Search results for "humic acid"

showing 10 items of 80 documents

Humic substances as catalysts in condensation reactions

2001

Humic substances (HS) demonstrate appreciable impact on the rate of the condensation reactions as shown in the example of the reaction between hydrazine and 4-(dimethylamino)-benzaldhyde in an aquatic environment. The catalytic activity of HS has also been demonstrated in Knoevenagel and Claisen-Schmidt reactions for condensation of carbonyl compounds with CH acids. The aquatic fulvic acids are the most active in these reactions. The velocity of the studied reactions also depends on pH, temperature, the concentration and origin of HS used. A possible micellar and acid-base catalysis mechanism in aquatic media has been suggested.

Environmental EngineeringChemical PhenomenaHealth Toxicology and MutagenesisHydrazineInorganic chemistryAldehydeCatalysisCatalysischemistry.chemical_compoundEnvironmental ChemistryOrganic chemistryHumic acidBenzopyransHumic Substanceschemistry.chemical_classificationClaisen condensationChemistry PhysicalCondensationTemperaturePublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryHydrogen-Ion ConcentrationCondensation reactionPollutionchemistryKnoevenagel condensationWater Pollutants ChemicalChemosphere
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Sorption of humic substances on aquifer material at artificial recharge of groundwater

2003

Experiments in batch equilibrium system were carried out to evaluate the importance of physical and chemical factors determining the sorption efficiency of humic substances (HS) on aquifer material, which has been used for artificial recharge of groundwater (ARG) in drinking water production. Results showed that an increase of the amount of clay in the aquifer material and a decrease of pH in water increased the sorption efficiency. The sorption of higher molecular weight, more hydrophobic and aromatic HS (Aldrich and forest soil humic acids) were greater than the sorption of acidic HS (river fulvic acids), either on the aquifer material or to its representative sorbing phases, clay and org…

Environmental EngineeringHealth Toxicology and MutagenesisAquifercomplex mixturesWater SupplySoil PollutantsEnvironmental ChemistryHumic acidWater PollutantsOrganic matterHumic Substanceschemistry.chemical_classificationgeographygeography.geographical_feature_categoryPublic Health Environmental and Occupational HealthEnvironmental engineeringSorptionGeneral MedicineGeneral ChemistryGroundwater rechargeModels TheoreticalPollutionchemistryComposition (visual arts)AdsorptionWater qualityGroundwaterChemosphere
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Immobilized humic substances as sorbents

2005

A new method was developed for the immobilization of humic substances. Humic acids (HA) immobilized onto different carriers were studied as sorbents for organic and inorganic substances. The sorption isotherms of 4-aminoazobenzene, Crystal Violet, Methylene Green, and flavine mononucleotide on immobilized HA show that pH and salt concentration have a significant effect on the sorption process, largely depending on the properties of polymeric matrix. Humic acids from different sources showed differing sorption capacity for the studied groups of substances.

Environmental EngineeringHealth Toxicology and MutagenesisInorganic chemistrySalt (chemistry)complex mixtureschemistry.chemical_compoundAdsorptionEnvironmental ChemistryHumic acidOrganic matterCrystal violetHumic Substanceschemistry.chemical_classificationMolecular StructurePublic Health Environmental and Occupational HealthSorptionGeneral MedicineGeneral ChemistryHuman decontaminationMethylene greenPollutionRefuse DisposalKineticschemistryEnvironmental PollutantsAdsorptionChemosphere
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A model for the formation and degradation of bound residues of the herbicide 14C-isoproturon in soil

1999

Abstract The humic monomer catechol was reacted with 14 C-isoproturon and some of its metabolites, including 14 C-4-isopropylaniline, in aqueous solution under a stream of oxygen. Only in the case of 14 C-4-isopropylaniline, incorporation in oligomers, in fulvic acid-like polymers, and in humic acid-like polymers was observed. The main oligomer was identified by mass spectrometry as 4,5-bis-(4-isopropylphenylamino)-3,5-cyclohexadiene-1,2-dione. Oligomers and polymers containing bound 14 C-4-isopropylaniline were subjected to biodegradation studies in a loamy agricultural soil during 55 days by quantifying 14 CO 2 evolved. In all cases, significant mineralization rates could be determined, w…

