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Efficiency Of Biomass Production – Methodological Approaches

://dx.doi.org/10.1016/j.rser.2013.03.049 . SOURIE, J. C. – ROZAKIS, S. Bio-fuelproductionsystem in France: an Economic Analysis. In Biomass and Bioenergy, 2001, no. 20, pp. 483–489. VANCE, E. D. – AUST, W. M. – STRAHM, B. D. – FROESE, R. E. – HARRISON, R. B. – MORRIS, L. A. 2014. Biomass Harvesting and Soil Productivity: Isthe Science Meeting our Policy Needs? In Soil Science Society of American Journal, 2014, no. 78, pp. 95–104. DOI: http://dx.doi.org/10.2136/sssaj2013.08.0323nafsc . WATKINS K. B. et al. 2013. Measuring Technical, Allocative, and Economic

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Mineralogy, chemical composition and leachability of ash from biomass combustion and biomass–coal co-combustion

., Stegemann, J. A., Williams, R., & Wood I. G. (2018). Element speciation in UK biomass power plant residues based on composition, mineralogy, microstructure and leaching. Fuel, 211, 712-725. DOI: 10.1016/j.fuel.2017.09.103. Bonner, I. J., Smith, W. A., Einerson, J. J., & Kenney, K. L. (2014). Impact of harvest equipment on ash variability of baled corn stover biomass for bioenergy. Bioenergy Research, 7, 845-855. DOI 10.1007/s12155-014-9432-x. Ciesielczuk, T., Kusza, G., & Nemś, A. (2011). Nawożenie popiołami z termicznego przekształcania biomasy źródłem

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Elektriliini trasside puitse biomassi modelleerimine/ Modelling of woody biomass on electricity pylons

References Aosaar, J., Uri, V. 2008. Halli lepa, hübriidlepa ja arukase biomassi produktsioon endistel põllumaadel. (Biomass production of grey alder, hybrid alder and silver birch stands on abandoned agri cultural land). - Forestry Studies / Metsanduslikud Uurimused, 48, 53-66. (In Estonian with English summary). Astover, A. (koost.) 2005. Eesti mullastiku ja muldade kasutussobivus. (Estonian soil and soil suitability for use). Tartu, Eesti Maaülikool. [WWW Document]. - URL http://www.eau.ee/~tamm/Mullateadus/Mulla%20lisa%20

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Estimation of above-ground biomass in forest stands from regression on their basal area and height

References Agarmaa, M. 2015. The above-ground biomass and the effect of drainage on trees radial growth increment in Scots pine ( Pinus sylvestris ) stands growing in Myrtillus drained swamp site type. (Mustika-kõdusoo kasvukohatüübi männikute ( Pinus sylvestris L.) maapealne biomass ja kuivenduse mõju puude jämeduskasvule). MSc Thesis, Estonian University of Life Sciences. 29 pp. (In Estonian). Aosaar, J., Uri, V. 2008. Biomass production of grey alder, hybrid alder and silver birch stands on abandoned agricultural land. – Forestry Studies

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Aspects of using biomass as energy source for power generation

. (2013). Biomass gasification, pyrolysis and torrefaction: practical design and theory . Academic press. BIOMASA FINEX Cercetare Energii si Tehnologii Neconventionale - http://www.finex-energy.ro/biomasa - Last Accessed 03.02.2017, 13:30. Channiwala, S.A., & Parikh, P.P. (2002). A unified correlation for estimating HHV of solid, liquid and gaseous fuels. Fuel , 81 (8), 1051-1063. Crocker, M. (Ed.). (2010). Thermochemical conversion of biomass to liquid fuels and chemicals (No. 1). Royal Society of Chemistry. Crocker, M. (Ed.). (2010

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Impact of the Temperature of Waste Biomass Py-Rolysis on the Quality of the Obtained Biochar

References Abbas, T., Costen, P., Kandamby, N. H., Lockwood, F. C., Ou, J. J. (1994). The influence of burner injection mode on pulverized coal and biomass co-fired flames. Combustion and flame , 99 (3), 617-625. Aerts, D. J., Bryden, K.., Hoerning, J. M., Ragland, K. W., Weiss, C. A. (1997). Co-firing switchgrass in a 50 MW pulverized coal boiler (No. CONF-970456). Illinois Inst. of Tech., Chicago, IL (United States). Berrueco, C., Lorente, E., an Niekerk, D., Millan, M. (2014). Evolution of tar in coal pyrolysis in conditions relevant to

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BIOGAS PRODUCTION FROM AMARANTH BIOMASS

References BALODIS, O. - BARTUŠEVICS, J. - GAILE, Z. 2011. Biomass yield of different plants for biogas production. In: Proc. 8 th Int. Sci. Pract. Conf. Environment, Technology, Resources, Publisher Rézeknes Augstskola, Rézekne, RA Izdevnieciba, Latvija, vol. 1, 2011. pp. 238-245. GADUŠ, J. - GIERTL,T. - JANČO, Š. - KOŠÍK, L. 2011. Possibilities of biogas production optimizing. Košice : Trans. Univ., 2011, pp. 123-130. JAMRIŠKA, P. 1996. The influence of the variety on seed yield of amaranth

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Biomass production and carbon accumulation in silver birch stands in Oxalis site type

References Aastaraamat Mets 2008. (Yearbook Forest 2008). Centre of Forest Protection and Silviculture / Metsakaitseja metsauuenduskeskus. Tartu 2009: OÜ Paar. 213 pp. (In Estonian and in English). Ågren, G. I., Hyvönen, R. 2003. Changes in carbon stores in Swedish forest soils due to increased biomass harvest and increased temperatures analysed with a semi-empirical model. - Forest Ecology and Management, 174, 25-37. Bormann, B. T., Gordon, J. C. 1984. Stand density effects in

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Technical and Economic Aspects of Biomass Co-Firing in Coal-Fired Boilers

References Adamczyk J. and Dzikuć M. (2014): The analysis of suppositions included in the Polish Energetic Policy using the LCA technique - Poland case study. - Renewable and Sustainable Energy Reviews, vol.39, pp.42-50. Al-Mansour F. and Zuwala J. (2010): An evaluation of biomass co-firing in Europe. - Biomass and Bioenergy, vol.34, pp.620-629. Dąbrowski R. and Dzikuć M. (2012): Life Cycle Assessment in energy sector. - Measurement Automation and Monitoring, vol.58, No.9, pp.819-821. Dzikuć M

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Verification of the Green Microalgae Biomass Use for Biogas Production

References ANDERSEN, R.A. (ed.). 2005. Algal culturing techniques. London : Elsevier Academic Press, 2005, 578 pp. CARVALHO, A.P. – MEIRELES, L.A. – MALCATA, F.X. 2006. Microalgal reactors: a review of enclosed system designs and performances. In Biotechnology progress, vol. 22, 2006, no. 6, pp. 1490–1506. CHISTI, Y. 2007. Biodiesel from microalgae. In Biotechnology Advances, vol. 25, 2007, no. 3, pp. 294–306. EDMUNDSON, S.J. – HUESEMANN, M.H. 2015. The dark side of algae cultivation: Characterizing night biomass loss in three

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