Search results for " Fisheries"

showing 10 items of 1031 documents

Appraisal of Combined Applications of Trichoderma virens and a Biopolymer-Based Biostimulant on Lettuce Agronomical, Physiological, and Qualitative P…

2020

The current research elucidated the agronomical, physiological, qualitative characteristics and mineral composition of lettuce (Lactuca sativa L. var. longifolia) after treatments with a beneficial fungus Trichoderma virens (TG41) alone or in combination with a vegetal biopolymer-based biostimulant (VBP

physiological mechanism0106 biological sciencesAntioxidantLactuca sativa L. var. longifoliamedicine.medical_treatmentLactucaSettore AGR/04 - Orticoltura E FloricolturaPhotosynthesis01 natural scienceslcsh:Agriculturechemistry.chemical_compoundPhotosynthesiHuman fertilizationNitratenitratemedicineLactuca sativa L. var. <i>longifolia</i>Transplantingfunctional qualitymicrobial biostimulantphotosynthesisbiologyChemistryInoculationlcsh:S04 agricultural and veterinary sciencesAscorbic acidbiology.organism_classificationHorticulture040103 agronomy & agriculture0401 agriculture forestry and fisheriesnon-microbial biostimulantAgronomy and Crop Sciencemineral profile010606 plant biology & botanyAgronomy
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Effects of pyrolysis temperature on the hydrologically relevant porosity of willow biochar

2018

Biochar pore space consists of porosity of multiple length scales. In direct water holding applications like water storage for plant water uptake, the main interest is in micrometre-range porosity since these pores are able to store water that is easily available for plants. Gas adsorption measurements which are commonly used to characterize the physical pore structure of biochars are not able to quantify this pore-size range. While pyrogenetic porosity (i.e. pores formed during pyrolysis process) tends to increase with elevated process temperature, it is uncertain whether this change affects the pore space capable to store plant available water. In this study, we characterized biochar poro…

porosityMaterials scienceFOS: Physical sciencesApplied Physics (physics.app-ph)010501 environmental sciencesRaw materialkuivatislaus01 natural sciencesAnalytical ChemistryhuokoisuusAdsorptionimage analysisBiocharmedicinebiocharta216CharcoalPorosityta2180105 earth and related environmental sciencesCondensed Matter - Materials Sciencex-ray tomographybiohiilita114Materials Science (cond-mat.mtrl-sci)Physics - Applied Physics04 agricultural and veterinary sciencesAtmospheric temperature rangeslow pyrolysisWater retentionFuel TechnologykuvantaminenChemical engineeringvisual_artkuva-analyysi040103 agronomy & agriculturevisual_art.visual_art_medium0401 agriculture forestry and fisheriesmedicine.symptomPyrolysis
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Priming effect increases with depth in a boreal forest soil

2016

Abstract Climate warming increases labile carbon (C) inputs to soil through increased photosynthesis and C allocation belowground. This could counterintuitively lead to losses of soil C via priming effects (PE): the stimulation of soil organic matter (SOM) decomposition caused by labile C addition. Systematic quantification of PEs in different ecosystems is needed. We measured PEs of free-living soil microbes in different layers of a boreal forest soil, and found that the relative magnitude of the PE increased with soil depth. The relationship between relative PE and the added glucose amount also depended on the soil layer. Our results indicate that the decomposition of SOM in deeper soil l…

priming effect010504 meteorology & atmospheric sciencesta1172Soil Sciencechemistry.chemical_elementSoil sciencePhotosynthesiscomplex mixtures01 natural sciencesMicrobiologyboreal forest soilOrganic matterEcosystem0105 earth and related environmental scienceschemistry.chemical_classificationRhizosphereChemistrySoil organic matterTaigata118304 agricultural and veterinary sciences15. Life on landNitrogenC & N interactionsclimate change13. Climate action040103 agronomy & agricultureta11810401 agriculture forestry and fisheriesSoil horizonSoil biology & biochemistry
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Mapping productivity and essential biophysical parameters of cultivated tropical grasslands from sentinel-2 imagery.

2020

Nitrogen (N) is the main nutrient element that maintains productivity in forages

productivityTeledetecció010504 meteorology & atmospheric sciencesNitrogenTropical and subtropical grasslands savannas and shrublandsUrochloa brizanthaBiomassaPanicum01 natural sciencesNormalized Difference Vegetation IndexGrasslandCapim Urochloalcsh:AgriculturePastagemremote sensingVegetation indexUrochloaNitrogênioLeaf area indexPASTAGENS0105 earth and related environmental sciencesProductivityBiomass (ecology)geographygeography.geographical_feature_categoryleaf area indexbiology<i>Panicum</i>PasturesUrochloa decumbenslcsh:S04 agricultural and veterinary sciencesVegetationRemote sensingbiology.organism_classificationTropical grasslandsBiomass productionAgronomyProductivity (ecology)vegetation indicesLeaf area index040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceSentinel-2<i>Urochloa</i>Agronomy and Crop ScienceImatges ProcessamentSensoriamento Remoto
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Straw uses trade-off only after soil organic carbon steady-state

2018

Soil organic matter (SOM) is the key for a healthy soil and a relevant property to achieve the sustainability on soil management. However, soils are still net exporters of organic matter. One example is the use of wheat straw residue for industrial and energy applications, which has gained attention in the last years. The offfarm use of this abundant and low cost resource should follow sustainability criteria to avoid soil degradation and SOM losses. Straw residue incorporation is recognized as a recommended management practice to control erosion and mitigate CO2 emissions by increasing SOM. The goal of this work was: i) to evaluate the steady-state carbon (C) level in relation to C input a…

regional straw assessement.Sòls ErosióAgricultural engineering010501 environmental scienceslcsh:Plant culture01 natural sciencesSoil managementlcsh:Agriculturesoil carbon sequestrationSoil retrogression and degradationOrganic matterlcsh:SB1-1110Cropping system0105 earth and related environmental scienceschemistry.chemical_classificationSoil healthSoil organic matterMediterranean durum wheat-based systemlcsh:S04 agricultural and veterinary sciencesSoil carbonSettore AGR/02 - Agronomia E Coltivazioni ErbaceechemistryCarbon input maintainSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceRegional straw assessementAgronomy and Crop Science
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Combined effect of low-molecular-weight organic acids and creosote on phosphatase activities in sandy soil

