Search results for "Water conservation"

showing 9 items of 9 documents

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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Improving soil and water conservation and ecosystem services by sustainable soil management practices: From a global to an Italian soil partnership

2020

The UN Sustainable Development Goals (SDGs) identify the need to restore degraded soils in order to improve productivity and the provision of ecosystem services. The aim is to support food production, store and supply clean water, conserve biodiversity, sequester carbon, and improve soil resilience in a context of climate change. Within this framework, in order to achieve the SDGs and to correct land management in the long-term, soil management is considered mandatory. The reduction of land degradation should be based on various sustainable soil management practices that improve and maintain soil organic matter levels, increase water infiltration, and improve soil water management. This tec…

increase soil availability0208 environmental biotechnology02 engineering and technologylcsh:Plant culturecomplex mixturesEcosystem servicesSoil managementlcsh:AgricultureWater conservationsoil sealingEnvironmental protectionlcsh:SB1-1110soil erosionsustainable soil management.lcsh:S04 agricultural and veterinary scienceswater conservationSoil sealing020801 environmental engineeringGeneral partnership040103 agronomy & agricultureLand degradation0401 agriculture forestry and fisheriesEnvironmental scienceLand degradationSoil conservationAgronomy and Crop ScienceIncrease soil availability Land degradation Soil erosion Soil sealing Sustainable soil management Water conservationItalian Journal of Agronomy
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Cover crop management and water conservation in vineyard and olive orchards

2021

Abstract Sustainability in orchard crops is an important goal for farmers, decision-makers and consumers. The United Nations Sustainable Development Goals emphasize the importance of the soils in the Earth System to achieve sustainability and accomplish the Land Degradation Neutrality Challenge. Within the world agriculture land, olive and vineyards are within the eldest crops in the world, and they are also the ones with the highest degree of soil degradation. Cover crops (CC) are widely accepted as sustainable crop management that reduces soil and water losses, restores organic matter, increases biodiversity and fertility in degraded agriculture soils. The agriculture land must shift into…

Agroforestrybusiness.industrySoil Science04 agricultural and veterinary sciencesSettore AGR/02 - Agronomia E Coltivazioni ErbaceeSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeWater conservationAgricultureSoil retrogression and degradationSustainabilityCover crop Floor management Vineyard Olive Soil water Runoff040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceWater-use efficiencySoil conservationCover cropbusinessSurface runoffAgronomy and Crop ScienceEarth-Surface ProcessesSoil and Tillage Research
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A management and optimisation model for water supply planning in water deficit areas

2014

Summary The integrated water resources management approach has proven to be a suitable option for efficient, equitable and sustainable water management. In water-poor regions experiencing acute and/or chronic shortages, optimisation techniques are a useful tool for supporting the decision process of water allocation. In order to maximise the value of water use, an optimisation model was developed which involves multiple supply sources (conventional and non-conventional) and multiple users. Penalties, representing monetary losses in the event of an unfulfilled water demand, have been incorporated into the objective function. This model represents a novel approach which considers water distri…

geographygeography.geographical_feature_categoryComputer sciencebusiness.industryDrainage basinIntegrated water resources managementWater supplyDistribution (economics)Environmental economicsWater scarcityWater conservationEmpirical researchbusinessWater resource managementWater useWater Science and TechnologyJournal of Hydrology
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An Environmental Analysis of the Effect of Energy Saving, Production and Recovery Measures on Water Supply Systems under Scarcity Conditions

2015

Water is one of the primary resources provided for maintaining quality of life and social status in urban areas. As potable water is considered to be a primary need, water service has usually been managed without examining the economic and environmental sustainability of supply processes. Currently, due to increases in energy costs and the growth of environment preservation policies, reducing water leakage, energy consumption and greenhouse gas (GHG) production have become primary objectives in reducing the environmental footprint of water service. The present paper suggests the implementation of some performance indicators that show the interdependence of water loss, energy consumption and…

Control and OptimizationNatural resource economicsleakageEnergy Engineering and Power TechnologyWater supplylcsh:Technologyjel:Q40Water conservationjel:Qjel:Q43jel:Q42jel:Q41jel:Q48jel:Q47Electrical and Electronic EngineeringEngineering (miscellaneous)jel:Q49Energy recoveryRenewable Energy Sustainability and the Environmentbusiness.industrylcsh:Twater supplyEnvironmental resource managementjel:Q0Energy consumptionperformance indicatorsjel:Q4Energy conservationGreenhouse gasSustainabilityEnvironmental sciencewater supply; energy; leakage; GHG; performance indicatorsGHGbusinessEnergy (miscellaneous)Efficient energy useenergyEnergies
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Energy, water and environmental balance of a complex water supply system

