يعرض 1 - 20 نتائج من 174 نتيجة بحث عن '"Márquez Godoy, Marco Antonio"', وقت الاستعلام: 0.51s تنقيح النتائج
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    Alternate Title: Process mineralogy of monazite concentrate from gold mining (El Bagre, Colombia). (English)

    المصدر: Boletin de Geologia; may-ago2024, Vol. 46 Issue 2, p65-82, 18p

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    المصدر: Revista Colombiana de Biotecnología; Vol. 18 Núm. 1 (2016); 112-120 ; Revista Colombiana de Biotecnología; Vol. 18 No. 1 (2016); 112-120 ; 1909-8758 ; 0123-3475

    وصف الملف: application/vnd.openxmlformats-officedocument.wordprocessingml.document; application/pdf; text/html

    Relation: https://revistas.unal.edu.co/index.php/biotecnologia/article/view/50471/56111; https://revistas.unal.edu.co/index.php/biotecnologia/article/view/50471/56134; https://revistas.unal.edu.co/index.php/biotecnologia/article/view/50471/56581; Acharya C., Kar R. N., Sukla L. B. 2001. Bacterial removal of sulphur from three different coals. Fuel, 80: 2207–2216.; Bhattacharyya A., Stavitski E., Dvorak J., Martínez C. E. 2013. Redox interactions between Fe and cysteine: Spectroscopic studies and multiplet calculations. Geochimica et Cosmochimica Acta, doi: http://dx.doi.org/10.1016/j.gca.2013.08.012; Caicedo G. A., Márquez M. A., Moreno C. X. 2011. Particle size, iron concentration and pH influence in biodesulfurization process of coal – laboratory tests. Revista Colombiana de Biotecnología, 13(2): 199–209.; Caicedo G. A., Prada M., Peláez H., Moreno C. X., Márquez M. A. 2012. Evaluation of a coal biodesulfurization process (semi-continuous mode) on the pilot plant level. Dyna, 174: 114–118.; Cara J., Aller A., Otero M., Morán A. 2001. Idle time in the washing and iron concentration in leachate removed: two basic parameters in the desulphurization of coal in a packed column. Applied Microbiology and Biotechnology, 55(1): 49–54.; Cara J., Vargas M., Morán A., Gómez E., Martínez O., García Frutos F. J. 2006. Biodesulphurization of a coal by packed-column leaching. Simultaneous thermogravimetric and mass spectrometric analyses. Fuel, 85: 1756–1762.; Cardona I. C., Márquez M. A. 2009. Biodesulfurization of two Colombian coals with native microorganisms. Fuel Processing Technology, 90: 1099–1106.; Caspi R., Altman T., Dale J. M., Dreher K., Fulcher C. A., Gilham F., … Karp P. D. 2010. The MetaCyc database of metabolic pathways and enzymes and the BioCyc collection of pathway/genome databases. Nucleic Acids Research, 38(Database issue): D473–9.; Chen J., Wang W.-H., Wu F.-H., You C.-Y., Liu T.-W., Dong X.-J., … Zheng H.-L. 2012. Hydrogen sulfide alleviates aluminum toxicity in barley seedlings. Plant and Soil, 362: 301–318.; Daoud J., Karamanev D. 2006. Formation of jarosite during Fe2+ oxidation by Acidithiobacillus ferrooxidans. Minerals Engineering, 19: 960–967.; Fu P., Wang W., Hou L., Liu X. 2013. Hydrogen sulfide is involved in the chilling stress response in Vitis vinifera L. Acta Societatis Botanicorum Poloniae, 82: 295–302.; Jackson T. A. 1970. Evidence for selective adsorption and polymerization of the L-optical isomers of amino acids relative to the D-Optical isomers on the edge faces of kaolinite. Experientia, 27: 242–244.; Kniess C. T., Cardoso de Lima J., Prates P. B. (2012). The Quantification of Crystalline Phases in Materials : Applications of Rietveld Method. in Sintering - Methods and Products, ISBN: 978-953-51-0371-4: 293–316.; Kodama A., Mori T. 1968. Studies on the metabolism of a sulfur-oxidizing bacterium IV . Growth and oxidation of sulfur compounds in Thiobacillus thiooxidans. Plant & Cell Physiology, 9: 709–723.; Lagaly G., Ogawa M., Dékány I. 2006. Clay mineral organic interactions. Handbook of Clay Science, 1: 309–377.; Liu J., Wang Z., Li B. M., Zhang Y. H. 2006. Interaction between pyrite and cysteine. Transactions of Nonferrous Metals Society of China, 16: 943–946.; Lu L., Sahajwalla V., Kong C., Harris D. 2001. Quantitative X-ray diffraction analysis and its application to various coals. Carbon, 39: 1821–1833.; Malik A., Dastidar M. G., Roychoudhury P. K. 2004. Factors limiting bacterial iron oxidation in biodesulphurization system. International Journal of Mineral Processing, 73: 13–21.; Meruane G. 2002. Oxidación Bacteriana de Sulfato Ferroso. Chile: Tesis de maestría, Universidad de Chile, p 180.; Panda A. K., Mishra B. G., Mishra D. K., Singh R. K. 2010. Effect of sulphuric acid treatment on the physico-chemical characteristics of kaolin clay. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 363: 98–104.; Rojas-Chapana J. A., Tributsch H. 2000. Bio-leaching of pyrite accelerated by cysteine. Process Biochemistry, 35: 815–824.; Rossi G. 2013. The Microbial Desulfurization of Coal. In Advances in Biochemical Engineering/Biotechnology. Springer. doi:10.1007/10_2013_178; Sand W., Gehrke T., Jozsa P. G., Schippers A. 2001. (Bio) chemistry of bacterial leaching—direct vs. indirect bioleaching. Hydrometallurgy, 59: 159–175.; Schippers A., Sand W. 1999. Bacterial Leaching of Metal Sulfides Proceeds by Two Indirect Mechanisms via Thiosulfate or via Polysulfides and Sulfur. Applied and Environmental Microbiology, 65: 319–321.; Simanjuntak W., Sembiring S. 2011. The use of the Rietveld method to study the phase composition of cordierite (Mg2Al4Si5O18) ceramics prepared from rice husk silica. Makara, Sains, 15: 97–100.; Theng B. K. G. 2012. Proteins and Enzymes. Developments in Clay Science, 4: 245–318.; Tributsch H. 2001. Direct versus indirect Bioleaching. Hydrometallurgy, 59: 51–60.; Tuovinen O. H., Kelly D. P. 1973. Studies on Growth of Thiobacillus ferrooxidans. I. Use of membrane filters and ferrous iron agar to determine viable numbers, and comparison with 14CO2- Fixation and Iron Oxidation as Measures of Growth. Archiv Für Mikrobiologie, 88: 285–298.; https://revistas.unal.edu.co/index.php/biotecnologia/article/view/50471

