Search results for "Soil function"

showing 10 items of 27 documents

Selenium and heavy metals content in some Mediterranean soils

2010

Abstract The study of metal contents in industrial, agricultural or/and polluted soils compared with natural or unpolluted soils is currently necessary to obtain reference values and to assess soil contamination. Nonetheless, very few works published appear in international journals on elements like Se, Li and Sr in Spanish soils. This study determines the total levels of Se, Li, Sr, As, Cd, Co, Cr, Cu, Ni, Pb, V, Zn, Fe, Mn and Ba in 14 natural (unpolluted) soils (Gypsisols, Leptosols, Arenosols and Acrisols), 14 agricultural soils (Anthrosols, Fluvisols and Luvisols), and 4 industrial–urban affected-surface soil horizons (Anthrosols and Fluvisols) of Eastern Spain. The geochemical baselin…

Soil organic matterchemistry.chemical_elementMineralogySoil contaminationchemistryGeochemistry and PetrologySoil functionsEnvironmental chemistrySoil waterSoil horizonGypsisolsEconomic GeologyClay mineralsArsenicJournal of Geochemical Exploration
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Ecological network analysis reveals the inter-connection between soil biodiversity and ecosystem function as affected by land use across Europe

2016

Soil organisms are considered drivers of soil ecosystem services (primary productivity, nutrient cycling, carbon cycling, water regulation) associated with sustainable agricultural production. Soil biodiversity was highlighted in the soil thematic strategy as a key component of soil quality. The lack of quantitative standardised data at a large scale has resulted in poor understanding of how soil biodiversity could be incorporated into legislation for the protection of soil quality. In 2011, the EcoFINDERS (FP7) project sampled 76 sites across 11 European countries, covering five biogeographical zones (Alpine, Atlantic, Boreal, Continental and Mediterranean) and three land-uses (arable, gra…

0301 basic medicineSoil biodiversityNitrogenSoil biology[SDV]Life Sciences [q-bio]DIVERSITYSoil ScienceCarbon cycling and storageWiskundige en Statistische Methoden - BiometrisNutrient cyclingARBUSCULAR MYCORRHIZAL FUNGIFOOD WEBS03 medical and health sciencesFOREST SOILCARBON SEQUESTRATIONSoil functionsSoil ecologyQUALITYMICROBIAL COMMUNITIESMathematical and Statistical Methods - BiometrisBodembiologie2. Zero hungerSoil healthEcologyEcologySoil organic matterUSE SYSTEMSPhosphorus04 agricultural and veterinary sciencesSoil carbonSoil Biology15. Life on landPE&RCAgricultural and Biological Sciences (miscellaneous)Soil qualitySoil biodiversityTERRESTRIAL ECOSYSTEMS030104 developmental biologyAgronomyinternational040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceEXTRACELLULAR ENZYME-ACTIVITIESEcosystem functionNetwork analysis
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Historical Perspectives on Soil Mapping and Process Modeling for Sustainable Land Use Management

2017

Basic soil management goes back to the earliest days of agricultural practices, approximately 9000 BCE. Through time humans developed soil management techniques of ever increasing complexity, including plows, contour tillage, terracing, and irrigation. Spatial soil patterns were being recognized as early as 3000 BCE, but the first soil maps did not appear until the 1700s and the first soil models finally arrived in the 1880s. The beginning of the 20th century saw an increase in standardization in many soil science methods and wide-spread soil mapping in many parts of the world, particularly in developed countries. However, the classification systems used, mapping scale, and national coverag…

Soil mapHydrology010504 meteorology & atmospheric sciencesLand usebusiness.industryEnvironmental resource managementSoil classification04 agricultural and veterinary sciences01 natural sciencesSoil qualitySoil managementSoil surveyAgricultural soil scienceSoil functions040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental sciencebusiness0105 earth and related environmental sciences
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Effective Practices in Mitigating Soil Erosion from Fields

2017

Soil erosion by water is a natural process that cannot be avoided. Soil erosion depends on many factors, and a distinction should be made between humanly unchangeable (e.g., rainfall) and modifiable (e.g., length of the field) soil erosion factors. Soil erosion has both on-site and off-site effects. Soil conservation tries to combine modifiable factors so as to maintain erosion in an area of interest to an acceptable level. Strategies to control soil erosion have to be adapted to the desired land use. Knowledge of soil loss tolerance, T, i.e., the maximum admissible erosion from a given field, allows technicians or farmers to establish whether soil conservation practices need to be applied …

soil erosion soil loss tolerance on-site and off-site erosion impacts soil conservation burned areas erosion modeling for soil conservationSoil biodiversityAgroforestrycomplex mixturesSoil managementNo-till farmingEnvironmental protectionSoil functionsSoil retrogression and degradationEnvironmental scienceSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliDryland salinitySoil conservationSurface runoff
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Land management evolution in Italy and consequences on soil qualities and functions.

