8 resultados para ex-situ nitrification

em Doria (National Library of Finland DSpace Services) - National Library of Finland, Finland


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Crystal growth is an essential phase in crystallization kinetics. The rate of crystal growth provides significant information for the design and control of crystallization processes; nevertheless, obtaining accurate growth rate data is still challenging due to a number of factors that prevail in crystal growth. In industrial crystallization, crystals are generally grown from multi-componentand multi-particle solutions under complicated hydrodynamic conditions; thus, it is crucial to increase the general understanding of the growth kinetics in these systems. The aim of this work is to develop a model of the crystal growth rate from solution. An extensive literature review of crystal growth focuses on themodelling of growth kinetics and thermodynamics, and new measuring techniques that have been introduced in the field of crystallization. The growth of a singlecrystal is investigated in binary and ternary systems. The binary system consists of potassium dihydrogen phosphate (KDP, crystallizing solute) and water (solvent), and the ternary system includes KDP, water and an organic admixture. The studied admixtures, urea, ethanol and 1-propanol, are employed at relatively highconcentrations (of up to 5.0 molal). The influence of the admixtures on the solution thermodynamics is studied using the Pitzer activity coefficient model. Theprediction method of the ternary solubility in the studied systems is introduced and verified. The growth rate of the KDP (101) face in the studied systems aremeasured in the growth cell as a function of supersaturation, the admixture concentration, the solution velocity over a crystal and temperature. In addition, the surface morphology of the KDP (101) face is studied using ex situ atomic force microscopy (AFM). The crystal growth rate in the ternary systems is modelled on the basis of the two-step growth model that contains the Maxwell-Stefan (MS) equations and a surface-reaction model. This model is used together with measuredcrystal growth rate data to develop a new method for the evaluation of the model parameters. The validation of the model is justified with experiments. The crystal growth rate in an imperfectly mixed suspension crystallizer is investigatedusing computational fluid dynamics (CFD). A solid-liquid suspension flow that includes multi-sized particles is described by the multi-fluid model as well as by a standard k-epsilon turbulence model and an interface momentum transfer model. The local crystal growth rate is determined from calculated flow information in a diffusion-controlled crystal growth regime. The calculated results are evaluated experimentally.

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EU on käynnistämässä ympäristöteknologioiden verifiointijärjestelmää, jonka avulla voidaan tarjota käyttäjille ja sijoittajille riippumatonta tietoa innovatiivisten teknologioiden toimivuudesta ja suorituskyvystä ja parantaa niiden markkina-asemaa. Verifioinnilla tarkoitetaan kolmannen osapuolen suorittamaa prosessia tai mekanismia, jonka avulla tuotteen toiminta ja suorituskyky voidaan todentaa. Kansallinen ympäristöteknologioiden verifiointijärjestelmä on käytössä mm. Yhdysvalloissa ja Kanadassa. Euroopassa järjestelmä otettaneen käyttöön vuonna 2011–2012. Suomessa tehdään nykyisin noin 300 pilaantuneen maan puhdistushanketta koskevaa lupa- ja ilmoituspäätöstä vuosittain. Noin 85 prosentissa kohteista käytetään kunnostusmenetelmänä massanvaihtoa. Massanvaihto tulee ainakin toistaiseksi säilymään yleisimpänä kunnostusmenetelmänä, mutta mm. in situ -menetelmien käytön arvioidaan lisääntyvän. Tämän diplomityön tavoitteena oli arvioida voidaanko verifiointia hyödyntää pilaantuneiden maiden laadukkaan käsittelyn edistämisessä ja voiko verifiointi nopeuttaa innovatiivisten kunnostusmenetelmien markkinoillepääsyä. Aihetta tarkasteltiin mm. kahden erityyppisen pilaantuneen maan ja pohjaveden kunnostusmenetelmän, reaktiivisten seinämien (in situ) ja bitumistabiloinnin (ex situ) kautta. Pilaantuneiden maiden kunnostusmenetelmien toimivuus riippuu monista eri tekijöistä, joista osaa ei voida hallita tai mallintaa luotettavasti. Verifiointi soveltuukin parhaiten laitteiden tai PIMA-menetelmiä yksinkertaisempien puhdistusmenetelmien suorituskyvyn todentamiseen. Verifiointi saattaa kuitenkin hyvin toimia PIMA-kunnostuksen kohdalla esimerkiksi tiedollisena ohjauskeinona. Reaktiivisten seinämien ja bitumistabiloinnin verifioinnin työvaiheet ovat hyvin samankaltaiset, suurimpana erona seinämien kohdalla tulee kuvata myös kohde johon seinämä on asennettu. Reaktiivisten seinämien toiminta on riippuvaista monista ympäristötekijöistä, toisin kuin erillisellä laitteistolla suoritettavan bitumistabiloinnin. Tulosten perusteella voidaan yleistää, että verifiointi soveltuu paremmin ex situ -, kuin in situ -kunnostusmenetelmille.

