010401 analytical chemistryfood and beveragesSettore AGR/15 - Scienze E Tecnologie Alimentari04 agricultural and veterinary sciencesbiology.organism_classificationmedicine.diseasealkaline pre-treatments040401 food science0104 chemical sciencesHorticulturePassito winechemistrySodium hydroxideZibibbo<i>Passito</i> wineGeraniolFood Science
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Antifouling Mortars for Underwater Restoration

2022

This research has focused on the assessment of the compositional features and mechanical and antifouling performances of two different mortars formulated for an underwater setting, and which contain Mg(OH)2 as an antifouling agent. Regarding the mechanical characterization, the uniaxial compressive strength and flexural strength were measured. The composition of the materials was explored by differential thermal/thermogravimetric analysis (DTA-TG), X-ray diffraction analysis (XRPD), and scanning electronic microscopy (SEM) coupled with EDS microanalysis. The assessment of the biological colonization was evaluated with colorimetric analysis and image analysis. The results suggest that both m…

restorationgeomaterialsbiofouling geomaterials magnesium hydroxide mortars nanoparticles restoration submerged sitesGeneral Chemical Engineeringbiofoulingsubmerged sitesPetrologíananoparticlesGeneral Materials Sciencemortarsmagnesium hydroxide; mortars; submerged sites; biofouling; geomaterials; restoration; nanoparticlesSettore GEO/09 -Georis. Miner.e Appl.Mineral.-Petrogr. per l'Ambi.ed i B.Cult.magnesium hydroxideNanomaterials
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Effect of Reaction Conditions on the Coprecipitation of Ni(OH)2 for Lithium-Ion Batteries

2023

Electrochemical performance of cathode active materials (CAMs) is dependent on the properties of coprecipitated precursors (pCAMs). This is a sensitive process affected by several reaction parameters such as temperature, pH, concentration of reactants, agitation rate, and residence time. In this paper, the effect of parameters influencing the particle size growth and the physical properties, such as particle morphology and tapped density, was studied in the coprecipitation of Ni(OH)2. Formation of a homogeneous population with narrow particle size distribution was observed, followed by a more heterogeneous population of dense particles. Ammonia concentration and residence time had significa…

tietokoneavusteinen valmistuscoprecipitation of Ni(OH)2battery chemicalslithium-ion batteriesnickelhydroxidelitiumioniakut
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CCDC 1512900: Experimental Crystal Structure Determination

2017

Related Article: Shobhraj Haldar, Gonela Vijaykumar, Luca Carrella, Steven Batha, Ghezai T. Musie, Manindranath Bera|2017|ACS Omega|2|1535|doi:10.1021/acsomega.7b00189

tri-sodium (bis(mu-22'-((2-oxidopropane-13-diyl)bis((((pyridin-2-yl)methyl)azanediyl)methylene))dibenzoato)-(mu-phosphato)-tetra-copper) dihydroxide tetradecahydrateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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