Search results for "6. Clean water"

showing 10 items of 418 documents

Functional gene pyrosequencing reveals core proteobacterial denitrifiers in boreal lakes

2015

Denitrification is an important microbial process in aquatic ecosystems that can reduce the effects of eutrophication. Here, quantification and pyrosequencing of nirS, nirK, and nosZ genes encoding for nitrite and nitrous oxide reductases was performed in sediment samples from four boreal lakes to determine the structure and seasonal stability of denitrifying microbial populations. Sediment quality and nitrate concentrations were linked to the quantity and diversity of denitrification genes, the abundance of denitrifying populations (nirS and nosZ genes) correlated with coupled nitrificationdenitrification (Dn), and the denitrification of the overlying water NO3 − (Dw) correlated with the n…

Microbiology (medical)denitrifikaatioDenitrificationta1172lcsh:QR1-502Microbiologylcsh:Microbiology03 medical and health scienceschemistry.chemical_compoundDenitrifying bacteriaNitratenosZnirK14. Life underwatercommunity compositionqPCR.BetaproteobacteriaOriginal Research030304 developmental biologynirS0303 health sciencesbiology030306 microbiologyEcologyAquatic ecosystemta1183Sedimentbiology.organism_classification6. Clean waterqPCRchemistryNIRSDenitrificationPyrosequencingEutrophication
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The use of phage FCL-2 as an alternative to chemotherapy against columnaris disease in aquaculture

2015

Flavobacterium columnare, the causative agent of columnaris disease in fish, causes millions of dollars of losses in the US channel catfish industry alone, not to mention aquaculture industry worldwide. Novel methods are needed for the control and treatment of bacterial diseases in aquaculture to replace traditionally used chemotherapies. A potential solution could be the use of phages, i.e., bacterial viruses, host-specific and self-enriching particles that can be can easily distributed via water flow. We examined the efficacy of phages to combat columnaris disease. A previously isolated phage, FCL-2, infecting F. columnare, was characterized by sequencing. The 47 142 bp genome of the phag…

Microbiology (medical)phage therapyanimal structuresPhage therapyWater flowvirusesFish farmingmedicine.medical_treatmentPopulationlcsh:QR1-502BiologyMicrobiologylcsh:MicrobiologyMicrobiologyFlavobacterium columnareAquaculturemedicine14. Life underwatereducation1183 Plant biology microbiology virologyOriginal Researchfishdiseaseeducation.field_of_studybiologybusiness.industryta1183biology.organism_classification6. Clean wateraquacultureFlavobacterium columnareRainbow troutBacterial virusbusinessphagetherapyFrontiers in Microbiology
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Fate of microplastics in agricultural soils amended with sewage sludge: Is surface water runoff a relevant environmental pathway?

2021

Abstract Sewage sludge used as agricultural fertilizer has been identified as an important source of microplastics (MPs) to the environment. However, the fate of MPs added to agricultural soils is largely unknown. This study investigated the fate of MPs in agricultural soils amended with sewage sludge and the role of surface water runoff as a mechanism driving their transfer to aquatic ecosystems. This was assessed using three experimental plots located in a semi-arid area of Central Spain, which were planted with barley. The experimental plots received the following treatments: (1) control or no sludge application; (2) historical sludge application, five years prior to the experiment; and …

Microplastics010504 meteorology & atmospheric sciencesMicroplasticsHealth Toxicology and Mutagenesis010501 environmental sciencesengineering.materialToxicology01 natural sciencesSoilSoil PollutantsEcosystem0105 earth and related environmental sciences2. Zero hungerSewageWaterQ Science (General)General Medicine15. Life on landPollution6. Clean waterInfiltration (hydrology)Environmental chemistrySoil waterengineeringSoil horizonEnvironmental scienceFertilizerSurface runoffPlasticsSurface waterSludgeEnvironmental MonitoringEnvironmental Pollution
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Bioinspired Metal-Organic Frameworks in Mixed Matrix Membranes for Efficient Static/Dynamic Removal of Mercury from Water