Environmental EngineeringHealth Toxicology and MutagenesisOligomerchemistry.chemical_compoundSoil PollutantsEnvironmental ChemistryHumic acidOrganic matterCarbon RadioisotopesHumic Substanceschemistry.chemical_classificationMethylurea CompoundsAqueous solutionHerbicidesPhenylurea CompoundsPesticide ResiduesPublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryMineralization (soil science)BiodegradationPollutionSoil contaminationBiodegradation EnvironmentalMonomerchemistryEnvironmental chemistryChemosphere
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Concentrations of monosaccharides in humic substances in the early stages of humification.

2001

Deteriorated liquid packaging board (LPB) and biowaste compost are matrices, mainly consisting of cellulose, in the early stages of humification. Degradative studies on these matrices allow an examination of the role of carbohydrates in the synthesis of humic substances. Samples of different age were collected and divided by extraction into hot water extract (HWE), bitumen, humic acid (HA), fulvic acid (FA) and humin or residual fibre fractions. The following monosaccharides were identified in these fractions: L-arabinose, D-ribose, D-xylose, L-fucose, D-mannose, D-fructose, D-galactose, D-glucose, L-rhamnose and xylitol. The main component in all fractions was glucose. The concentrations o…

Environmental EngineeringHealth Toxicology and Mutagenesisengineering.materialcomplex mixturesLiquid packaging boardProduct PackagingEnvironmental ChemistryHumic acidMonosaccharideOrganic matterFood scienceCelluloseHumic Substanceschemistry.chemical_classificationChromatographyChemistryCompostMonosaccharidesPublic Health Environmental and Occupational HealthTemperatureWaterGeneral MedicineGeneral ChemistryBiodegradationPollutionHumusRefuse DisposalengineeringHuminChemosphere
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Photoinductive efficiency of soil extracted humic and fulvic acids

2002

Humic and fulvic acids extracted from soils of different genesis were investigated for their ability to photoinduce the transformation of fenuron (2 x 10(-4) mol(-1)) at 365 nm. The ratio of the initial rate of fenuron consumption over the rate of light absorption by humic substances was found to be higher for fulvic acids (range 2.0 x 10(-3) to 9.0 x 10(-5)) than for humic acids (range 1.7 x 10(-4) to - 3.6 x 10(-5)). Within the FAs population, this ratio decreased as the specific absorption coefficient at 365 nm increased. It seems therefore that most of 365-nm absorbing components have no photoinductive activity and even reduce that of photoinductive chromophores.

Environmental EngineeringLightPhotochemistryHealth Toxicology and MutagenesisPopulationChemistry Techniques AnalyticalSoilEnvironmental ChemistryHumic acidBenzopyransOrganic mattereducationUltraviolet radiationHumic SubstancesInitial ratechemistry.chemical_classificationeducation.field_of_studyRadiationChromatographyPhenylurea CompoundsPublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryPollutionSoil contaminationBiodegradation EnvironmentalchemistryEnvironmental chemistrySoil waterPhotochemical degradationChemosphere
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Bioaccumulation and subchronic physiological effects of waterborne iron overload on whitefish exposed in humic and nonhumic water.

