5 resultados para control using plant extracts

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


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Ellagitannins are secondary metabolites that are produced by plants. Among other features, they are assumed to function as plants’ defensive compounds against plant-eating herbivores. This thesis focuses on a theory, which suggests that the biological activity of ellagitannins is based on their tendency to oxidize at the highly alkaline gut conditions of insect herbivores (oxidative activity). To study the biological activities of ellagitannins, a wide variety of structurally different ellagitannins were purified from different plant species by using liquid chromatographic techniques. The structures were characterized with the aid of spectrometric methods. Based on the acquired data, it was also possible to create a scheme, which enables the classification and even identification of ellagitannins from plant extracts without the need to isolate each compound for individual characterization. The biological activities of ellagitannins were determined with methods that are based on the abilities of the compounds to scavenge radicals, chelate iron ions, and on their rate of oxidation at high pH. The results showed that ellagitannins possess oxidative activities both at high and neutral pH, and that their activities depend on structure. The occurrence, distribution and content of ellagitannins in Finnish plant species were also studied. The specific ellagitannin profiles of the studied plant species were found to correlate well with their taxonomic classification.

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Mertaniemen voimalaitoksien prosessitietokone (PTK) on uusittu keväällä 2005. Tämän työn tarkoituksena on ollut auttaa PTK:n virheiden korjaamisessa ja puut-teiden kartoittamisessa. Työssä on keskitytty etenkin prosessiraportoinnin tekemiseen. Työn alussa on kerrottu Mertaniemen voimalaitoksen tekniset tiedot ja PTK:n hankinnan taustatietoja. Uudesta PTK-järjestelmästä on kuvattu laitteisto, sovellus ja perusohjelmistot. PTK:n ja muiden järjestelmien välinen tiedonsiirto on myös kuvattu. PTK muuttujien nimeäminen on esitelty, jotta olisi helpompi hahmottaa työssä käytettyjen positioiden merkityksiä. Prosessiraportoinnin kehittämisessä kuvataan raporttien tarvetta ja niiden sisältöä sekä sitä kuinka raportit on tehty. Päästöraportointi on esitetty omana osa-alueenaan, koska voimalaitosten päästöjen seurantaa edellytetään tehtävän viran¬omaismääräysten ja EU-direktiivien vaatimusten mukaisesti. Raporttien lisäksi prosessiarvojen seuraamista helpottamaan on tehty yhteisiä trendi- ja työtilanäyttöjä. PTK:n ongelmakohtina on käsitelty muuttujien tunnuksissa ja nimissä olevat virheet sekä PTK laskennan tarkastaminen. Muuttujien nimien ja laskennan tarkas¬tusta tehtiin prosessiraportoinnin tekemisen yhteydessä sekä yhteistyössä PTK-järjestelmän toimittaneen Metso Automation Oy:n kanssa. Päästölaskennan korjaaminen oli erityisen tärkeää.

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Diplomityössä kehitetään tiedonkeruujärjestelmää voimalaitoksen toiminnan tehostamiseksi. Aihetta käsitellään tiedonkeruujärjestelmän käyttäjän ja ylläpitäjän näkökulmasta. Tiedonkeruujärjestelmällä kerätään prosessitietoa automaatiojärjestelmästä ja tallennetaan prosessitieto tietokantaan. Työssä on kuvattu sekä automaatio- että tiedonkeruujärjestelmää prosessitiedon keruun, tallentamisen ja hallinnan ymmärtämiseksi. Prosessitiedon merkitystä voimalaitoksen toiminnan kannalta on myös pohdittu. Diplomityö tehtiin Mertaniemen voimalaitoksella, jossa käytännön kehityskohteina olivat laskenta- ja raportointisovellukset. Lisäksi tarkistettiin tietokantamuuttujia. Tiedonkeruujärjestelmää kehitetään ja päivitetään voimalaitoksen laitteisto- ja toimintamuutosten takia. Kehityksellä pyritään tarjoamaan oikeampaa ja luotettavampaa tietoa, korjaamaan virheitä sekä kartoittamaan mahdollisia puutteita.

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Overall Equipment Effectiveness (OEE) is the key metric of operational excellence. OEE monitors the actual performance of equipment relative to its performance capabilities under optimal manufacturing conditions. It looks at the entire manufacturing environment measuring, in addition to the equipment availability, the production efficiency while the equipment is available to run products, as well as the efficiency loss that results from scrap, rework, and yield losses. The analysis of the OEE provides improvement opportunities for the operation. One of the tools used for OEE improvement is Six Sigma DMAIC methodology which is a set of practices originally developed to improve processes by eliminating defects. It asserts the continuous efforts to reduce variation in process outputs as key to business success, as well as the possibility of measurement, analysis, improvement and control of manufacturing and business processes. In the case of the Bottomer line AD2378 in Papsac Maghreb Casablanca plant, the OEE figures reached 48.65 %, which is below the accepted OEE group performance. This required immediate actions to achieve OEE improvement. This Master thesis focuses on the application of Six Sigma DMAIC methodology in the OEE improvement on the Bottomer Line AD2378 in Papsac Maghreb Casablanca plant. First, the Six Sigma DMAIC and OEE usage in operation measurement will be discussed. Afterwards, the different DMAIC phases will allow the identification of improvement focus, the identification of OEE low performance causes and the design of improvement solutions. These will be implemented to allow further tracking of improvement impact on the plant operations.

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The general trend towards increasing e ciency and energy density drives the industry to high-speed technologies. Active Magnetic Bearings (AMBs) are one of the technologies that allow contactless support of a rotating body. Theoretically, there are no limitations on the rotational speed. The absence of friction, low maintenance cost, micrometer precision, and programmable sti ness have made AMBs a viable choice for highdemanding applications. Along with the advances in power electronics, such as signi cantly improved reliability and cost, AMB systems have gained a wide adoption in the industry. The AMB system is a complex, open-loop unstable system with multiple inputs and outputs. For normal operation, such a system requires a feedback control. To meet the high demands for performance and robustness, model-based control techniques should be applied. These techniques require an accurate plant model description and uncertainty estimations. The advanced control methods require more e ort at the commissioning stage. In this work, a methodology is developed for an automatic commissioning of a subcritical, rigid gas blower machine. The commissioning process includes open-loop tuning of separate parts such as sensors and actuators. The next step is to apply a system identi cation procedure to obtain a model for the controller synthesis. Finally, a robust model-based controller is synthesized and experimentally evaluated in the full operating range of the system. The commissioning procedure is developed by applying only the system components available and a priori knowledge without any additional hardware. Thus, the work provides an intelligent system with a self-diagnostics feature and an automatic commissioning.