يعرض 81 - 90 نتائج من 2,030 نتيجة بحث عن '"Environmental evaluation"', وقت الاستعلام: 1.13s تنقيح النتائج
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    المصدر: Revista de Investigación Agraria y Ambiental; Vol. 8, Núm. 2 (2017); 61 - 70 ; 2145-6453 ; 2145-6097

    وصف الملف: application/pdf; text/html

    العلاقة: http://hemeroteca.unad.edu.co/index.php/riaa/article/view/2031/2286Test; http://hemeroteca.unad.edu.co/index.php/riaa/article/view/2031/2243Test; Agronet (2012). La cadena de arroz en Colombia. Retrieved from: http://www.agronet.gov.co/www/docs_agronet/2005112141728_caracterizacion_arroz.pdfTest; Balster, L. M., Corporan, E., DeWitt, M. J., Edwards, J. T., Ervin, J. S., Graham, J. L. & Zabarnick, S. (2008). Development of an advanced, thermally stable, coal-based jet fuel. Fuel Processing Technology, 89(4), 364-378.; Breman, B. B., Beenackers, A. C. C. M., & Oesterholt, E. (1994). A kinetic model for the methanol-higher alcohol synthesis from CO/CO2/H2 over Cu/ZnO-based catalysts including simultaneous formation of methyl esters and hydrocarbons. Chemical Engineering Science, 49(24, Part A), 4409-4428.; Cabezas, H., Bare, J. C. & Mallick, S. K. (1999). Pollution prevention with chemical process simulators: the generalized waste reduction (WAR) algorithm-full version. Computers & Chemical Engineering, 23(4-5), 623-634.; Calverley, E. M. (1989). A Study of the Mechanism and Kinetics of the Synthesis of Methanol and Higher Alcohols Over Alkali Promoted Copper/Zinc-Oxide/Chromia Catalysts. Open Access Dissertations and Theses, Paper 1913, 1-223.; Cardona, C. A., Marulanda, V. F. & Young, D. (2004). Analysis of the environmental impact of butylacetate process through the WAR algorithm. Chemical Engineering Science, 59(24), 5839-5845.; Epling, W. S., Hoflund, G. B., Hart, W. M. & Minahan, D. M. (1997). Reaction and Surface Characterization Study of Higher Alcohol Synthesis Catalysts. Journal of Catalysis, 172(1), 13-23.; Herman, R. G. (2000). Advances in catalytic synthesis and utilization of higher alcohols. Catalysis Today, 55(3), 233-245.; Hilmen, A.-M., Xu, M., Gines, M. J. L. & Iglesia, E. (1998). Synthesis of higher alcohols on copper catalysts supported on alkali-promoted basic oxides. Applied Catalysis A: General, 169(2), 355-372.; Kulawska, M. & Skrzypek, J. (2001). Kinetics of the synthesis of higher aliphatic alcohols from syngas over a modified methanol synthesis catalyst. Chemical Engineering and Processing: Process Intensification, 40(1), 33-40.; Kumar, K. & Sung, C.-J. (2010). A comparative experimental study of the autoignition characteristics of alternative and conventional jet fuel/oxidizer mixtures. Fuel, 89(10), 2853-2863.; Liu, X.-w., Shi, Y., Wu, Y.-n., Zhao, X.-t., & Ren, N.-q. (2008). The investigation of high concentration organic alkalinous wastewater (HCOAW) from octanol production by biodegradation process. Journal of Biotechnology, 136, S707.; Marrero, R. G. (2001). Group-contribution based estimation of pure component properties. Fluid Phase Equilibria, 183-184, 183-208.; Nieskens, D. L. S., Ferrari, D., Liu, Y., & Kolonko Jr, R. (2011). The conversion of carbon dioxide and hydrogen into methanol and higher alcohols. Catalysis Communications, 14(1), 111-113.; NIST – National Institute of Standards and Technology. (2005). Libro del Web de Quimica del NIST. Retrieved from: http://webbook.nist.gov/chemistryTest/; Scavage, (2010). Base de datos. Retrieved from: http://www.scavage.comTest; Surisetty, V. R., Dalai, A. K., & Kozinski, J. (2010). Effect of Rh promoter on MWCNT-supported alkali-modified MoS2 catalysts for higher alcohols synthesis from CO hydrogenation. Applied Catalysis A: General, 381(1-2), 282-288.; Surisetty, V. R., Dalai, A. K., & Kozinski, J. (2010). Intrinsic Reaction Kinetics of Higher Alcohol Synthesis from Synthesis Gas over a Sulfided Alkali-Promoted Co-Rh-Mo Trimetallic Catalyst Supported on Multiwalled Carbon Nanotubes (MWCNTs). Energy & Fuels, 24(8), 4130-4137. https://doi.org/10.1021/ef1007227Test; Surisetty, V. R., Dalai, A. K., & Kozinski, J. (2011). Alcohols as alternative fuels: An overview. Applied Catalysis A: General, 404(1-2), 1-11.; Tien-Thao, N., Zahedi-Niaki, M. H., Alamdari, H., & Kaliaguine, S. (2007). Conversion of syngas to higher alcohols over nanosized LaCo0.7Cu0.3O3 perovskite precursors. Applied Catalysis A: General, 326(2), 152-163.; http://hemeroteca.unad.edu.co/index.php/riaa/article/view/2031Test; https://repository.unad.edu.co/handle/10596/29379Test

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    المؤلفون: komi, Mohamed Mohamed El

    المصدر: Pakistan Journal of Marine Sciences; Vol. 28 No. 2 (2019): Pakistan Journal of Marine Sciences; 81-114 ; 2710-4583 ; 1019-8415

    وصف الملف: application/pdf

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