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Sequestration of carbon dioxide in mineral rocks, also known as CO2 Capture and Mineralization (CCM), is considered to have a huge potential in stabilizing anthropogenic CO2 emissions. One of the CCM routes is the ex situ indirect gas/sold carbonation of reactive materials, such as Mg(OH)2, produced from abundantly available Mg-silicate rocks. The gas/solid carbonation method is intensively researched at Åbo Akademi University (ÅAU ), Finland because it is energetically attractive and utilizes the exothermic chemistry of Mg(OH)2 carbonation. In this thesis, a method for producing Mg(OH)2 from Mg-silicate rocks for CCM was investigated, and the process efficiency, energy and environmental impact assessed. The Mg(OH)2 process studied here was first proposed in 2008 in a Master’s Thesis by the author. At that time the process was applied to only one Mg-silicate rock (Finnish serpentinite from the Hitura nickel mine site of Finn Nickel) and the optimum process conversions, energy and environmental performance were not known. Producing Mg(OH)2 from Mg-silicate rocks involves a two-staged process of Mg extraction and Mg(OH)2 precipitation. The first stage extracts Mg and other cations by reacting pulverized serpentinite or olivine rocks with ammonium sulfate (AS) salt at 400 - 550 oC (preferably < 450 oC). In the second stage, ammonia solution reacts with the cations (extracted from the first stage after they are leached in water) to form mainly FeOOH, high purity Mg(OH)2 and aqueous (dissolved) AS. The Mg(OH)2 process described here is closed loop in nature; gaseous ammonia and water vapour are produced from the extraction stage, recovered and used as reagent for the precipitation stage. The AS reagent is thereafter recovered after the precipitation stage. The Mg extraction stage, being the conversion-determining and the most energy-intensive step of the entire CCM process chain, received a prominent attention in this study. The extraction behavior and reactivity of different rocks types (serpentinite and olivine rocks) from different locations worldwide (Australia, Finland, Lithuania, Norway and Portugal) was tested. Also, parametric evaluation was carried out to determine the optimal reaction temperature, time and chemical reagent (AS). Effects of reactor types and configuration, mixing and scale-up possibilities were also studied. The Mg(OH)2 produced can be used to convert CO2 to thermodynamically stable and environmentally benign magnesium carbonate. Therefore, the process energy and life cycle environmental performance of the ÅAU CCM technique that first produces Mg(OH)2 and the carbonates in a pressurized fluidized bed (FB) were assessed. The life cycle energy and environmental assessment approach applied in this thesis is motivated by the fact that the CCM technology should in itself offer a solution to what is both an energy and environmental problem. Results obtained in this study show that different Mg-silicate rocks react differently; olivine rocks being far less reactive than serpentinite rocks. In summary, the reactivity of Mg-silicate rocks is a function of both the chemical and physical properties of rocks. Reaction temperature and time remain important parameters to consider in process design and operation. Heat transfer properties of the reactor determine the temperature at which maximum Mg extraction is obtained. Also, an increase in reaction temperature leads to an increase in the extent of extraction, reaching a maximum yield at different temperatures depending on the reaction time. Process energy requirement for producing Mg(OH)2 from a hypothetical case of an iron-free serpentine rock is 3.62 GJ/t-CO2. This value can increase by 16 - 68% depending on the type of iron compound (FeO, Fe2O3 or Fe3O4) in the mineral. This suggests that the benefit from the potential use of FeOOH as an iron ore feedstock in iron and steelmaking should be determined by considering the energy, cost and emissions associated with the FeOOH by-product. AS recovery through crystallization is the second most energy intensive unit operation after the extraction reaction. However, the choice of mechanical vapor recompression (MVR) over the “simple evaporation” crystallization method has a potential energy savings of 15.2 GJ/t-CO2 (84 % savings). Integrating the Mg(OH)2 production method and the gas/solid carbonation process could provide up to an 25% energy offset to the CCM process energy requirements. Life cycle inventory assessment (LCIA) results show that for every ton of CO2 mineralized, the ÅAU CCM process avoids 430 - 480 kg CO2. The Mg(OH)2 process studied in this thesis has many promising features. Even at the current high energy and environmental burden, producing Mg(OH)2 from Mg-silicates can play a significant role in advancing CCM processes. However, dedicated future research and development (R&D) have potential to significantly improve the Mg(OH)2 process performance.