2020

The mercury removal efficiency of a novel metal-organic framework (MOF) derived from the amino acid S-methyl-L-cysteine is presented and the process is characterized by single-crystal X-ray crystallography. A feasibility study is further presented on the performance of this MOF and also that of another MOF derived from the amino acid L-methionine when used as the sorbent in mixed matrix membranes (MMMs). These MOF-based MMMs exhibit high efficiency and selectivity in both static and dynamic regimes in the removal of Hg2+ from aqueous environments, due to the high density of thioalkyl groups decorating MOF channels. Both MMMs are capable to reduce different concentration of the pollutant to …

Mixed matrixMaterials scienceGroundwater remediationchemistry.chemical_element02 engineering and technology010402 general chemistryAigua potable Depuració01 natural sciencesBiomaterialscapture devicemercury(II)ElectrochemistryMaterialsmetal-organic frameworksfungiwater remediation021001 nanoscience & nanotechnologyCondensed Matter Physics6. Clean water0104 chemical sciencesElectronic Optical and Magnetic MaterialsMercury (element)MembranechemistryChemical engineeringMetal-organic frameworkmixed matrix membranes0210 nano-technology
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Nitrous oxide emission by agricultural soils: a review of spatial and temporal variability for mitigation

2012

CT3 ; EnjS4; International audience; This short review deals with soils as an important source of the greenhouse gas N2O. The production and consumption of N2O in soils mainly involve biotic processes: the anaerobic process of denitrification and the aerobic process of nitrification. The factors that significantly influence agricultural N2O emissions mainly concern the agricultural practices (N application rate, crop type, fertilizer type) and soil conditions (soil moisture, soil organic C content, soil pH and texture). Large variability of N2O fluxes is known to occur both at different spatial and temporal scales. Currently new techniques could help to improve the capture of the spatial va…

N2O fluxesSoil biodiversity[SDV]Life Sciences [q-bio]Soil Scienceagricultural practicesSoil science010501 environmental sciencesengineering.material01 natural sciencesSoil pH[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyWater content0105 earth and related environmental sciences2. Zero hunger04 agricultural and veterinary sciences15. Life on land6. Clean water13. Climate actionfertilizationgreenhouse gasGreenhouse gasSoil water[SDE]Environmental Sciences040103 agronomy & agricultureengineering0401 agriculture forestry and fisheriesEnvironmental scienceSpatial variabilityNitrificationFertilizersoil-atmosphere interface
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Special Issue: Water Management Strategies in Irrigated Areas

2016

The 2015 edition of the United Nations World Water Development Report highlighted that ‘water is at the core of sustainable development’. Water has upgraded the quality of human life, and any progress to achieve a more sustainable world will deal with the maintenance and/or the improvement of water management. Water demand has grown at more than twice the population rate in the XX century. By 2025, it is estimated that about 1.8 billion people will live in countries or regions with absolute water scarcity, and two-thirds of the world population could be under stress conditions.

Natural resource economicsmedia_common.quotation_subject0208 environmental biotechnologyPopulationWater developmentSoil Science02 engineering and technologyWater scarcityWater conservationQuality (business)educationmedia_commonWater Science and TechnologyEarth-Surface ProcessesSustainable developmenteducation.field_of_study04 agricultural and veterinary sciencesWorld population6. Clean water020801 environmental engineeringWater resources040103 agronomy & agriculture0401 agriculture forestry and fisheriesBusinessWater resource managementAgronomy and Crop Science
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Metagenomic insights into strategies of aerobic and anaerobic carbon and nitrogen transformation in boreal lakes

2015

Thousands of net-heterotrophic and strongly stratifying lakes dominate the boreal landscape. Besides their central role as emitters of greenhouse gases, we have only recently begun to understand the microbial systems driving the metabolic processes and elemental cycles in these lakes. Using shotgun metagenomics, we show that the functional potential differs among lake types, with humic lakes being particularly enriched in carbon degradation genes. Most of the metabolic pathways exhibit oxygen- and temperature-dependent stratification over depth, coinciding with shifts in bacterial community composition, implying that stratification is a major factor controlling lake metabolism. In the botto…

