Search results for "Formic Acid"

showing 10 items of 108 documents

Rational Design of a Carrier Protein for the Production of Recombinant Toxic Peptides in Escherichia coli

2016

Commercial uses of bioactive peptides require low cost, effective methods for their production. We developed a new carrier protein for high yield production of recombinant peptides in Escherichia coli very well suited for the production of toxic peptides like antimicrobial peptides. GKY20, a short antimicrobial peptide derived from the C-terminus of human thrombin, was fused to the C-terminus of Onconase, a small ribonuclease (104 amino acids), which efficiently drove the peptide into inclusion bodies with very high expression levels (about 200-250 mg/L). After purification of the fusion protein by immobilized metal ion affinity chromatography, peptide was obtained by chemical cleavage in d…

Genetics and Molecular Biology (all)0301 basic medicineProtein ExpressionCarboxylic Acidslcsh:MedicinePeptideMedicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)medicine.disease_causeBiochemistrylaw.inventionlawMedicine and Health SciencesAmino Acidslcsh:ScienceAcetic Acidchemistry.chemical_classificationAntimicrobial Cationic PeptideMultidisciplinaryAntimicrobialsOrganic CompoundsHydrolysisMedicine (all)Chemical ReactionsDrugsRecombinant ProteinRecombinant ProteinsAmino acidChemistryBiochemistryPhysical SciencesRecombinant DNAHumanResearch Article030106 microbiologyAntimicrobial peptidesResearch and Analysis MethodsMicrobiologyRibonuclease03 medical and health sciencesResidue (chemistry)RibonucleasesAffinity chromatographyMicrobial ControlGene Expression and Vector TechniquesEscherichia colimedicineSulfur Containing Amino AcidsHumansCysteineMolecular Biology TechniquesMolecular BiologyEscherichia coliPharmacologyMolecular Biology Assays and Analysis TechniquesBiochemistry Genetics and Molecular Biology (all)lcsh:ROrganic ChemistryFormic AcidChemical CompoundsBiology and Life SciencesProteins030104 developmental biologyAgricultural and Biological Sciences (all)chemistrylcsh:QCarrier ProteinPeptidesCarrier ProteinsAcidsAntimicrobial Cationic PeptidesCysteinePLOS ONE
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Flecainide acetate acetic acid solvates.

2011

Flecainide acetate forms acetic acid solvates with 0.5 and 2 acetic acid molecules. Powder X-ray diffraction, differential thermal analysis/thermogravimetric, infrared, and potentiometric titration were used to determine the composition of solvates. Flecainide acetate hemisolvate with acetic acid decomposes to form a new crystalline form of flecainide acetate. This form is less stable than the already known polymorphic form at all temperatures, and it is formed due to kinetic reasons. Both flecainide acetate nonsolvated and flecainide acetate hemisolvate forms crystallize in monoclinic crystals, but flecainide triacetate forms triclinic crystals. Solvate formation was not observed when flec…

FlecainideSpectrophotometry InfraredChemistryFormic acidPotentiometric titrationPharmaceutical ScienceFlecainide AcetateMedicinal chemistryAcetic acidchemistry.chemical_compoundPropanoic acidPolymorphism (materials science)SolubilityX-Ray DiffractionThermogravimetrymedicinePotentiometrySolventsOrganic chemistryCrystallizationFlecainideAnti-Arrhythmia Agentsmedicine.drugMonoclinic crystal systemAcetic AcidJournal of pharmaceutical sciences
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Photolysis of Tertiary Amines in the Presence of CO2: The Paths to Formic Acid, α-Amino Acids, and 1,2-Diamines

2017

The photolysis of triethylamine (1a) in the presence of carbon dioxide leads to the hydrogenation of CO2, the α-C-C coupling of triethylamine (1a), and the CO2-insertion into the α-C-H σ-bond of amine 1a. This reaction is proposed to proceed through the radical ion pair [R3N·+·CO2·-] generated by the photoionization of amine 1a and the electron capture by CO2. The presence of lithium tetrafluoroborate in the reaction medium promotes the efficient and stereoselective α-C-C coupling of 1a by enhancing the production of α-dialkylamino radicals and the isomerization of N,N,N',N'-tetraethylbutane-2,3-diamine (4a).

