يعرض 1 - 20 نتائج من 54 نتيجة بحث عن '"Guío, Laura"', وقت الاستعلام: 0.63s تنقيح النتائج
  1. 1
    Conference
  2. 2
    Academic Journal
  3. 3
    Academic Journal

    مصطلحات موضوعية: gold(III), organometallic compounds, perhaloaryl, thallium(III)

    وصف الملف: application/pdf

    Relation: info:eu-repo/semantics/altIdentifier/pmid/36615644; info:eu-repo/semantics/altIdentifier/eissn/1420-3049; Synthesis and Structural Characterization of Phosphanide Gold(III)/Gold(I) Complexes and Their Thallium(III) and Gold(III) Precursors, 2023, vol. 28, núm. 1; https://investigacion.unirioja.es/documentos/63c390e0b0644813d9026038; urn:issn:1420-3049

  4. 4
    Academic Journal

    المؤلفون: Sojo Dorado, Jesús, López Hernández, Inmaculada, Rosso Fernández, Clara, Morales, Isabel M., Palacios Baena, Zaira R., Hernández Torres, Alicia, Merino de Lucas, Esperanza, Escolà Vergé, Laura, Bereciartua, Elena, García Vázquez, Elisa, Pintado, Vicente, Boix Palop, Lucía, Natera Kindelán, Clara, Sorlí, Luisa, Borrell, Nuria, Giner Oncina, Livia, Amador Prous, Concha, Shaw, Evelyn, Jover Saenz, Alfredo, Molina, Jose, Martínez Álvarez, Rosa M., Dueñas, Carlos J., Calvo Montes, Jorge, Silva, Jose T., Cárdenes, Miguel A., Lecuona, María, Pomar, Virginia, Valiente de Santis, Lucía, Yagüe Guirao, Genoveva, Lobo Acosta, María Angeles, Merino Bohórquez, Vicente, Pascual, Alvaro, Rodríguez Baño, Jesús, Almirante, Benito, Fernández, Mario, Paño Pardo, José Ramón, Cueto, Marina de, Retamar Gentil, Pilar, López Cortés, Luis Eduardo, Gutiérrez Gutiérrez, Belén, Docobo, Fernando, Borreguero, Irene, Camean, Manuel, Moral Escudero, Encarnación, Pareja Rodríguez de Vera, Ana, Martínez Toldos, María del Carmen, Blázquez Abellán, Ana, Belles Belles, Alba, Ramírez Hidalgo, María Fernanda, Mirelis, Beatriz, Calbo, Esther, Xercavins, Mariona, Gracia Ahufinger, Irene, Cano Yuste, Ángela, Guío, Laura, Hernandez, Jose Luis, Pigrau Serrallach, Carlos, Viñado Pérez, Belen, Puig Asensio, Mireia, Ardanuy, Carmen, Pujol, Miquel, García Rosado, Dácil, Gil Anguita, Concepción, Siverio, Ana, Gimeno Gascón, Adelina, Boix Martínez, Vicente, Reus Bañuls, Sergio, Agea Durán, Iván, Fariñas, Carmen, Palop, Begoña, Vilchez, Helem, Lepe, José Antonio, Gil Navarro, María Victoria, San Juan, Rafael, Chaves, Fernando, Escudero, Rosa, Gioia, Francesca, Sánchez Díaz, Ana María, Cañas Pedrosa, Ana, Sangil Monroy, Nayra, Toyas Miazza, Carla, Reipi Geiras Forest Group

    المصدر: Articles publicats en revistes (Institut d'lnvestigació Biomèdica de Bellvitge (IDIBELL))

    وصف الملف: 14 p.; application/pdf

    Relation: Reproducció del document publicat a: https://doi.org/10.1001/jamanetworkopen.2021.37277; JAMA Network Open, 2022, vol 5, num 1; https://doi.org/10.1001/jamanetworkopen.2021.37277; http://hdl.handle.net/2445/182737

