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Wojciech Dzięgielewski and Bartosz Gawron

The study outlines results from the studies on applicability of 1st generation biocomponent, namely long-chain fatty acid methyl esters (FAME) of vegetable origin, as an ingredient to fuels used to supply turbine aircraft engines. The presented analysis refers to both physical and chemical properties of developed fuel mixtures of Jet A-1 pure kerosene fuel with various amounts of the FAME additive and is based on own results obtained from tests of turbine engines on workbenches. The experiment results indicate that there are virtually no chances to apply the 1st generation biocomponents of the FAME type to aircrafts, however it is possible to seek for application opportunities of such biocomponents to other turbine engines, different from the aviation engineering.

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Archives of Electrical Engineering

The Journal of Polish Academy of Sciences

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Paul Marc and Ciprian Costescu

asphalt concrete. J Mater Civ Eng 2005;17:72-9. [5]. Spalding DB. Pun WM.- A review of methods for predicting heat transfer coefficients for laminar uniform property boundary layer flow. Int J Heat Mass Transfer 1999;5:239-49 [6]. Zhao J. Ai X. Li YZ. - Transient temperature fields in functionally graded materials with different shapes under convective boundary conditions. Heat Mass Transfer 2007;43:1227-32. [7]. Xu Q. Solaimanian M. - Measurement and evaluation of asphalt concrete thermal expansion and contraction. J Test

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J. Hoła, J. Bień, Ł. Sadowski and K. Schabowicz

, Diagnostics of Reinforced Concrete Structures, Vol. 2, Corrosion of Reinforcement and Protective Properties of Concrete, Polish Scientific Publishers PWN, Warszawa, 2010, (in Polish). [54] J. Grubb, H. Limaye, and A. Kakade, “Testing pH of concrete,” Concrete International 29 (4), 78-83 (2007). [55] Materials from webpage: www.agriculturesolutions.com. [56] J. Jasieńko, M. Moczko, A. Moczko, and R. Dżugaj, “Testing the mechanical and physical properties of concrete in the bottom perimeter ring of the dome of the Centennial

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Banjo A. Akinyemi, Temidayo. E. Omoniyi and Micheal O. Adeyemo

Symposium Vancouver, British Columbia. HARPER, D. 2011. Alternative methods of stabilization for unfired mud bricks. In Engineers without Borders. Retrieved from: http://www.ewb-uk.org/filestore/20110514-Mud%20brick%20construction.pdf . HEAVY, G. N. – PARK, E. 2015. Physical properties of unfired and compressed same clay brick composites reinforced with natural fibre from Tanzania. In Int. J. Inn. Res. Adv. Eng, vol. 2, 2015, pp. 4. ISO 3310-1:2000. Test sieves – Technical requirements and testing – Part 1: Test sieves of metal wire cloth. KAYALI

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B. Grabowska, K. Kaczmarska and A. Bobrowskia

binder systems. Slévárenstvi LVII. Ieden-únor. Nr 1-2 . 6 (in Czech). [5] Tackes, G. (2001). Core Binders: A Look into the Future. Modern Casting . No 10 . 24 - 27. [6] Archibald, James A.(1994). Benchmarking the Nobake Binder Systems. Modern Castings . [7] Ireland, E., Chang, K. & Kroker, J. (2002). New Horizon in Nobake Binder Technology. AFS Transaction. 110 . 623-629. [8] Eastman, J. (2000). Protein - based binder updale: Performance put to the Test. Modern Casting. No 10 . 32

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Sergio Castiñeira-Ibáñez, Constanza Rubio, Vicent Romero-García, Juan Vicente Sánchez-Pérez and Luís Miguel García-Raffi

, Federal Highway Administration U.S.A. (2001), Keeping the Noise Down. Highway Traffic Noise Barriers , Washington, 2001 FHWA-EP-01-004 HEPN/2-01 (10M)E. 5. European Committee for Standardisation, EN 1793-1 (1997), Road Traffic Noise Reducing Devices - Test Method for Determining the Acoustic Performance - Part 1: Intrinsic characteristics of sound absorption , CEN, Brussels, Belgium. 6. European Committee for Standardisation, EN 1793-2 (1997), Road Traffic Noise Reducing Devices - Test Method for Determining the Acoustic Performance

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Muhammad Dawood Husain, Ozgur Atalay, Asli Atalay and Richard Kennon

active electrodes for ECG monitoring on woven textiles fabricated by screen and stencil printing. Sensors and Actuators A: Physical, 2015. 221(0): p. 60-66. [8] Catrysse, M. , et al. , Towards the integration of textile sensors in a wireless monitoring suit. Sensors and Actuators A: Physical, 2004. 114(2-3): p. 302-311. [9] Chang, W. Y. , T. H. Fang, and Y. C. Lin, Characterization and fabrication of wireless flexible physiological monitor sensor. Sensors and Actuators A: Physical, 2008. 143(2): p. 196-203. [10] Mazzoldi

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M. Darowski, M. Kozarski, G. Ferrari, K. Zieliński, K. Górczyńska, A. Szczepanowski, K.J. Pałko, L. Fresiello and A. Di Molfetta

-91 (2001). [3] M. Kozarski, G. Ferrari, F. Clemente, K. Gorczyńska, C. De Lazzari, M. Darowski, R. Mimmo, G. Tosti, and M. Guadagno, “A hybrid mock circulatory system: development and testing of an electro-hydraulic impedance simulator”, Int. J. Artif. Organs 26 (1), 53-63 (2003). [4] G. Ferrari,M. Kozarski, C. De Lazzari and F. Clemente, “A hybrid (numerical - physical) model of the left ventricle”, Int. J. Artif. Organs 24 (7), 456-462 (2001). [5] C. De Lazzari , M. Kozarski, F. Clemente, K. Gorczyńska, R. Mimmo, E

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Karsten Schacht and Bernd Marschner

.J., Barlow, K.M., Nash, D.M., 2001. A review of the effects of wastewater sodium on soil physical properties and their implications for irrigation systems. Aust. J. Soil Res., 39, 1259-1267. Hamilton, A.J., Stagnitti, F., Xiong, X., Kreidl, S.L., Benke, K.K., Maher, P., 2007. Wastewater irrigation: The state of play. Vadose Zone J., 6, 823-840. Inbar, Y., 2007. New standards for treated wastewater reuse in Israel. In: Zaidi, M. (Ed.) Wastewater Reuse-Risk Assessment, Decision-Making and Environmental Security. Springer, Dordrecht