010405 organic chemistryFormic acidRadicalOrganic ChemistryPhotodissociationLithium tetrafluoroborate010402 general chemistry01 natural sciencesMedicinal chemistry0104 chemical scienceschemistry.chemical_compoundRadical ionchemistryAmine gas treatingAminoàcidsQuímica orgànicaIsomerizationTriethylamineThe Journal of Organic Chemistry
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Effect of air pressure on the electro-Fenton process at carbon felt electrodes

2018

Abstract The effect of air pressure on electro-Fenton (PrEF process) was evaluated using two organic substances (maleic acid and Acid Orange 7) as model organic pollutants. First experiments were performed using a conventional carbon felt (CF) cathode. At room pressure, a slow removal of maleic acid was obtained, together with the generation of formic acid. Conversely, using pressurized air, the removal of maleic acid was dramatically accelerated and the formation of formic acid was not detected. The utilization of a carbon felt modified by the deposition of carbon black + PTFE mixture (MCF) and of pressurized air allowed to achieve even faster and almost total (>95%) removal of total organ…

PollutantTotal organic carbonPrEF Wastewater treatment Air pressure Electro-Fenton Carbon felt Organic pollutants Acid Orange 7 Maleic acidAtmospheric pressureMaleic acidFormic acidGeneral Chemical EngineeringCompressed air02 engineering and technology010501 environmental sciences021001 nanoscience & nanotechnology01 natural sciencesCathodelaw.inventionchemistry.chemical_compoundchemistrylawElectrodeElectrochemistry0210 nano-technology0105 earth and related environmental sciencesNuclear chemistry
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Electrochemical conversion of CO2 to formic acid using a Sn based cathode: Combined effect of temperature and pressure

2023

Electrochemical conversion of CO2 in the aqueous electrolyte into value-added chemicals is considered one of the most promising strategies to valorize waste-CO2. In the last decade, high attention was focused on the electro- chemical synthesis of formic acid (FA) via CO2 reduction using Sn cathodes. To improve the final concentration of FA in aqueous electrolytes, several approaches, including the utilization of different technologies (i.e. pressurized CO2 reactor, a gas diffusion electrode, divided cell etc...) and different operative conditions (i.e. pH, current densities, temperature, mixing rate, etc...) were investigated in detail. To date, the effect of temperature (T) on the electroc…

HistoryPolymers and PlasticsProcess Chemistry and TechnologyChemical Engineering (miscellaneous)Business and International ManagementCO2 reduction Formic acid Pressure Temperature TinSettore ING-IND/27 - Chimica Industriale E TecnologicaWaste Management and DisposalIndustrial and Manufacturing EngineeringJournal of CO2 Utilization
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Efficiency of acetic acid and formic acid as a catalyst in catalytical and mechanocatalytical pretreatment of barley straw

2016

Abstract In this study, the potential of organic acids (formic acid, acetic acid) in a catalytical and mechanocatalytic conversion of lignocellulosic barley straw to valuable sugars is explored using sulfuric acid as a reference. Acid-catalyzed hydrolysis has been carried out with acid-impregnated samples as well as unmodified barley straw. In the mechanocatalytical approach, pretreatment consists of impregnation with the acid catalyst and mechanical treatment by ball milling following chemical hydrolysis. Straw samples and residues were analyzed by Fourier transform infrared spectrometry (FT-IR) whereas hydrolysate analysis was based on total reducing sugar (TRS) determination following th…

animal structuresformic acidFormic acidta220010402 general chemistry01 natural sciencesHydrolysateCatalysischemistry.chemical_compoundAcetic acidHydrolysislignocelluloseOrganic chemistryWaste Management and Disposalta215chemistry.chemical_classification010405 organic chemistryRenewable Energy Sustainability and the Environmentmechanocatalytical conversionfood and beveragesForestrySulfuric acidStraw0104 chemical sciencesReducing sugaracetic acidchemistryBarley strawAgronomy and Crop ScienceNuclear chemistryBiomass and Bioenergy
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Photolysis of HCOOH monomer and dimer in solid argon: Raman characterization of in situ formed molecular complexes

2010

Raman spectroscopy combined with the matrix isolation technique was employed to study the 193-nm photodecomposition products of formic acid in an argon matrix. The Raman-active fundamentals belonging to the CO(2) + H(2) and CO + H(2)O photoproducts were assigned. Also, bands due to Fermi resonance between the stretching vibration (nu(1)) and the overtone of the bending mode (2nu(2)) of CO(2) were identified. Both ortho- and para-H(2) molecules were identified from their rotational lines S(0)(1) and S(0)(0), respectively. These bands appeared upon matrix annealing as well as after prolonged photolysis. Additionally, photolysis of FA dimers produces oxalic acid and its secondary photoproducts…