2014

Soil qualitieLand managementSettore AGR/14 - PedologiaSoil functions
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Experimental community coalescence sheds light on microbial interactions in soil and restores impaired functions

2023

Abstract Background Microbes typically live in communities where individuals can interact with each other in numerous ways. However, knowledge on the importance of these interactions is limited and derives mainly from studies using a limited number of species grown in coculture. Here, we manipulated soil microbial communities to assess the contribution of interactions between microorganisms for assembly of the soil microbiome. Results By combining experimental removal (taxa depletion in the community) and coalescence (mixing of manipulated and control communities) approaches, we demonstrated that interactions between microorganisms can play a key role in determining their fitness during soi…

Microbiology (medical)[SDV] Life Sciences [q-bio]coalescencenitrogen cyclingsoil functionsmicrobial interactionsMicrobiologycommunity manipulations
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Soil water erosion on Mediterranean vineyards: A review

2016

Soil water erosion on cultivated lands represents a severe threat to soil resources in the world, and especially in Mediterranean areas, due to their topographic, edaphic and climatic conditions. Among the cultivated lands, vineyards deserve a particular attention because, aside representing one of the most important crops in terms of income and employment, they also have proven to be the form of agricultural use that causes one of the highest soil losses. Although the topic of soil water erosion on vineyards has been studied, it still raises uncertainties, due to the high variability of procedures for data acquisition, which consists into different scales of analysis and measurement method…

RainfallMediterranean climateTopographyErosion rates010501 environmental sciences01 natural sciencesSoil functionsSoil conservation techniques0105 earth and related environmental sciencesEarth-Surface ProcessesHydrologybusiness.industryAgricultureEdaphic04 agricultural and veterinary sciencesAgricultureSoil water040103 agronomy & agricultureErosion0401 agriculture forestry and fisheriesEnvironmental scienceSoil propertiesViticultureAgriculture; Erosion rates; Rainfall; Soil conservation techniques; Soil properties; Topography; Earth-Surface ProcessesSoil conservationbusinessWater resource managementCATENA
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Links Between Soil Security and the Influence of Soil on Human Health

2017

Soil is important to human health because of (1) food availability and quality, (2) human contact with various chemicals in soil, (3) human contact with soil organisms, and (4) disposal of wastes. The five dimensions of soil security each have ties to soils and their influence on human health. Capability is related to the ability of soils to produce adequate and high-quality food and filter waste products to provide a clean environment, particularly clean, safe water supplies. Condition influences the nutritional quality of agricultural products produced in a given soil. Capital recognizes that there is value to the services soil provides in promoting human health, costs when soil constitue…

Soil healthbusiness.industryAgroforestry04 agricultural and veterinary sciences010501 environmental sciencescomplex mixtures01 natural sciencesEcosystem servicesSoil functionsEnvironmental protectionAgricultureSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceProduction (economics)Water qualitySoil conservationbusiness0105 earth and related environmental sciences
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BIOCHARS IN SOILS: TOWARDS THE REQUIRED LEVEL OF SCIENTIFIC UNDERSTANDING

2017

The special issue on Biochar as an Option for Sustainable Resource Management Key priorities in biochar research for future guidance of sustainable policy development have been identified by expert assessment within the COST Action TD1107. The current level of scientific understanding (LOSU) regarding the consequences of biochar application to soil were explored. Five broad thematic areas of biochar research were addressed: soil biodiversity and ecotoxicology, soil organic matter and greenhouse gas (GHG) emissions, soil physical properties, nutrient cycles and crop production, and soil remediation. The highest future research priorities regarding biochar’s effects in soils were: functional …

Soil biodiversityprogramme de recherche scientifique010501 environmental sciences01 natural sciencesSoil managementSoil functionsCHARCOAL PRODUCTION11. SustainabilityBiocharbiodiversity2. Zero hungerSoil healthnutrient cyclessoil remediation04 agricultural and veterinary sciencesCONTAMINATED SOILS6. Clean waterEnvironmental soil science415 Other agricultural sciencesBLACK CARBONsoil physical propertiesSHORT-TERMEnvironmental Engineering[SDE.MCG]Environmental Sciences/Global ChangesSoil biologyManagement Monitoring Policy and Lawecotoxicology12. Responsible consumptionPYROLYSIS TEMPERATURECROP PRODUCTIVITYORGANIC-CARBONsoil organic mattergreenhouse gasesbiocharNUTRIENT AVAILABILITYbiochar biodiversity ecosystem services ecotoxicology greenhouse gases nutrient cycles policy support soil organic matter soil physical properties soil remediation.1172 Environmental sciences0105 earth and related environmental sciencesNature and Landscape ConservationSoil organic matterMICROBIAL BIOMASSEnvironmental engineeringpolicy supportTA170-17115. Life on landGAS EMISSIONS13. Climate action040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceecosystem servicesJournal of Environmental Engineering and Landscape Management
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The contribution of the European Society for Soil Conservation (ESSC) to scientific knowledge, education and sustainability

2019

Soil is an integral component of the global environmental system which supports the quality and diversity of terrestrial life on Earth. Therefore, it is vital to consider the processes and impacts of soil degradation on society, especially on the provision of environmental goods and services, including food security and climate change mitigation and adaptation. Scientific societies devoted to soil science play significant roles in reducing soil degradation and promoting soil conservation by advancing scientific knowledge, education and environmental sustainability. The ESSC was founded on 4 November 1988, with the aims to: 1. Support research on soil degradation, soil protection and soil an…

Agriculture and Food Sciences[SDV]Life Sciences [q-bio]0208 environmental biotechnologySoil Science02 engineering and technology[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studySoil functionsSoil educationSoil degradationSoil functionsSoil retrogression and degradationSoil health11. SustainabilityNature and Landscape ConservationWater Science and Technology2. Zero hungerSoil healthFood securitybusiness.industryEnvironmental resource management04 agricultural and veterinary sciences15. Life on landsoil functions6. Clean water020801 environmental engineeringlcsh:TA1-204013. Climate actionSustainable managementSoil knowledgeSettore AGR/14 - PedologiaEarth and Environmental SciencesSustainabilitySoil waterSoil function040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental sciencelcsh:Engineering (General). Civil engineering (General)businessSoil conservationAgronomy and Crop Science
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