2018

This paper assesses the impact of creosote and low-molecular-weight organic acids (LMWOAs) on the activity of acid phosphomonoesterase, alkaline phosphomonoesterase, phosphotriesterase, and inorganic pyrophosphatase in soil. The experiment was carried out on loamy sand samples with organic carbon content of 8.71 g · kg -1 , with the following variable factors: dosages of creosote: 0, 0.5%, and 2.5%; type of LMWOAs: oxalic acid, tartaric acid, and citric acid in the amount of 50 mmol · kg -1 of soil; days of experiment: 1, 7, 14, 28, 56, 112. Obtained results showed that contamination with creosote caused decrease in the activity of soil phosphatases. The observed effect did not always incre…

sandy loamOxalic acidPhosphataseSoil Science010501 environmental sciences01 natural sciencesoxalic acidlaw.inventionchemistry.chemical_compoundlawcreosotephosphatases0105 earth and related environmental sciencesEarth-Surface ProcessesTotal organic carbonEcology04 agricultural and veterinary sciencescitric acidSoil contaminationCreosotechemistrytartaric acidLoamEnvironmental chemistry040103 agronomy & agricultureTartaric acid0401 agriculture forestry and fisheriesCitric acidPolish Journal of Soil Science
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Discussion of “Three Simple Flumes for Flow Measurement in Open Channels” by Zohrab Samani

2018

In this paper the results on three simple flumes for flow measurements are discussed.

self-similarityFlume0208 environmental biotechnology04 agricultural and veterinary sciences02 engineering and technologyMechanicsAgricultural and Biological Sciences (miscellaneous)Flow measurement020801 environmental engineeringFlow measurementSimple (abstract algebra)dimensional analysi040103 agronomy & agriculture0401 agriculture forestry and fisheriesSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliGeologyWater Science and TechnologyCivil and Structural Engineering
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Fate of organic pollutants after sewage sludge spreading on agricultural soils: a 30-years field-scale recording

2006

Le DOI mentionné dans l'article 10.2166/WPT.2007.008 ne fonctionne pas; International audience; Toxic organic compounds, such as the surfactants linear alkylbenzene sulfonates (LAS) and nonylphenol polyethoxylates (NPE), Polycyclic aromatic hydrocarbons (PAH) and residues derived from plastics (PAE-phthalates) end up in sewage sludge. In order to evaluate and quantify the potential environmental risks associated with the xenobiotic introduction into biological life cycle, the EU BIOWASTE project (QLK5-CT-2002-01138) devotes one task to the study of the fate of xenobiotic in a sandy soil after sludge spreading on a 30-year field-scale record experiment. Experimental maize crop fields from Bo…

sludge disposalLinear alkylbenzene[SDE.MCG]Environmental Sciences/Global Changesxenobiotic010501 environmental sciences[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil study01 natural sciencesbiodegradationchemistry.chemical_compoundDry weight[SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/Hydrology0105 earth and related environmental sciencesWater Science and Technology2. Zero hungerPollutantphthalates04 agricultural and veterinary sciencesPAHBiodegradationCOMPOSE TOXIQUE ORGANIQUE6. Clean waterNonylphenolLASchemistry13. Climate actionlong term effectEnvironmental chemistrySoil water[SDU.STU.HY] Sciences of the Universe [physics]/Earth Sciences/Hydrology040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceXenobioticSludgeNPEbound residues
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Multi‐specific small‐scale fisheries rely on few, locally essential, species: Evidence from a multi‐area study in the Mediterranean

2022

Achieving sound management of small-scale fisheries (SSFs) is globally recognized a key priority for sustaining livelihoods, local economies, social wealth and cultural heritage in coastal areas. The paucity of information on SSFs often prevents the proper assessment of different socio-ecological aspects, potentially leading to draw inappropriate conclusions and hampering the development and adoption of effective policies to foster SSF sustainability. To respond to the growing global call to assess these fisheries, we carried out a multi-disciplinary and data-rich assessment of SSFs at 11 areas in 6 Mediterranean EU countries, combining the analysis of 1292 SSF fishing operations and 149 se…

small-scale fisheriesCPUEspecies contributionMediterraneanManagement Monitoring Policy and LawAquatic ScienceOceanographyEcology Evolution Behavior and SystematicsRPUEFish and Fisheries
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Applying the RUSLE and ISUM in the Tierra de Barros Vineyards (Extremadura, Spain) to Estimate Soil Mobilisation Rates

2020

Spain is one of the largest wine producers in the world, with Extremadura (south-west Spain) being its second-largest producing region after Castilla La Mancha. Within Extremadura, the most traditional and productive viticulture region is the Tierra de Barros, which boasts an annual production of 3&times

soil management system010501 environmental sciences01 natural sciencesVineyardlcsh:AgriculturevineyardsRUSLETierra de Barros0105 earth and related environmental sciencesNature and Landscape ConservationHydrologyGlobal and Planetary Changesoil erosionEcologylcsh:S04 agricultural and veterinary sciencesTillageUniversal Soil Loss EquationSoil water040103 agronomy & agricultureErosionLand degradation0401 agriculture forestry and fisheriesEnvironmental scienceViticultureSoil conservationISUMLand
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