Formic acidStereochemistryDimerOxalic acidPhotodissociationMatrix isolationGeneral Physics and AstronomyPhotochemistrychemistry.chemical_compoundsymbols.namesakechemistryAb initio quantum chemistry methodssymbolsFermi resonancePhysical and Theoretical ChemistryRaman spectroscopyPhysical Chemistry Chemical Physics
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Kinetics of the permanganate oxidation of formic acid in aqueous solution

1987

The kinetics of the permanganate oxidation of formic acid in aqueous perchloric acid at 30°C were examined by the spectrophotometric method. The chemical reaction 2MnO + 3HCOOH + 2H+ 2MnO2 + 3CO2 + 4H2O, appears to proceed via several parallel reactions. The overall rate equation has been obtained by using statistical multilinear regression analysis of the 660 cases studied, and the presence in the rate equation of two new terms in relation to previous studies shows that both permanganate autocatalytic effects and acid media inhibition must be taken into account when the reaction proceeds at constant ionic strength.

Aqueous solutionFormic acidOrganic ChemistryPermanganateInorganic chemistryRate equationBiochemistryChemical reactionInorganic ChemistryAutocatalysischemistry.chemical_compoundchemistryIonic strengthPerchloric acidPhysical and Theoretical ChemistryInternational Journal of Chemical Kinetics
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Effect of commercial mineral-based additives on composting and compost quality.

2009

Abstract The effectiveness of two commercial additives meant to improve the composting process was studied in a laboratory-scale experiment. Improver A (sulphates and oxides of iron, magnesium, manganese, and zinc mixed with clay) and B (mixture of calcium hydroxide, peroxide, and oxide) were added to source-separated biowaste:peat mixture (1:1, v/v) in proportions recommended by the producers. The composting process ( T , emissions of CO 2 , NH 3 , and CH 4 ) and the quality of the compost (pH, conductivity, C/N ratio, water-soluble NH 4 –N and NO 3 –N, water- and NaOH-soluble low-weight carboxylic acids, nutrients, heavy metals and phytotoxicity to Lepidium sarivum ) were monitored during…

FormatesFormic acidNitrogenAmmonium nitrateInorganic chemistryCarboxylic Acidsengineering.materialGarbageLepidiumAcetic acidchemistry.chemical_compoundAmmoniaSoilCalcium peroxideMetals HeavyToxicity TestsSoil PollutantsWaste Management and DisposalEnvironmental Restoration and RemediationAcetic AcidMineralsCalcium hydroxideCompostElectric ConductivityTemperatureHydrogen-Ion ConcentrationCarbonQuaternary Ammonium CompoundschemistryengineeringPhytotoxicityNuclear chemistryWaste management (New York, N.Y.)
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Combination of ozonation and photocatalysis for purification of aqueous effluents containing formic acid as probe pollutant and bromide ion

2014

The treatment by advanced oxidation processes (AOPs) of waters contaminated by organic pollutants and containing also innocuous bromide ions may generate bromate ions as a co-product. In the present work heterogeneous photocatalysis and ozonation have individually been applied and in combination (integrated process) to degrade the organic compounds in water containing also bromide anions. The results show that: i) the sole photocatalysis does not produce bromate ions and in the case of its presence, it is able to reduce bromate to innocuous bromide ions; ii) the integration of photocatalysis and ozonation synergistically enhances the oxidation capabilities; and iii) in the integrated proces…

BromidesTime FactorsEnvironmental EngineeringFormatesTime FactorAdvanced oxidation processes; Bromate; Ozonation; Photocatalysis; Photocatalytic ozonation; Water purification; Bromates; Bromides; Catalysis; Formates; Ions; Kinetics; Oxidation-Reduction; Ozone; Time Factors; Water Pollutants Chemical; Ultraviolet Rays; Waste Disposal Fluid; Water Purification; Water Science and Technology; Waste Management and Disposal; Pollution; Ecological ModelingUltraviolet RaysFormic acidInorganic chemistryPortable water purificationWaste Disposal FluidCatalysisCatalysiCatalysischemistry.chemical_compoundOzonePhotocatalysiBromideOzonationIonWaste Management and DisposalBromateWater Science and TechnologyCivil and Structural EngineeringIonsKineticPhotocatalytic ozonationSettore ING-IND/24 - Principi Di Ingegneria ChimicaAqueous solutionWater purificationBromatesEcological ModelingFormateBromatePollutionKineticschemistryUltraviolet RayBromidePhotocatalysisOxidation-ReductionWater Pollutants ChemicalAdvanced oxidation processeWaste disposalWater Research
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