0000000000366003

AUTHOR

Andrey E. Krauklis

showing 7 related works from this author

From the Beehives: Identification and Comparison of Physicochemical Properties of Algerian Honey

2021

In this study, the authors aimed at characterizing 11 Algerian kinds of honey taken from various geographical locations (beehives located at Djelfa (Medjbara and Dzaira), Laghouat, Aflou, Medea, Tiaret, Sidi bel-Abbes, Tiaret, Ain-Safra, Mostaganem, El Bayadh, and Ghardïa). The authors investigated the physicochemical parameters of these honey samples, including density, water content, electrical conductivity, ash content, pH, hydroxymethylfurfural (HMF) content, free acidity, and color. The physicochemical parameters obtained were found to be within acceptable ranges according to the international standards (Codex Alimentarius) for 9 out of 11 analyzed samples: density 1.38–1.50 g/cm3 (the…

SciencefoodQphysicochemical parametershydroxymethylfurfuralhoneyManagement Monitoring Policy and LawHoney sampleschemistry.chemical_compoundchemistryqualityAlgeriaFood scienceWater contentHydroxymethylfurfuralphysicochemical analysisNature and Landscape ConservationResources
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Long-term ISO 23936-2 sweet oil ageing of HNBR

2021

Abstract A hydrogenated nitrile butadiene rubber (HNBR) compound is subjected to ageing in a simulated oil and gas environment in accordance with ISO 23936-2 standard at two elevated temperatures (130 °C and 150 °C) for a period of up to 9 months. Shore D hardness, thermal expansion, dynamic mechanical analysis (DMA), Fourier transform infrared (FTIR) spectroscopy, compression and compression set (CS) measurements are made before and after the chemical exposure. The hardness, modulus at short times, degree of relaxation and CS increases while the coefficient of thermal expansion in HNBR tends to decrease with ageing time and temperature. Temperature is shown to impose a greater effect on th…

Materials sciencePolymers and PlasticsISO 23936-2Organic Chemistry:Plast- og komposittmaterialer: 523 [VDP]Compression setViscoelasticityContext (language use)Material degradationDynamic mechanical analysisHNBRThermal expansion:Polymer and plastics: 523 [VDP]TP1080-1185ddc:540Stress relaxationShore durometerPolymers and polymer manufactureComposite materialGlass transitionSweet oil ageingElastic modulus
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Composite Material Recycling Technology—State-of-the-Art and Sustainable Development for the 2020s

2021

Recently, significant events took place that added immensely to the sociotechnical pressure for developing sustainable composite recycling solutions, namely (1) a ban on composite landfilling in Germany in 2009, (2) the first major wave of composite wind turbines reaching their End-of-Life (EoL) and being decommissioned in 2019–2020, (3) the acceleration of aircraft decommissioning due to the COVID-19 pandemic, and (4) the increase of composites in mass production cars, thanks to the development of high volume technologies based on thermoplastic composites. Such sociotechnical pressure will only grow in the upcoming decade of 2020s as other countries are to follow Germany by limiting and ba…

Engineeringcircular economy;Sociotechnical systemcomposite materialsAutomotive industryend-of-life02 engineering and technologyrecycling010501 environmental sciencescompositeslcsh:Technology7. Clean energy01 natural sciencesCommercializationNuclear decommissioning12. Responsible consumptionComposite materiallcsh:Sciencecars;recycling;Engineering (miscellaneous)0105 earth and related environmental sciencesSustainable developmentcircularitylcsh:Tbusiness.industryCircular economysustainability;sustainability021001 nanoscience & nanotechnologysocietycircularity;composite materials;composites;Work (electrical)end-of-life;technologySustainabilityCeramics and Compositeslcsh:Q0210 nano-technologybusinessJournal of Composites Science
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Bentonite-ionic liquid composites for Congo red removal from aqueous solutions

2021

Abstract Clay-organic composites have attracted great interest due to their ability to remove various contaminants from wastewater. The surfactants are the most commonly used organic compounds for clay modification. However, cationic surfactants are toxic and can be environmentally hazardous. Ionic liquids are a new promising alternative to the cationic surfactants due to lesser toxicity and appropriate thermal stability. The research aim is to prepare an environmentally friendly new class of clay sorbents modified with ionic liquids for potential applications in wastewater treatment from the textile industry. Imidazolium-based ionic liquids with different lengths of alkyl chains were inter…

Thermogravimetric analysisAqueous solutionIon exchangeChemistrySorption02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesAtomic and Molecular Physics and Optics0104 chemical sciencesElectronic Optical and Magnetic MaterialsCongo redchemistry.chemical_compoundSpecific surface areaBentoniteIonic liquidMaterials ChemistryPhysical and Theoretical ChemistryComposite material0210 nano-technologySpectroscopyJournal of Molecular Liquids
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Efficient Removal of Methyl Red Dye by Using Bark of Hopbush

2022

Methyl red (MR) dye, one of the azo dyes, is mutagenic and its persistence has negative effects on the environment and people’s health. The current work is the first to demonstrate that methyl red dye can be removed effectively and sustainably, utilizing biomass derived from the bark of the Dodonaea viscosa (Hopbush) plant. The Hopbush bark shows effective adsorption of MR, upto 73%, under optimized conditions in an aqueous medium. The experimental conditions were optimized by examining the effect of time, initial dye concentration, pH and ionic strength on the adsorption process in an aqueous medium. Maximum (i.e., 73%) adsorption of MR removal (500 ppm) was observed in highly acidic…

Geography Planning and DevelopmentAquatic ScienceBiochemistry<i>Dodonaea viscosa</i> plant bark; animal charcoal; silica gel; adsorption kinetics; adsorption isothermWater Science and TechnologyWater
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Composite Material Recycling Technology – State-of-the-Art and Sustainable Development for the 2020s.

2020

Recently, significant events took place that added immensely to the sociotechnical pressure for developing sustainable composite recycling solutions, namely (1) a ban on composite landfilling in Germany in 2009, (2) the first major wave of composite wind turbines reaching their End-of-Life (EoL) and being decommissioned in 2019–2020, (3) the acceleration of aircraft decommissioning due to the COVID-19 pandemic, and (4) the increase of composites in mass production cars, thanks to the development of high volume technologies based on thermoplastic composites. Such sociotechnical pressure will only grow in the upcoming decade of 2020s as other countries are to follow Germany by limiting and ba…

Sustainable developmentEngineeringSociotechnical systembusiness.industryCircular economyAutomotive industry7. Clean energyCommercializationNuclear decommissioning12. Responsible consumptionWork (electrical)SustainabilityComposite materialbusinessbiomaterials
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Composite material recycling technology—state-of-the-art and sustainable development for the 2020s

2021

Recently, significant events took place that added immensely to the sociotechnical pressure for developing sustainable composite recycling solutions, namely (1) a ban on composite landfilling in Germany in 2009, (2) the first major wave of composite wind turbines reaching their End-of-Life (EoL) and being decommissioned in 2019–2020, (3) the acceleration of aircraft decommissioning due to the COVID-19 pandemic, and (4) the increase of composites in mass production cars, thanks to the development of high volume technologies based on thermoplastic composites. Such sociotechnical pressure will only grow in the upcoming decade of 2020s as other countries are to follow Germany by limiting and ba…

:NATURAL SCIENCES::Physics [Research Subject Categories]
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