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In this work, Sr2FeMoO6 (SFMO) thin films were studied with the main focus on their magnetic and magneto-transport properties. The fabrication process of pulsed laser deposited SFMO films was first optimized. Then the effects of strain, film thickness and substrate were thoroughly investigated. In addition to these external factors, the effect of intrinsic defects on the magnetic properties of SFMO were also clarified. Secondly, the magnetoresistivity mechanims of SFMO films were studied and a semiempirical model of the temperature dependence of resistivity was introduced. The films were grown on single crystal substrates using a ceramic target made with sol-gel method. The structural characterization of the films were carried out with X-ray diffraction, atomic force microscopy, transmission electron microscopy and high kinetic energy photoelectron spectroscopy. The magnetic properties were measured with SQUID magnetometer and the magneto-transport properties by magnetometer with a resistivity option. SFMO films with the best combination of structural and magnetic properties were grown in Ar atmosphere at 1050 °C . Their magnetic properties could not be improved by the ex situ post-annealing treatments aside from the treatments in ultra-high vacuum conditions. The optimal film thickness was found to be around 150 nm and only small improvement in the magnetic properties with decreasing strain was observed. Instead, the magnetic properties were observed to be highly dependent on the choice of the substrate due to the lattice mismatch induced defects, which are best avoided by using the SrTiO3 substrate. The large difference in the Curie temperature and the saturation magnetization between the SFMO thin film and polycrystalline bulk samples was connected to the antisite disorder and oxygen vacancies. Thus, the Curie temperature of SFMO thin films could be improved by increasing the amount of oxygen vacancies for example with ultra-high vacuum treatments or improving the B-site ordering by further optimization of the deposition parameters. The magneto-transport properties of SFMO thin films do not follow any conventional models, but the temperature dependence of resistivity was succesfully described with a model of two spin channel system. Also, evidences that the resistivity-temperature behaviour of SFMO thin films is dominated by the structural defects, which reduce the band gap in the majority spin band were found. Moreover, the magnetic field response of the resistivity in SFMO thin films were found to be superposition of different mechanisms that seems to be related to the structural changes in the film.

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Ihmisen papilloomavirus (Human papillomavirus HPV) aiheuttaa yleisen sukupuoliteitse leviävän tartuntataudin. Virusinfektiolla on todettu olevan yhteys kohdunkaulan syöpään ja on siksi tärkeä tutkimuskohde. Kätilöopiston sairaalan patologian laboratoriossa tutkitaan HPV:ta Hybrid Capture 2 -menetelmällä, joka antaa tuloksen kvantitatiivisena. Tulos on joko positiivinen tai negatiivinen korkean riskin HPV-genotyypeille. Tutkimuskohteena oli ihmisen papilloomavirusta määrittävä in situ -hybridisaatiomenetelmä, joka on tarkoitus ottaa käyttöön Kätilöopiston sairaalan patologian laboratorioon. Näytemateriaali kerättiin HUSLAB:n Qpati-tietokannasta. 40 potilastapausta valittiin, joista kymmenen potilastapausta kuuluu kondyloma planum-, kymmenen dysplasia levis-, kymmenen dysplasia moderata- ja viimeiset kymmenen dysplasia gravis -luokitukseen. Näytteet oli valettu parafiiniin, joista leikkattiin uudet näytelasit. Näistä tehtiin HPV in situ -hybridisaatio-, p16INK4a-, Ki67- ja hematoksyliini-eosiinivärjäykset. HPV ISH:n tuloksia verrattiin negatiivisten ja positiivisten kontrollien antamiin tuloksiin. Lisäksi tutkittiin proteiinien p16INK4a ja Ki67 vastaavuutta HPV ISH:n antamiin tuloksiin. Ki67 ja p16INK4a ovat merkkiaineita, joita havaitaan HPV:n aiheuttamissa dysplastisissa muutoksissa. HE-värjäyksen avulla tarkistettiin diagnoosiluokat. HPV in situ -hybridisaationäytteissä esiintyi HPV DNA-viruskopioita 82,5 %:ssa (33/40). Näytteistä negatiivisen tuloksen antoi 12,5 % (5/40) ja 5 % (2/40) niistä ei voitu tulkita. Immunohistokemialliset värjäykset antoivat keskenään yhteneväisiä tuloksia. Tulokset olivat yhteneviä myös HPV in situ -hybridisaation antamiin tuloksiin. Tulokset olivat luotettavia, koska negatiivinen kontrolli antoi negatiivisen ja positiivinen kontrolli positiivisen tuloksen. Hematoksyliini-eosiinivärjäyksellä tarkistetuista diagnoosiluokista 20 prosenttia (8/40) oli muuttunut. Tulokset olivat luotettavia, joten voidaan todeta, että in situ -hybridisaatiomenetelmä voidaan ottaa käyttöön Kätilöopiston sairaalan patologian laboratoriolle.

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Selostus: Perunan somaattisten hybridien ja niiden somatohaploidien fluoresenssi in situ -hybridisaatio Solanum brevidens -lajin spesifisten sekvenssien avulla

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Summary: Diagnosis of freemartinism in cattle by Y chromosome specific in situ hybridisation of blood leukocytes

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