Search results for "WASTE"

showing 10 items of 2580 documents

Adsorption of Heavy Metals from Aqueous Solutions onto Activated Carbon in Single Cu and Ni Systems and in Binary Cu-Ni, Cu-Cd and Cu-Zn Systems

1997

Single copper and nickel adsorption from aqueous solutions onto a granular activated carbon is reported. Metal removals increase on raising pH and temperature, and decrease on raising the initial metal concentration at constant carbon dose. The adsorption processes are modelled using the surface complex formation (SCF) Triple Layer Model (TLM) with an overall surface bidentate species. A dependence of the SCF constant on pH, initial molar metal/carbon ratio and temperature is observed, and a correlation for log Kads is determined. The SCF model successfully predicts copper and nickel removals in single metal solutions. Adsorption in the binary metal systems copper–nickel, copper–cadmium and…

Renewable Energy Sustainability and the EnvironmentGeneral Chemical EngineeringOrganic ChemistryInorganic chemistrychemistry.chemical_elementPollutionCopperInorganic ChemistryMetalNickelFuel TechnologyAdsorptionchemistryTransition metalvisual_artmedicinevisual_art.visual_art_mediumWaste Management and DisposalCarbonEquilibrium constantBiotechnologyActivated carbonmedicine.drugJournal of Chemical Technology & Biotechnology
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Treatment of aqueous solutions of oxytetracycline by different electrochemical approaches: anodic oxidation, pressurized electro-Fenton and oxidation…

2023

The tetracycline group (TCs) includes the most common antibiotics for treatment of both human and animal infections. TCs are resistant to biological degradation; hence, conventional wastewater treatments are unable to remove these contaminants. Here, the utilization of different electrochemical processes, such as electro-Fenton (EF), direct anodic oxidation (AO) and indirect oxidation by electrogenerated active chlorine (EAC), for the treatment of aqueous solutions of oxytetracycline (OTC), which is one of the TCs, was studied. The effect of various operating conditions was evaluated to optimize the selected processes. EAC gave the fastest abatement of OTC, but the lowest removal of TOC and…

Renewable Energy Sustainability and the EnvironmentGeneral Chemical EngineeringOrganic Chemistryadvanced oxidation proceanodic oxidationSettore ING-IND/27 - Chimica Industriale E TecnologicaPollutionInorganic ChemistryFuel Technologytetracycline groupantibioticoxytetracyclineelectro-FentonWaste Management and DisposalBiotechnology
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Torrefaction technology for solid fuel production

2011

Renewable Energy Sustainability and the EnvironmentPelletsBiomassForestrySolid fuelTorrefactionPulp and paper industryBiofuelvisual_artvisual_art.visual_art_mediumEnvironmental scienceProduction (economics)SawdustWaste Management and DisposalAgronomy and Crop ScienceGCB Bioenergy
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One-stage H2 and CH4 and two-stage H2+ CH4 production from grass silage and from solid and liquid fractions of NaOH pre-treated grass silage

2009

Abstract In the present study, mesophilic CH4 production from grass silage in a one-stage process was compared with the combined thermophilic H2 and mesophilic CH4 production in a two-stage process. In addition, solid and liquid fractions separated from NaOH pre-treated grass silage were also used as substrates. Results showed that higher CH4 yield was obtained from grass silage in a two-stage process (467 ml g−1 volatile solids (VS)original) compared with a one-stage process (431 ml g−1 VSoriginal). Similarly, CH4 yield from solid fraction increased from 252 to 413 ml g−1 VSoriginal whereas CH4 yield from liquid fraction decreased from 82 to 60 ml g−1 VSoriginal in a two-stage compared to …

Renewable Energy Sustainability and the EnvironmentSilageForestryDark fermentationchemistry.chemical_compoundAnimal scienceAgronomychemistryBioenergySodium hydroxideYield (chemistry)FermentationEnergy sourceWaste Management and DisposalAgronomy and Crop ScienceMesophileBiomass and Bioenergy
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Bio-coal, torrefied lignocellulosic resources – Key properties for its use in co-firing with fossil coal – Their status

2012

Abstract Bio-coal has received generous amounts of media attention because it potentially allows greater biomass co-firing rates and net CO2 emission reductions in pulverised-coal power plants. However, little scientific research has been published on the feasibility of full-scale commercial production of bio-coal. Despite this, several companies and research organisations worldwide have been developing patented bio-coal technologies. Are the expectations of bio-coal realistic and are they based on accepted scientific data? This paper examines strictly peer-reviewed scientific publications in order to find an answer. The findings to date on three key properties of torrefied biomass are pres…

Renewable Energy Sustainability and the Environmentbusiness.industryEnergy balanceBiomassForestryTorrefactioncomplex mixturesBiotechnologyRenewable energyProduct (business)BioenergyProduction (economics)Environmental scienceCoalbusinessProcess engineeringWaste Management and DisposalAgronomy and Crop Scienceta218Biomass and Bioenergy
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Case Study of Potential Production of Renewable Energy Sources (RES) from Livestock Wastes in Mediterranean Islands

