Search results for "Magnesium"

showing 10 items of 490 documents

Studies of structural composition distribution heterogeneity in ethylene/1-hexene copolymers using thermal fractionation technique (SSA)

2005

Abstract Investigations into the compositional heterogeneity of ethylene/1-hexene copolymers obtained with various zirconocene/MAO catalysts, either homogeneous or supported on inorganic carriers such as a complex of magnesium chloride with tetrahydrofuran or methyl alcohol, were conducted. The dependence between metallocene structure, as well as catalyst immobilization, and the compositional heterogeneity of the related products was investigated. It was found that the heterogeneity of copolymers is determined by the metallocene catalyst structure. The amount of peaks on the DSC thermograms of copolymers and their division increase with the increase of bulkiness of the ligand in the catalyt…

inorganic chemicalsMaterials scienceEthyleneMagnesiumchemistry.chemical_elementPost-metallocene catalystCondensed Matter PhysicsCatalysischemistry.chemical_compoundchemistryChemical engineeringPolymer chemistryCopolymerPhysical and Theoretical ChemistryZiegler–Natta catalystInstrumentationMetalloceneTetrahydrofuranThermochimica Acta
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Dissociation-constants of metat-ion-complexes with alkaline phosphatase from pig kidney.

1976

Using metal-ion buffers it was possible to remove Zn2+, Mg2+ and Mn2+ ions of pig kidney alkaline phosphatase reversibly. The dissociation constants obtained are KEMg: 4 X 10(-7) M, KEMn: 4 X 10(-8) M and KEZn: 8 X 10(-13) M (22 degrees C, pH: 9.6, mu: 0.07).

inorganic chemicalsPharmacologyManganeseChemistryCations DivalentSwinePig kidneyIronInorganic chemistryCell BiologyAlkaline PhosphataseKidneyIonDissociation constantCellular and Molecular NeuroscienceKineticsZincMolecular MedicineAlkaline phosphataseAnimalsCalciumMagnesiumMolecular BiologyExperientia
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Heterogeneous fenton oxidation using magnesium ferrite nanoparticles for ibuprofen removal from wastewater: optimization and kinetics studies

2020

In this study, the catalytic properties of Fenton-like catalyst based on magnesium ferrite nanoparticles for IBP degradation were examined. Structural and morphological studies showed the low crystallinity and mesoporous structure for the catalyst obtained via a glycine-nitrate method. The influences of catalyst dosage, oxidant concentration, and solution pH on the pollutant degradation were investigated. The pseudo-first-order model describes kinetic data, and under optimal condition (catalyst dose of 0.5 g L-1, H2O2 concentration of 20.0 mM, and pH of 8.0), apparent rate constant reached 0.091 min-1. It was shown that Fenton reaction was mainly induced by iron atoms on the catalyst surfac…

inorganic chemicalshapetusMaterials scienceArticle SubjectKineticsNanoparticlejätevesi02 engineering and technology010501 environmental sciences01 natural sciencesCatalysisCrystallinitykatalyytitReaction rate constantT1-995General Materials ScienceTechnology (General)jäteveden käsittely0105 earth and related environmental sciencesvedenpuhdistusmagnesium ferrite ; ibuprofen removal ; fenton oxidationlääkeaineet021001 nanoscience & nanotechnologyibuprofeeniWastewaterChemical engineeringnanohiukkasetLeaching (metallurgy)0210 nano-technologyMesoporous material
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Effects of magnesium chloride on the contractile response of uterus to several agonists in Ca-free solution

1987

Abstract The effects of MgCl2 on the oestrogen-dominated rat uterus have been examined. Tissues were preincubated in a Ca2+- and Mg2+-free medium containing 3 mM EDTA. Most experiments were subsequently performed in a similar medium containing either no EDTA or EDTA (1 mM). When MgCl2 was added cumulatively (1–32 mM) no contractile responses were obtained in Ca,Mg-free medium or in Ca,Mg-free high K+ solution. When 2 mM CaCl2 as added, a sustained contraction was obtained. Subsequent addition of cumulative concentrations of MgCl2 caused concentration-dependent relaxation. Oxytocin, 2 μM, produced a small and sustained contraction in a Ca,Mg-free medium. Addition of MgCl2, 2 mM, increased th…

inorganic chemicalsmedicine.medical_specialtyContraction (grammar)PotassiumMagnesium ChloridePharmaceutical Sciencechemistry.chemical_elementIn Vitro TechniquesCalciumOxytocinPotassium ChlorideUterine contractionUterine ContractionInternal medicinemedicineAnimalsMagnesiumVanadateEdetic AcidPharmacologyMagnesiumRats Inbred StrainsVanadiumRatsEndocrinologychemistryOxytocinCalciumFemaleVanadatesmedicine.symptommedicine.drugMuscle contractionJournal of Pharmacy and Pharmacology
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Hydrogen Bonding in Amorphous Alkaline Earth Carbonates

2018

Amorphous intermediates play a crucial role during the crystallization of alkaline earth carbonates. We synthesized amorphous carbonates of magnesium, calcium, strontium, and barium from methanolic solution. The local environment of water and the strength of hydrogen bonding in these hydrated modifications were probed with Fourier transform IR spectroscopy,

inorganic chemicalsmusculoskeletal diseasesStrontiumAlkaline earth metalHydrogen bondMagnesiumInorganic chemistrychemistry.chemical_elementBarium02 engineering and technologyCalcium010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical scienceslaw.inventionAmorphous solidInorganic ChemistrychemistrylawPhysical and Theoretical ChemistryCrystallization0210 nano-technologyInorganic Chemistry
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Effect of Mg2+ ions on competitive metal ions adsorption/desorption on magnesium ferrite : mechanism, reusability and stability studies