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    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/biotecnologia/article/view/50471; Universidad Nacional de Colombia Revistas electrónicas UN Revista Colombiana de Biotecnología; Revista Colombiana de Biotecnología; Caicedo Pineda, Gerardo Andrés and Márquez Godoy, Marco Antonio (2016) Efecto de la cisteína en un proceso de biodepiritización de carbones en lecho empacado. Revista Colombiana de Biotecnología, 18 (1). pp. 112-120. ISSN 1909-8758; https://repositorio.unal.edu.co/handle/unal/66710; http://bdigital.unal.edu.co/67738/

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    المصدر: Revista Facultad de Ingeniería Universidad de Antioquia; No. 68 (2013): Revista Facultad de Ingeniería (Jul-Sep 2013); 115-123 ; Revista Facultad de Ingeniería Universidad de Antioquia; Núm. 68 (2013): Revista Facultad de Ingeniería (Jul-Sep 2013); 115-123 ; 2422-2844 ; 0120-6230

    جغرافية الموضوع: Colombia

    وصف الملف: application/pdf

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    Additional Titles: Caracterización de la diversidad bacteriana y evaluación del potencial de biodegradación de cianuro de aislados bacterianos de plantas de procesamiento de oro

    المصدر: DYNA; Vol. 88 Núm. 216 (2021): January-March, 2021; 136-144; DYNA; Vol. 88 No. 216 (2021): Dyna; 136-144; 2346-2183; 0012-7353

    URL: https://revistas.unal.edu.co/index.php/dyna/article/view/87767/78385
    https://revistas.unal.edu.co/index.php/dyna/article/view/87767/78385
    *ref*/Cordy, P., Veiga, M.M., Salih, I., Al-Saadi, S., Console, S., Garcia, O., Mesa, L.A., Velásquez-López, P.C. and Roeser, M., Mercury contamination from artisanal gold mining in Antioquia, Colombia: the world’s highest per capita mercury pollution. Science of the Total Environment, (410-411), pp. 154-160, 2011. DOI: 10.1016/j.scitotenv.2011.09.006. [2] Way, J., Cyanide intoxication and its mechanism of antagonism. Annual Review of Pharmacology and Toxicology, 24(1). pp. 451-481, 1984. DOI: 10.1146/annurev.pharmtox.24.1.451. [3] Luque-Almagro, V.M., Cabello, P., Sáez, L.P., Olaya-Abril, A., Moreno-Vivián, C. and Roldán, M.D., Exploring anaerobic environments for cyanide and cyano-derivatives microbial degradation. Applied Microbiology and Biotechnology, 102(3), pp. 1067-1074, 2018. DOI: 10.1007/s00253-017-8678-6. [4] Luque-Almagro, V.M., Huertas, M.J, Martínez-Luque, M., Moreno-Vivián, C., Roldán, M.D., García-Gil, L.J., Castillo, F. and Blasco, R., Bacterial degradation of cyanide and its metal complexes under alkaline conditions. Applied and Environmental Microbiology, 71(2), pp. 940-947, 2005. DOI: 10.1128/AEM.71.2.940-947.2005. [5] Dash, R.R., Gaur, A. and Balomajumder, C., Cyanide in industrial wastewaters and its removal: a review on biotreatment. Journal of Hazardous Materials, 163(1), pp. 1-11, 2009. DOI: 10.1016/j.jhazmat.2008.06.051. [6] Mekuto, L., Ntwampe, S.K.O. and Mudumbi, J.B.N., Microbial communities associated with the co-metabolism of free cyanide and thiocyanate under alkaline conditions. 3 Biotech, 8(2), 2018. DOI: 10.1007/s13205-018-1124-3. [7] Raybuck, S.A., Microbes and microbial enzymes for cyanide degradation. Biodegradation, 3(1), pp. 3-18, 1992. DOI: 10.1007/BF00189632. [8] Dubey, S.K. and Holmes, D.S., Biological cyanide destruction mediated by microorganisms. World Journal of Microbiology & Biotechnology, 11(3), pp. 257-265, 1995. DOI: 10.1007/BF00367095. [9] Dhal, P.K., Islam, E., Kazy, S.K. and Sar, P., Culture-independent molecul