  5. 5
    Conference
  6. 6
    Academic Journal
  7. 7
    Academic Journal
  8. 8
    Academic Journal
  9. 9
  10. 10
  11. 11
    Dissertation/ Thesis

    جغرافية الموضوع: CRAI-USTA Bogotá

    وصف الملف: application/pdf

    Relation: Andreasi Bassi, S., Biganzoli, F., Ferrara, N., Amadei, A., Valente, A., Sala, S., & Ardente, F. (2023). Updated characterisation and normalisation factors for the Environmental Footprint 3.1 method; Axioma Group S.A.S. (2022). Poliestireno expandido: repensar su reciclaje para lograr un cierre de ciclo. El Empaque + Conversión.; Bautista, K. S., Hernandez, N. E., Solano, J. K., Orjuela, D., & Acevedo, P. (2023). Life Cycle Analysis for the Recycled Expanded Polystyrene (EPS) and Polypropylene (PP) Mixture as an Alternative to the Material in the Construction Sector. Chemical Engineering Transactions, 99, 247-252.; Beltrán Rodríguez, L. N., Larrahondo, J. M., & Cobos, D. (2018). Tecnologías emergentes para disposición de relaves: oportunidades en Colombia. Boletín de Ciencias de la Tierra, (44), 5-20.; Bose, D., Dey, A., & Banerjee, T. (2020). Aspects of bioeconomy and microbial fuel cell technologies for sustainable development. Sustainability: The Journal of Record, 13(3), 107-118.; Conci, E., Civit, B. M., Becker, A. R., & Arena, A. P. (2020). La Eutrofización acuática y terrestre como categorías de impacto regional. AJEA, (5).; Corona, B., Shen, L., Reike, D., Carreón, J. R., & Worrell, E. (2019). Towards sustainable development through the circular economy—A review and critical assessment on current circularity metrics. Resources, Conservation and Recycling, 151, 104498.; Damiani, M., Ferrara, N., & Ardente, F. (2022). Understanding Product Environmental Footprint and Organisation Environmental Footprint methods. Publications Office of the European Union.; Ekvall, T., Gottfridsson, M., Nilsson, J., Nellström, M., Rydberg, M., & Rydberg, T. Factor B in the Circular Footprint Formula.; European Commission. (2022). European Platform on LCA %7C EPLCA. Recuperado de https://eplca.jrc.ec.europ a.eu/LCDN/developerEF.xhtml; Farrapo Jr, A. C., Matheus, T. T., Lagunes, R. M., Filleti, R., Yamaji, F., & Lopes Silva, D. A. (2023). The Application of Circular Footprint Formula in Bioenergy/Bioeconomy: Challenges, Case Study, and Comparison with Life Cycle Assessment Allocation Methods. Sustainability, 15(3), 2339.; Green Delta. (2020). Understanding and applying the Circular Footprint Formula (CFF) in Product Environmental Footprints (PEF). Alemania.; Gutierrez Martinez, S. E. (2022). Sustentación de caso: análisis y diagnóstico de San Miguel Industrias PET en el sector manufacturero de plástico peruano, propuesta de un plan estratégico.; Hermansson, F., Ekvall, T., Janssen, M., & Svanström, M. (2022). Allocation in recycling of composites-the case of life cycle assessment of products from carbon fiber composites. The International Journal of Life Cycle Assessment, 27(3), 419-432.; Koide, R., Yamamoto, H., Nansai, K., & Murakami, S. (2023). Agent-based model for assessment of multiple circular economy strategies: Quantifying product-service; Laurent, A., Clavreul, J., Bernstad, A., Bakas, I., Niero, M., Gentil, E., . & Hauschild, M. Z. (2014). Review of LCA studies of solid waste management systems–Part II: Methodological guidance for a better practice. Waste management, 34(3), 589-606.; Nessi, S., Sinkko, T., Bulgheroni, C., Garcia-Gutierrez, P., Giuntoli, J., Konti, A., . & Ardente, F. (2021). Life Cycle Assessment (LCA) of alternative feedstocks for plastics production Part 1: the Plastics LCA method. Publications Office of the European Union.; Nessi, S., Sinkko, T., Bulgheroni, C., Garcia-Gutierrez, P., Giuntoli, J., Konti, A., . & Ardente, F. (2022). Life Cycle Assessment (LCA) of alternative feedstocks for plastics production Part 2: illustrative case studies. Publications Office of the European Union; Schrijvers, D. L., Loubet, P., & Weidema, B. P. (2021). To what extent is the circular footprint formula of the product environmental footprint guide consequential?. Journal of Cleaner Production, 320, 128800; Thakur, S., Chaudhary, J., Sharma, B., Verma, A., Tamulevicius, S., & Thakur, V. K. (2018). Sustainability of bioplastics: Opportunities and challenges. Current opinion in Green and Sustainable chemistry, 13, 68-75.; World Wide Fund for Nature. (2023). WWF se une al Pacto por los Plásticos en Colombia. Recuperado de https://www.wwf.org.co/?381452/WWF-se-une-al-Pacto-por-los-Plasticos-en-Colombia; Fajardo Guio, L. T. y Fajardo Valderrama, L. J. (2024),Evaluación de la Viabilidad Ambiental de Mezclas Poliméricas Constituidas por Residuos Plásticos y Agroindustriales a Través de Vigilancia Tecnológica, [Trabajo de Maestría, Universidad Santo Tomás]. Repositorio Institucional; http://hdl.handle.net/11634/54695; reponame:Repositorio Institucional Universidad Santo Tomás; instname:Universidad Santo Tomás; repourl:https://repository.usta.edu.co

