Search results for "biochar"

showing 10 items of 94 documents

Pineapple peel biochar and lateritic soil as adsorbents for recovery of ammonium nitrogen from human urine.

2021

Abstract Human urine is a rich source of nitrogen which can be captured to supplement the existing sources of nitrogen fertilizers thus contributing to enhanced crop production. However, urine is the major contributor of macronutrients in municipal wastewater flows resulting into eutrophication of the receiving water bodies. Herein, pineapple peel biochar (PPB), and lateritic soil (LS) adsorbents were prepared for the safe removal of ammonium nitrogen (NH4+-N) from human urine solutions. Physicochemical properties of PPB, and LS were characterized by scanning electron microscopy-energy dispersive spectroscopy (SEM-EDS), X-ray powder diffraction (XRD), Fourier transform infrared spectroscopy…

Thermogravimetric analysisLangmuirEnvironmental EngineeringNitrogen0208 environmental biotechnologychemistry.chemical_element02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawAnanas01 natural sciencesSoilAdsorptionBiocharAmmonium CompoundsSpectroscopy Fourier Transform InfraredHumansFreundlich equationFourier transform infrared spectroscopyWaste Management and Disposal0105 earth and related environmental sciencesChemistryGeneral MedicineHydrogen-Ion ConcentrationNitrogen020801 environmental engineeringKineticsWastewaterCharcoalAdsorptionWater Pollutants ChemicalNuclear chemistryJournal of environmental management
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On the self-heating behavior of upgraded biochar pellets blended with pyrolysis oil: Effects of process parameters

2020

Abstract Biochar obtained from biomass pyrolysis is a promising carbon neutral material which can be used in substitution of fossil coal and coke in metallurgical applications. Biochar’s mechanical properties improve significantly without compromising reactivity, when upgraded by densification with pyrolysis oil and reheated. However, upgraded biochar pellets use in the industry is limited due to the risks associated with self-heating. This issue must be seriously considered for further industrial production of upgraded biochar pellets. Self-heating oven tests are generally time-consuming and limit the possibility of testing various potential solutions. The aim of this work was both to inve…

Thermogravimetric analysisMaterials science020209 energyGeneral Chemical EngineeringPelletsEnergy Engineering and Power Technology02 engineering and technologyCombustionchemistry.chemical_compoundPellet020401 chemical engineeringResponse surface methodologyPyrolysis oilBiocharDensification0202 electrical engineering electronic engineering information engineeringCoal0204 chemical engineeringbusiness.industryOrganic ChemistryCokePulp and paper industryVDP::Teknologi: 500BiocharPyrolysis oilFuel TechnologychemistrySelf-heatingbusinessPyrolysis
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Utilizzo del biochar come substrato alternativo nella coltivazione di specie ornamentali in vaso

Utilizzo del biochar come substrato alternativo nella coltivazione di specie ornamentali in vasoSettore AGR/13 - Chimica Agraria
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Manure as a potential source of renewable energy: The behaviour and characterisation of biofuels generated from three animal manure types when subjec…

2020

Regions with high livestock density lack sufficient land on which to apply manure without exceeding the legal limits set by the European Union Directives. The lack of manure processing alternatives aggravates the situation, especially in the case of islands. Consequently, manure becomes a liability rather than an asset. Results indicate that pyrolysis is an option for manure processing. However, a significant limitation is the moisture content of the starting material, that could compromise the process efficiency. Yields of biogas, bio-oil and biochar, all of which have a potential use as biofuels, are particular to animal type and manure handling system. The conversion of manure to biofuel…

Waste managementRenewable Energy Sustainability and the Environmentbusiness.industryStrategy and ManagementSettore AGR/09 - Meccanica AgrariaManagement Monitoring Policy and LawDevelopmentManureRenewable energyBiogasBiofuelBiocharEnvironmental sciencemedia_common.cataloged_instanceLivestockmanure Renewable Energy Sources (RES) islands pyrolysis biofuels bioeconomyEuropean unionbusinessPyrolysismedia_common
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How and why does willow biochar increase a clay soil water retention capacity?

2018

Addition of biochar into a soil changes its water retention properties by modifying soil textural and structural properties. In addition, internal micrometer-scale porosity that is able to directly store readily plant available water affects soil water retention properties. This study shows how precise knowledge of the internal micrometer-scale pore size distribution of biochar can deepen the understanding of the biochar-water interactions in soils. The micrometer-scale porosity of willow biochar was quantitatively and qualitatively characterized using X-ray tomography, 3D image analysis and Helium ion microscopy. The effect of biochar application on clay soil water retention was studied by…