1999

One-year-old whitefish, Coregonus lavaretus, were exposed to three types of iron-rich water, two dilutions for each, in a subchronic (30-day) experiment. In natural iron-rich humic water, both the bioaccumulation and physiological effects of iron exposure were negligible. In humic-free water with high amount of additional inorganic iron (nominally 8 mg Fe/L), Fe accumulated in gills, liver, and gut. This accumulation was accompanied by decreased glycogen phosphorylase activities and microsomal EROD activity in the liver as well as decreased plasma sodium and potassium concentrations. The third group of whitefish were exposed by adding inorganic iron (nominally 2 and 8 mg Fe/L) to natural ir…

Gillchemistry.chemical_classificationHealth Toxicology and MutagenesisPotassiumIronchemistry.chemical_elementGeneral MedicineToxicologyPollutionBiodegradation EnvironmentalchemistryBiochemistryEnvironmental chemistryBioaccumulationMetals HeavyToxicityEcotoxicologyHumic acidAnimalsOrganic matterTissue DistributionWater pollutionSalmonidaeWater Pollutants ChemicalArchives of environmental contamination and toxicology
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Copper-Containing Oxidases: Occurrence in Soil Microorganisms, Properties, and Applications

2009

Copper is an essential trace element in living systems, where it is used as a cofactor in many enzymatic redox reactions and oxygen transport. The copper-containing oxidases tyrosinase and laccase are widely distributed in soil microorganisms. Recently, progress has been made with respect to structural and catalytic data for the tyrosinase of the soil bacterium Streptomyces. The formation of eumelanins—dark polymers with multiple functionality (e.g., UV protection, immune defense)—is a well-established task of tyrosinases. An abundance of information exists on the structures and biochemical properties of fungal laccases. Many studies have demonstrated a physiological role for them in the de…

Laccasechemistry.chemical_classificationbiologyChemistryMicroorganismTyrosinaseOxygen transportbiology.organism_classificationStreptomycesRedoxchemistry.chemical_compoundBiochemistryAgronomyHumic acidLignin
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Decarboxylation and alkaline colour fading reactions in presence of humic substances.

2002

Humic substances (HSs) can substantially influence velocity of reactions in the environment as shown on example of decarboxylation and alkaline colour (e.g., malachite green and crystal violet) fading reactions. In colour fading and decarboxylation reactions of 6-nitrobenzisoxazole-3-carboxylic acid HS act as inhibitors, but additions of surfactants change the pattern of reaction. The inhibitory activity of HSs much depends on their origin. The velocity of studied reactions depends also on pH, temperature and concentration of HS used. Possible micellar catalysis mechanism has been suggested.

Models MolecularReaction mechanismEnvironmental Engineeringgenetic structuresDecarboxylationHealth Toxicology and MutagenesisInorganic chemistryCarboxylic AcidsColorDecarboxylationCatalysisCatalysischemistry.chemical_compoundSurface-Active AgentsHydroxidesRosaniline DyesEnvironmental ChemistryHumic acidCrystal violetMalachite greenChemical decompositionHumic SubstancesMicelleschemistry.chemical_classificationPublic Health Environmental and Occupational HealthTemperatureGeneral MedicineGeneral ChemistryReaction inhibitorHydrogen-Ion ConcentrationPollutionKineticschemistryGentian VioletChemosphere
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Hydration and water holding properties of cross-linked lignite humic acids

2014

Abstract Lignite and lignite humic acids, which are used as soil amendments sometimes, are supposed to improve soil properties such as water holding capacity. The structure of those materials is composed of various organic molecules stabilized mostly by weak interactions. Therefore, excess of water causes only partial swelling, but most of the physical structure is destabilized. This accelerates the desiccation and hampers their application as natural hydrogel-like substances. In order to stabilize the structure of lignite humic acids and improve the water holding capacity, we applied formaldehyde cross-linking procedure based on covalent coupling of aromatic humic acids moieties. By combin…

MoistureEnvironmental remediationChemistrySettore AGR/13 - Chimica AgrariaSoil ScienceSorptioncomplex mixturesSoil conditionerlignite humic acids cross-linking hydration DSC NMR relaxometry water molecule bridgesChemical engineeringSoil watermedicineOrganic chemistryRelative humiditySwellingmedicine.symptomThermal analysis
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