92 resultados para MARSHY FORESTS
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Tuontipuulla onsuuri merkitys suomalaiselle metsäteollisuudelle. Tämän tutkimuksen tavoitteitaovat Suomen metsäteollisuuden puuntuonnin tärkeimmän alueen, Luoteis-Venäjän metsävarojen kartoittaminen ja niiden hyödyntämismahdollisuuksien arviointi. Työssä käsitellään myös lyhyesti suoria ulkomaisia investointeja Luoteis-Venäjän metsäsektorille. Luoteis-Venäjällä on suuremmat metsävarat kuin muulla Euroopalla yhteensä. Koko maailmassa on vain 5 valtiota, jolla olisi suuremmat metsävarat kuin sillä. Eniten metsiä Luoteis-Venäjällä on Komin tasavallassa ja Arkangelin alueella. Kuusi ja mänty ovat yleisimmät puulajit. Hyvien iikenneyhteyksien varsilta metsät on hakattu ja jätetty uudistamatta, minkä seurauksena koivu ja haapa ovat vallanneet alaa havupuilta. Niinpä alueen metsäteollisuus, etenkin sahateollisuus kärsii puupulasta. Suomen metsäteollisuus on sen sijaan hyötynyt siitä, että koivukuitupuuta on runsaasti saatavilla. Metsävarojen hyödyntämisen suurimmatesteet ovat harva ja huonokuntoinen metsätieverkosto sekä metsien riittämätön hoito. Venäläisestä näkökulmasta alueen metsävarat ovat vajaakäytössä: vuotuiset hakkuut ovat alle puolet kasvusta, suuri osa puusta viedään raakapuuna ulkomaille, ja alueen metsäteollisuuden tuotteiden jalostusarvo jää alhaiseksi. Suoria ulkomaisia investointeja Luoteis-Venäjän metsäsektorille houkuttelevat suuret puuvarat, halpa energia ja tulevaisuudessa etenkin kasvavat markkinat. Investointejahaittaavat huono infrastruktuuri, korruptio ja epävarmuus maan kehityksestä.
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Suomen metsäteollisuuden käyttämästä puusta neljännes on tuontipuuta, josta Venäjän tuonnin osuus on hyvin merkittävä. Suomen metsäteollisuus on riippuvainen etenkin Luoteis-Venäjän metsien puusta. Venäjä pyrkii nostamaan metsäteollisuuden jalostusastetta ja hyödyntämään voimallisemmin omia metsävaroja, mikä merkitsee suuria haasteita suomalaiselle metsäteollisuudelle ja sen raaka-ainehuollolle. Tässä raportissa tarkastellaan Luoteis-Venäjän metsävaroja, metsänkäyttöä ja sen ongelmia sekä metsien hallinnointia. Lisäksi käsitellään Luoteis-Venäjän metsäsektoria ja siihen tehtyjä suoria ulkomaisia investointeja. Lopuksi kuvataan Luoteis-Venäjän kuljetusinfrastruktuuria sekä arvioidaan Luoteis-Venäjän metsävarojen käytön potentiaalia.
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This thesis examines the experience travelling and incentive travelling in the area of Etela-Savo. The incentive travels have become more popular in the recent years. The enterprises and companies have started to reward their staff for efficiency by giving them experience travels instead of money rewards. The staff needs refreshing because of the development of work technology and because of physical and mental demands of the work. Short experience travels with activities give motivation and refresh the staff. There were two target groups in this thesis: entrepreneurs which produce the experiences and the staffs which have proved them. With the help of these target groups experience products, activities and travelling possibilities were studied and also how the experiences had been felt and where they had been acquired from. There are theoretical and empirical parts in this thesis. The research methodology was mainly idiographical and also qualitative and quantitative research methods were used. The empirical information was collected with the help of a questionnaire and a theme interview. The result of the study was that the area's travelling attractions, which are the nature, hundreds of lakes, large forests and the beautiful landscape give good possibilities to experience travelling and incentive travelling. The experience must contain a physical, social and mental element. A good experience activity must also contain some actions in the nature, light physical exercise and a possibility to the customer to take part in action. The experience feeling was felt as an unique happening and enjoyment, which will help the customers managing in their work, removing stress and developing team working skills. The experience was caused by the contrast between work/everyday life and the happening, and by succeeding in the activity in addition they felt a very strong community spirit in the experience feeling. Women received the experience feeling much more strongly than men. There were also differences in feelings between ages.