Water retention curveSoil science010501 environmental sciencesmikroskopia01 natural sciencessavihuokoisuussoil water retentiontomografiaBiocharSurface roughnessmedicine3D image analysisbiochar3D-mallinnusPorosityta216Waste Management and DisposalWater contentta2180105 earth and related environmental sciences219 Environmental biotechnologybiohiilimaaperäta114Renewable Energy Sustainability and the EnvironmentChemistryForestry04 agricultural and veterinary sciences15. Life on land6. Clean waterWater retentionmikrorakenteetSoil structureplant available waterSoil water040103 agronomy & agriculturehelium ion microscopy0401 agriculture forestry and fisheriesmedicine.symptomvesipitoisuusAgronomy and Crop ScienceX-ray tomographyBiomass and Bioenergy
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Torrefaction and pyrolysis of metal-enriched poplars from phytotechnologies: Effect of temperature and biomass chlorine content on metal distribution…

2017

Abstract Torrefaction (290 °C) and pyrolysis (450 and 800 °C) trials were performed at pilot scale with a patented reactor on metal-enriched poplars from a contaminated soil managed by phytotechnologies and poplars cultivated on uncontaminated soil, for comparison. This study emphasized the influence of temperature on end-product yield, metal distribution in end-products and metal behavior. Results showed that the evolution of the end-product yield, i.e. biochar, bio-oil and gas fractions, was depending on temperature rather than other parameters such as the origin or metal content of the tested poplars. Torrefaction decreased the processed poplars weight, leading to metal-enriched torrefie…

[SDV.EE]Life Sciences [q-bio]/Ecology environmentVolatilisationRenewable Energy Sustainability and the EnvironmentChemistry020209 energyBiomasschemistry.chemical_elementForestry02 engineering and technologyTorrefactionSoil contamination[ SDV.EE ] Life Sciences [q-bio]/Ecology environmentMetalvisual_artEnvironmental chemistryBotanyBiochar0202 electrical engineering electronic engineering information engineeringvisual_art.visual_art_mediumChlorineWaste Management and DisposalAgronomy and Crop SciencePyrolysisComputingMilieux_MISCELLANEOUS
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Biochar from Wood Chips and Corn Cobs for Adsorption of Thioflavin T and Erythrosine B.

2022

Biochars from wood chips (WC) and corn cobs (CC) were prepared by slow pyrolysis and used for sorption separation of erythrosine B (EB) and thioflavin T (TT) in batch experiments. Biochar-based adsorbents were extensively characterized using FTIR, XRD, SEM-EDX, and XPS techniques. The kinetics studies revealed that adsorption on external surfaces was the rate-limiting step for the removal of TT on both WC and CC biochar, while intraparticle diffusion was the rate-limiting step for the adsorption of EB. Maximal experimental adsorption capacities Qmaxexp of TT reached 182 ± 5 (WC) and 45 ± 2 mg g−1 (CC), and EB 12.7 ± 0.9 (WC) and 1.5 ± 0.4 mg g−1 (CC),…

adsorption kineticthioflavin Tisothermwood chipseryhrosine Bcorn cobbiocharGeneral Materials Sciencewood chips; corn cobs; biochar; thioflavin T; eryhrosine B; adsorption kinetics; isothermMaterials (Basel, Switzerland)
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Effects of biochar addition on anaerobic digestion and comparison of different biochar qualities

2017

Tässä pro gradu -työssä tutkittiin, voidaanko anaerobisen mädätyksen toimintaa parantaa lisäämällä mädätysprosessiin pieniä määriä biohiiltä. Anaerobista mädätystä tutkittiin laboratoriomittakaavan biokaasukokeilla, joissa biokaasureaktoreita käsiteltiin sekä pyrolyyttisesti että hydrodermaalisesti tuotetulla biohiilellä. Biohiilen mahdolliseen kykyyn lievittää ammoniakki-inhibitiota kiinnitettiin huomiota. Seitsemän pyrolyyttisen ja yhden hydrodermaalisen hiilen ominaisuuksia vertailtiin, jotta voitaisiin määrittää soveltuvia biohiiliä anaerobiseen mädätykseen. Biohiilistä analysoitiin ammonium-adsorptiokapasiteetti, irtoavan liukoisen orgaanisen kokonaishiilen (DOC) ja liukoisen kokonaist…

anaerobic digestionPAH-yhdisteetbiohiilibiokaasuPAH compoundsjätteiden käsittelybioenergyhydrocharmetaanibioenergiadigestatebiogasbiocharwaste managementmädätysammonia inhibitionorganic waste
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Proprietà nutritive del biochar e risposte delle colture prodotte Stato dell’arte e sperimentazione

2012

biochar
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Effects of pyrolysis conditions on the thermal transformation of chicken manure into char

2012

Biochar is a fine-grained and highly porous carbonaceous substance, arising from the pyrolitic decomposition of natural or synthetic organic materials. It is lately applied to soils to favorably affect soil physico-chemical properties, such as water and nutrient retention and cation exchange capacity (CEC). The extent of the effect of biochar on crop productivity is very variable due to the different biophysical interactions and processes that occur when it is applied to soils. Char properties are greatly influenced by both natures of feedstock and process conditions. An accurate characterization of biochar is crucial to evaluate the possibility to amend soil with such material by avoiding …

biochar Relaxometry NMR T2 DSC TGA
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