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    وصف الملف: application/pdf

    Relation: Rev. Colomb. Biotecnol.; Mejía, E., Ospina, J. D., Osorno, L., Márquez, M. A., & Morales Aramburo, A. L. (2011). Adaptación de una cepa compatible con Acidithiobacillus ferrooxidans sobre concentrados de calcopirita (CuFeS2), esfalerita (ZnS) y galena (PbS). Revista Colombiana de Biotecnología. 13(1), 132-143.; http://hdl.handle.net/10495/8149

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    وصف الملف: application/msword; application/pdf

    Relation: http://revistas.unal.edu.co/index.php/biotecnologia/article/view/22982; Universidad Nacional de Colombia Revistas electrónicas UN Revista Colombiana de Biotecnología; Revista Colombiana de Biotecnología; Revista Colombiana de Biotecnología; Vol. 13, núm. 1 (2011); 132-143 1909-8758 0123-3475; Mejía Restrepo, Erica and Ospina Correa, Juan David and Osorno Bedoya, Laura and Márquez Godoy, Marco Antonio and Morales Aramburo, Alvaro Luis (2011) Adaptación de una cepa compatible con acidithiobacillus ferrooxidans sobre concentrados de calcopirita (cufes2), esfalerita (zns) y galena (pbs). Revista Colombiana de Biotecnología; Vol. 13, núm. 1 (2011); 132-143 1909-8758 0123-3475 .; https://repositorio.unal.edu.co/handle/unal/35485; http://bdigital.unal.edu.co/25566/; http://bdigital.unal.edu.co/25566/3/

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    وصف الملف: application/pdf; application/msword

    Relation: http://revistas.unal.edu.co/index.php/biotecnologia/article/view/28023; Universidad Nacional de Colombia Revistas electrónicas UN Revista Colombiana de Biotecnología; Revista Colombiana de Biotecnología; Revista Colombiana de Biotecnología; Vol. 13, núm. 2 (2011); 199-209 1909-8758 0123-3475; Caicedo Pineda, Gerardo Andrés and Márquez Godoy, Marco Antonio and Moreno Herrera, Claudia Ximena (2011) Influencia de la concentración de hierro y ph iniciales en un proceso de biodesulfurización de carbón – ensayos a nivel de laboratorio. Revista Colombiana de Biotecnología; Vol. 13, núm. 2 (2011); 199-209 1909-8758 0123-3475 .; https://repositorio.unal.edu.co/handle/unal/48728; http://bdigital.unal.edu.co/42185/; http://bdigital.unal.edu.co/42185/3/

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    مصطلحات موضوعية: Magnetotactic bacteria (MTB), magnetosome, microcosm, estuary

    وصف الملف: application/pdf; text/html

    Relation: http://revistas.unal.edu.co/index.php/dyna/article/view/26011; Universidad Nacional de Colombia Revistas electrónicas UN Dyna; Dyna; Dyna; Vol. 78, núm. 168 (2011); 72-80 DYNA; Vol. 78, núm. 168 (2011); 72-80 2346-2183 0012-7353; Salazar Villegas, Alejandro and Morales, Álvaro and Márquez Godoy, Marco Antonio (2011) Characterization of natural microcosms of estuarine magnetotactic bacteria. Dyna; Vol. 78, núm. 168 (2011); 72-80 DYNA; Vol. 78, núm. 168 (2011); 72-80 2346-2183 0012-7353 .; https://repositorio.unal.edu.co/handle/unal/37993; http://bdigital.unal.edu.co/28078/

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