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Tässä kandidaatin työssä tarkasteltiin ilmastonmuutoksen vaikutuksia energialiiketoimintaan Suomessa. Ilmastonmuutoksen vaikutuksia on tutkittu RCAO- ilmastomallilla, missä luotiin ilmaston muuttumisen skenaariot eri ilmastotekijöille ajanjaksolle 2016- 2045. Mallin avulla saadut tulokset ovat suuntaa antavia ja niihin on suhtauduttava kriittisesti. Ilmastonmuutoksen myötä on odotettavissa, että vikojen määrä tulee lisääntymään. Suomessa suuri osa keskijänniteverkosta on rakennettu metsien läpi ja ne ovat erittäin vika-alttiita. Tuulisuuden lisääntyminen, ukkosmäärien kasvu ja tykkylumi lisäävät tulevaisuudessa metsien keskelle rakennettujen verkkojen vikoja ellei niitä kehitetä vikavarmemmiksi. Verkkojen siirtäminen teiden varsiin ja kaapelointiasteen lisääminen ovat varmasti oikeita ratkaisuja tulevaisuuden kannalta. Verkkoyhtiöille ilmastonmuutos aiheuttaa luultavasti enemmän haittoja kuin hyötyjä. Vikojen lisääntyminen ja kunnossapidon kasvu aiheuttavat kuluja ja heikentävät energialiiketoiminnan kannattavuutta. Verkon luotettavuuden parantaminen näkyy investointikustannusten kasvuna. Sadannan lisääntyminen ja routaantumisen vähentyminen pehmentää maata ja heikentää kunnossapitoon käytettävien koneiden liikkumista maastossa.
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Aim of this study was to investigate the means to reduce nutrient flows to water systems. Focus in this study was to examine peatland buffer zones as a solution to protect water bodies as well as to examine methane and nitrous oxide release from buffer zones. The literature survey covers a review of research which has been done till this day concerning the effects of forestry on water bodies. It also contains a review of the significance of forests and mires in hydrological cycle, effects of forestry on nutrient loads to water systems and a review of different solutions to diminish it. The solutions contain ditch shaping, submerged dams, sludge sumps, sedimentation ponds and buffer zones. The literature survey also covers nitrous oxide and methane gas emissions from buffer zones. Methane and nitrous oxide emissions from six different mires were studied during the summer of 2007. Measurements were conducted once a month using the static chamber method. Emissions of methane and nitrous oxide were calculated. Effects of water table level and peat temperature on emissions were also studied. The results showed a tendency to increased methane-emissions from natural peat lands when compared with restored buffer zones. The results showed also a tendency to increased CH4 emissions and decreased NO2 emissions with rising level of water table. Other mechanisms that influence emissions are vegetation composition and peat temperature. Considering the global warming as a result of increased greenhouse gas emissions, the emissions of CH4 and NO2 measured in the present study were not particularly high.
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Rosin is a natural product from pine forests and it is used as a raw material in resinate syntheses. Resinates are polyvalent metal salts of rosin acids and especially Ca- and Ca/Mg- resinates find wide application in the printing ink industry. In this thesis, analytical methods were applied to increase general knowledge of resinate chemistry and the reaction kinetics was studied in order to model the non linear solution viscosity increase during resinate syntheses by the fusion method. Solution viscosity in toluene is an important quality factor for resinates to be used in printing inks. The concept of critical resinate concentration, c crit, was introduced to define an abrupt change in viscosity dependence on resinate concentration in the solution. The concept was then used to explain the non-inear solution viscosity increase during resinate syntheses. A semi empirical model with two estimated parameters was derived for the viscosity increase on the basis of apparent reaction kinetics. The model was used to control the viscosity and to predict the total reaction time of the resinate process. The kinetic data from the complex reaction media was obtained by acid value titration and by FTIR spectroscopic analyses using a conventional calibration method to measure the resinate concentration and the concentration of free rosin acids. A multivariate calibration method was successfully applied to make partial least square (PLS) models for monitoring acid value and solution viscosity in both mid-infrared (MIR) and near infrared (NIR) regions during the syntheses. The calibration models can be used for on line resinate process monitoring. In kinetic studies, two main reaction steps were observed during the syntheses. First a fast irreversible resination reaction occurs at 235 °C and then a slow thermal decarboxylation of rosin acids starts to take place at 265 °C. Rosin oil is formed during the decarboxylation reaction step causing significant mass loss as the rosin oil evaporates from the system while the viscosity increases to the target level. The mass balance of the syntheses was determined based on the resinate concentration increase during the decarboxylation reaction step. A mechanistic study of the decarboxylation reaction was based on the observation that resinate molecules are partly solvated by rosin acids during the syntheses. Different decarboxylation mechanisms were proposed for the free and solvating rosin acids. The deduced kinetic model supported the analytical data of the syntheses in a wide resinate concentration region, over a wide range of viscosity values and at different reaction temperatures. In addition, the application of the kinetic model to the modified resinate syntheses gave a good fit. A novel synthesis method with the addition of decarboxylated rosin (i.e. rosin oil) to the reaction mixture was introduced. The conversion of rosin acid to resinate was increased to the level necessary to obtain the target viscosity for the product at 235 °C. Due to a lower reaction temperature than in traditional fusion synthesis at 265 °C, thermal decarboxylation is avoided. As a consequence, the mass yield of the resinate syntheses can be increased from ca. 70% to almost 100% by recycling the added rosin oil.