Nitrogenta1172boreal lakesOceanografi hydrologi och vattenresurserBiologymicrobial ecologyArticleBacteria AnaerobicOceanography Hydrology and Water ResourcesWater columncarbon cyclenitrogen cycleCompounds of carbon14. Life underwaterAutotrophNitrogen cyclechemistry.chemical_classificationmetagenomicsMultidisciplinaryEcologyhiilen kiertota1183WaterAnoxic waters6. Clean waterCarbonBacteria AerobicOxygenmikrobiekologiaLakeschemistryBoreal13. Climate actionMetagenomicsGreenhouse gasta1181Water Microbiology
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Do conservative agriculture practices increase soil water repellency? A case study in citrus-cropped soils

2012

Water repellency is a property of soils that inhibits or delays infiltration. Long-term conservation practices as no-tillage, manure addition, application of herbicides may contribute to increase soil organic matter and, hence, soil water repellency. In this research, we have studied the effect of long-term addition of plant residues and organic manure, no-tillage and no chemical fertilization (MNT), annual addition of plant residues and no-tillage (NT), application of conventional herbicides and no-tillage (H), and conventional tillage (CT) on soil water repellency in Mediterranean calcareous citrus-cropped soils (Eastern Spain). Slight water repellency was observed in MNT soils, which may…

No-till farming010504 meteorology & atmospheric sciencesOrganic farmingSoil ScienceSoil water repellency01 natural sciencesNo-till farmingOrganic matter0105 earth and related environmental sciencesEarth-Surface Processes2. Zero hungerchemistry.chemical_classificationConventional tillageSoil organic matter04 agricultural and veterinary sciencesCOMERCIALIZACION E INVESTIGACION DE MERCADOS15. Life on landManureCitrus-cropped soils6. Clean waterInfiltration (hydrology)chemistryAgronomy13. Climate actionSoil water040103 agronomy & agricultureOrganic farming0401 agriculture forestry and fisheriesEnvironmental scienceAgronomy and Crop Science
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Mn, Fe, Zn and As speciation in a fast-growing ferromanganese marine nodule

2004

The speciation of Mn, Fe, As and Zn in a fast-growing (0.02mm/yr), shallow-marine ferromanganese nodule has been examined by micro X-ray fluorescence, micro X-ray diffraction, and micro X-ray absorption spectroscopy. This nodule exhibits alternating Fe-rich and Mn-rich layers reflecting redox variations in water chemistry. Fe occurs as two-line ferrihydrite. The As is strictly associated with Fe and is mostly pentavalent, with an environment similar to that of As sorbed on or coprecipitated with synthetic ferrihydrite. The Mn is in the form of turbostratic birnessite with ~;10 percent trivalent manganese in the layers and probably ~;8 percent corner-sharing metal octahedra in the interlayer…

Nodule (geology)BirnessiteXASInorganic chemistrychemistry.chemical_elementManganese010501 environmental sciencesengineering.material010502 geochemistry & geophysics01 natural sciencesFerromanganeseMetalFerrihydriteXAS EXAFS marine ferromanganese nodule Baltic sea speciation[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryGeochemistry and Petrology0105 earth and related environmental sciencesX-ray absorption spectroscopyBaltic seaExtended X-ray absorption fine structureRadiochemistrymarine ferromanganese nodule6. Clean waterEXAFSspeciationchemistryvisual_artEarth Sciencesvisual_art.visual_art_mediumengineeringEnvironmental scienceGeochimica et Cosmochimica Acta
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The lithium and magnesium isotope signature of olivine dissolution in soil experiments

2021

Abstract This study presents lithium and magnesium isotope ratios of soils and their drainage waters from a well-characterised weathering experiment with two soil cores, one with olivine added to the surface layer, and the other a control core. The experimental design mimics olivine addition to soils for CO2 sequestration and/or crop fertilisation, as well as natural surface addition of reactive minerals such as during volcanic deposition. More generally, this study presents an opportunity to better understand how isotopic fractionation records weathering processes. At the start of the experiment, waters draining both cores have similar Mg isotope composition to the soil exchangeable pool. …

OlivineStable isotope ratioGeologyWeathering010501 environmental sciencesengineering.material010502 geochemistry & geophysics01 natural sciences6. Clean waterchemistry.chemical_compoundchemistry13. Climate actionGeochemistry and PetrologyEnvironmental chemistrySoil waterEnhanced weatheringengineeringCarbonateDissolutionDeposition (chemistry)Geology0105 earth and related environmental sciencesChemical Geology
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