2015

The present paper describes the analysis of water and energy balance in a complex urban water supply system. The analysis was carried out employing Life Cycle Analysis (LCA) methodologies. The LCA approach was integrated with the analysis of the system energy and water balance. For a real size water supply system, based on the results of the individual LCAs, the current baseline was constructed highlighting the water, energy and environmental (in terms of CO2eq emissions in the atmosphere) costs of supplied water. Then, three different mitigation measures have been evaluated: the first is based on energy production by installation of photovoltaic systems; the second is based on energy recov…

Water resourcesEnergy recoveryWater conservationWater balancelife cycle assessment scenario analysis potable water supply sanitation urban water systemsbusiness.industryPhotovoltaic systemEnergy balanceEnvironmental engineeringWater supplyEnvironmental sciencebusinessLife-cycle assessmentWIT Transactions on Ecology and the Environment
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Occurrence of priority pollutants in WWTP effluents and Mediterranean coastal waters of Spain

2011

A comprehensive study aimed at evaluating the occurrence, significance of concentrations and spatial distribution of priority pollutants (PPs) along the Comunidad Valenciana coastal waters (Spain) was carried out in order to fulfil the European Water Framework Directive (WFD). Additionally, PP concentrations were also analysed in the effluent of 28 WWTPs distributed along the studied area. In coastal waters 36 organic pollutants of the 71 analysed, including 26 PPs were detected although many of them with low frequency of occurrence. Only 13 compounds, which belong to four different classes (VOCs, organochlorinated pesticides, phthalates and tributyltin compounds (TBT)) showed a frequency o…

Unclassified drugWater conservationEffluentsWastewaterOceanographyPhthalic acidWaste Disposal Fluidchemistry.chemical_compoundPentachlorobenzeneWater Pollution ChemicalWater treatmentOrganic pollutantWater pollutionWater pollutantPriority pollutants (PPs)Environmental quality standards (EQS)TributyltinEstersVolatile organic compoundPriority pollutantPollutionCoastal waterWater Framework DirectiveWater pollutionEnvironmental chemistryCoastal watersSeasonsEnvironmental MonitoringWaste water treatment plantPentachlorobenzeneAquatic ScienceWwtp effluentChlorobenzenesArticleHazardous SubstancesWWTP effluentsPhenolsWater Framework Directive (WFD)Pollution monitoringDiethylhexyl PhthalateMediterranean SeaSpatial distributionSeawaterSea pollutionEffluentTECNOLOGIA DEL MEDIO AMBIENTEPollutantOrganochlorine pesticideOctylphenolVolatile Organic CompoundsPhenolConcentration (process)Environmental engineeringQuality controlEnvironmental quality standardsPhthalic acid 2 ethylhexyl monoesterEffluentchemistrySpainComunidad ValenciaConcentration (parameters)TributyltinEnvironmental scienceOrganic pollutantsWater qualityTrialkyltin CompoundsOrganic pollutionPollution detectionWater Pollutants ChemicalWaste disposal
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Adopting sustainable irrigation technologies in Italy: a study on the determinants of inter- and intra-farm diffusion

2023

This paper analyses the drivers for adopting irrigation systems with water conservation and saving technologies (WCSTs) by Italian farmers. The agricultural sector in Italy, like in other Mediterranean countries, suffers from water scarcity and water endowment variability. Water resources play a decisive role in agricultural production and in implementing large-scale WCSTs capable of improving the resilience of the whole agricultural sector. This study uses a microeconomic panel data approach to estimate farmers' decisions in adopting (inter-farm) sustainable irrigation technologies and assesses the intensity of (intra-farm) water-saving practices. Our analysis identifies the main determina…

irrigation technologies;irrigation technologiesItalian farmersSettore SECS-P/02 - POLITICA ECONOMICASettore SECS-P/06 - ECONOMIA APPLICATAtechnology adoption;technology adoptionWater conservation and saving technologiestechnology diffusion;adaptation to climate change;Management of Technology and Innovationtechnology diffusionWater conservation and saving technologies;General Economics Econometrics and Financeadaptation to climate change
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What are the factors driving the adoption and intensity of sustainable irrigation technologies in Italy?

2020

This paper aims to analyse the determinants of Italian farmers’ adoption of sustainable irrigation technologies such as micro-irrigation (drip and sprinklers) and sub-irrigation technologies. To improve farmers’ water management, climate variability adaptive behaviour should be incentivized. Italy, like other Mediterranean countries, has suffered the most for an increase in frequency and intensity of droughts, higher temperatures and fewer precipitations. Applying innovative irrigation systems, water scarcity and water stress may be overcome. Water conservation and saving technologies may help in supporting water-saving behaviour, increasing water conservation in the natural environment and…

Irrigation technologieItalian farmersWater conservation and saving technologieAdaptation to climate changeTechnology adoption
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