2021

The adsorption behavior of magnesium ferrite in single- and multicomponent metal ions solutions in the presence of Mg2+ ions were studied. A dramatic decrease in the adsorption capacity of magnesium ferrite towards Mn2+, Co2+, and Ni2+ ions for comparison study of single- and multicomponent solutions was established. The affinity of the sorbent in accordance with the maximum sorption capacities increases in the following order Cu2+ > Co2+ > Ni2+ > Mn2+. High efficiency of magnesium ferrite regeneration (~100%) with aqueous solutions of magnesium chloride in the concentration range of 0.001-0.1 M was shown. The low degree of toxic metal ions desorption combined with XRD, IR spectroscopy, and…

inorganic chemicalsraskasmetallitkemialliset yhdisteetionitregenerationmechanism adsorptionmagnesium ferriterautastabilitymagnesiumadsorptiocompetitive adsorption
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Preliminary study on the unusual properties in the habitat of Ranunculetum baudotii in Central Europe

2011

Abstract The study examines the patches of the saltwater association Ranunculetum baudotii in a new, atypical site; i.e., located more than 400 km away from the Baltic coastal line. They were found in a karst spring, and were the first locality of the community identified in Poland. The water and sediments within the patches were analyzed chemically in the laboratory, but, conductivity, water temperature and O2 content were measured in the field. The spring was determined to be a relatively stable aquatic habitat, with a typical chemical composition of subterranean water (a prevalence of hydro-carbonate, calcium and magnesium ions), and rich, e.g., in nitrogen and phosphorus, and disturbed …

karst springQH301-705.5BiologyGeneral Biochemistry Genetics and Molecular BiologyAquatic plantSpring (hydrology)ecological conditionsKarst springBiology (General)Magnesium ionbiodiversitygeographygeography.geographical_feature_categoryGeneral Immunology and Microbiologybatrachium baudotiiEcologyGeneral NeurosciencePlant communityKarstthreatened plant communitiesCretaceousHabitatphytocoenosesanthropopressureGeneral Agricultural and Biological Sciencesaquatic vegetationOpen Life Sciences
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Microbiological Stability of Bio-Based Building Materials

2021

The aim of this paper was to study the microbiological stability of bio-based composite building materials, which are made using organic-rich lake sediments (further – sapropel) with lime and magnesium cement as binders and hemp shives as filler. The microbial stability properties of the obtained composite materials were investigated and compared to similar composites. Because of their high organic content, these materials are prone to biodegradation; therefore, they were coated with ALINA LIFE TM organoclay coating, which helps to extend the product life, reducing the rate of biodegradation compared to the biocides used in industry. The effect of the coating on the resistance to decay by t…

lcsh:GE1-350magnesium cementBio basedmicrobial stabilitybiocideslcsh:TD1-1066sapropellime-hemp materialsorganoclay additiveEnvironmental scienceBiochemical engineeringlcsh:Environmental technology. Sanitary engineeringEcology Evolution Behavior and Systematicslcsh:Environmental sciencesGeneral Environmental ScienceJournal of Ecological Engineering
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Development of Phosphatized Calcium Carbonate Biominerals as Bioactive Bone Graft Substitute Materials, Part I: Incorporation of Magnesium and Stront…

2018

Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes when natural bone grafts are not available or not suitable. Chemical similarity to bone guarantees the biocompatibility of synthetic CaP materials, whereas macroporosity enables their integration into the natural bone tissue. To restore optimum mechanical performance after the grafting procedure, gradual resorption of CaP implants and simultaneous replacement by natural bone is desirable. Mg and Sr ions released from implants support osteointegration by stimulating bone formation. Furthermore, Sr ions counteract osteoporotic bone loss and reduce the probability of related fractures. The presen…

lcsh:R5-920porous calcium phosphatebone graft substitute materialslcsh:Biotechnologylcsh:TP248.13-248.65coralline hydroxyapatitebioactive implant materialsstrontiumresorbable implant materialsmagnesiumlcsh:Medicine (General)phosphatized sea urchin spinesArticleJournal of Functional Biomaterials
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Critical aspects of the physiological interactions between lead and magnesium

2021

Despite technological progress, exposure to lead is an ongoing problem. There are many mechanisms governing the toxic effects of lead on the human body. One such mechanism involves the interaction of this xenobiotic with bivalent metal ions, including magnesium. Literature data suggest that the competition between these elements for binding sites at the molecular and cellular levels, as well as at the systemic level, may represent an important aspect of lead toxicity in the human body. This is especially clear in the context of oxidative stress, immune response, and gene expression modifications. This review aims to summarize current knowledge regarding these issues.

leadMechanism (biology)ChemistryHealth Toxicology and MutagenesisContext (language use)General MedicinemagnesiumToxicologyBiochemistryimmune responseXenobioticschemistry.chemical_compoundLead (geology)Gene Expression Regulationtranscription factorsMolecular MedicineHumansoxidative stressXenobioticMolecular BiologyNeuroscienceJournal of Biochemical and Molecular Toxicology
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