2017

The aim of this work is to evaluate the potential production of Renewable Energy Sources (RES) from livestock wastes that are commonly found on Mediterranean islands, by using the island of Malta as a case study. Organic wastes in the form of livestock manure and slurry, as well as other by-products originating from the food transformation industry in the making of alcoholic beverages and the processing of olives, tomatoes and other streams, if mixed in such a way to achieve a correct C/N ratio, can be subjected to anaerobic co-digestion for the production of biogas and digestate. Biogas can be further transformed into biomethane, a fuel that can be used to power surface transportation and …

Renewable energy sources -- Mediterranean Regionlcsh:Computer engineering. Computer hardwareRenewable Energy Sources Livestock WastesSettore AGR/09 - Meccanica AgrariaAgricultural wastes -- Environmental aspectslcsh:TP155-156Biomass energylcsh:TK7885-7895lcsh:Chemical engineeringChemical Engineering Transactions
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Environmental performance of wood pellets' production through life cycle analysis

2016

Abstract Forests play a key role as the source of an essential renewable material and/or fuel: wood. The aim of this study was to evaluate the environmental impacts related to high-quality pellet production for domestic heating following the LCA (life cycle assessment) methodology and considering a cradle-to-gate perspective in the Tuscany region. This is representative and interesting for Italian pellet factories and for similar factories located in Central Europe, considering the Italian contribution to the production capacity of that area. All of the activities involved, from wood extraction in no-industrial forests to packed pellet production, ready for delivery to final users, were tak…

Renewable energyEngineeringEnvironmental analysis020209 energyPelletsNo-industrial forestry02 engineering and technologyForest produce010501 environmental sciences01 natural sciencesIndustrial and Manufacturing EngineeringEnvironmental impactLife cycle assessmentPellet0202 electrical engineering electronic engineering information engineeringEnvironmental impact assessmentElectrical and Electronic EngineeringLife-cycle assessmentSettore AGR/06 - Tecnologia Del Legno E Utilizzazioni Forestali0105 earth and related environmental sciencesCivil and Structural EngineeringWaste managementbusiness.industryMechanical EngineeringDomestic heatingBuilding and ConstructionPollutionRenewable energyGeneral EnergyItalyElectricitybusinessEnergy
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Renewable energies driven electrochemical wastewater/soil decontamination technologies: A critical review of fundamental concepts and applications

2020

Abstract Electrochemical wastewater and soil treatments are exciting set of technologies that has been well-studied over the recent years as one of the most-effective remediation techniques for the removal of hazardous pollutants from liquids effluents and soil. The main requirement of these technologies is electricity and their sustainability can be largely improved if they are powered by renewable energy sources. Likewise, this green energy powering can help to apply these technologies in remote areas, such as rural communities in developing countries, where no electricity grid is available. This review presents a comprehensive discussion on fundamental concepts and applications of renewa…

Renewable energyEnvironmental remediationBiomass02 engineering and technology010402 general chemistry01 natural sciencesCatalysisSolar energyProcess engineeringWastewater and contaminated soilsWind energyGeneral Environmental ScienceWind powerbusiness.industryProcess Chemistry and TechnologyPhotovoltaic systemBiomass energy021001 nanoscience & nanotechnology0104 chemical sciencesRenewable energyWork (electrical)SustainabilityEnvironmental scienceElectricity0210 nano-technologybusinessElectrochemical technologies
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Reducing electric and thermal energy needs in buildings by using innovative envelope materials - Laboratory results of bio-composites embodying tomat…

2018

The life style of building occupants is continuously arising towards conditions that are more comfortable involving, on turn, the growing of the electric energy consumptions for climatization purposes. This calls for the improvement of the efficiencies of equipment along with environmental performance of building materials. Laboratory analyses of samples of mixed materials, utilizing tomato stems harvested in Sicily and Cataluña, have been conducted Thermal conductance and mechanical properties have been detected for different rates of bio-component and inert materials. First results of the thermal properties seem to situate such bio-composites among the insulating building materials, for a…

Renewable thermal insulation materialSettore ING-IND/11 - Fisica Tecnica AmbientaleThermal conductivityUrban agriculture wasteTomato plant stem
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Rapid analysis of effluents generated by the dairy industry for fat determination by preconcentration in nylon membranes and attenuated total reflect…

2014

Abstract This paper describes a new approach for the determination of fat in the effluents generated by the dairy industry which is based on the retention of fat in nylon membranes and measurement of the absorbances on the membrane surface by ATR-IR spectroscopy. Different options have been evaluated for retaining fat in the membranes using milk samples of different origin and fat content. Based on the results obtained, a method is proposed for the determination of fat in effluents which involves the filtration of 1 mL of the samples through 0.45 µm nylon membranes of 13 mm diameter. The fat content is then determined by measuring the absorbance of band at 1745 cm −1 . The proposed method c…

ReproducibilityChromatographyChemistryIndustrial WasteInfrared spectroscopyMembranes ArtificialAnalytical Chemistrylaw.inventionFatsAbsorbanceDairyingNylonsMembranelawAttenuated total reflectionSpectroscopy Fourier Transform InfraredGravimetric analysisSample preparationFiltrationTalanta
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