  12. 12
    Academic Journal
  13. 13
    Conference
  14. 14
    Academic Journal
  15. 15
  16. 16
    Academic Journal

    المصدر: Revista Colombiana de Química; Vol. 49 Núm. 1 (2020); 20-25 ; Revista Colombiana de Química; v. 49 n. 1 (2020); 20-25 ; Revista Colombiana de Química; Vol. 49 No. 1 (2020); 20-25 ; 2357-3791 ; 0120-2804

    وصف الملف: application/pdf; text/html; application/xml

    Relation: https://revistas.unal.edu.co/index.php/rcolquim/article/view/81996/74183; https://revistas.unal.edu.co/index.php/rcolquim/article/view/81996/74475; https://revistas.unal.edu.co/index.php/rcolquim/article/view/81996/74477; A. Pinzón-Espinosa, et al., “Cereusitin A, a cyclic tetrapeptide from a Bacillus cereus strain isolated from the soft coral Antillogorgia (syn. Pseudopterogorgia) elisabethae”, Tetrahedron Lett., vol. 58, n° 7, pp. 634–637, 2017. DOI: https://doi.org/10.1016/j.tetlet.2017.01.002 [2] L. A. Betancur, et al., “Marine Actinobacteria as a source of compounds for phytopathogen control: an integrative metabolicprofiling/bioactivity and taxonomical approach”, PLoS ONE, vol. 12, n° 2, 2017. DOI: https://doi.org/10.1371/journal.pone.0170148 [3] D. C. Sinuco, N. C. Moreno, and A. C. Pérez. “Evaluación de la actividad fungicida e identificación de compuestos orgánicos volátiles liberados por Trichoderma viride”, Rev Colomb Biotecnol., vol. 19, pp. 63-70, 2017. DOI: https://doi.org/10.15446/rev.colomb.biote.v19n1.65969 [4] Z. Gao, B. Zhang, H. Liu, and J. Han. “Identification of endophytic Bacillus velezensis ZSY-1 strain and antifungal activity of its volatile compounds against Alternaria solani and Botrytis cinereal”, Biol Control., vol. 105, pp. 27-39, 2017. DOI: https://doi.org/10.1016/j.biocontrol.2016.11.007 [5] R. Schmidt, V. Cordovez, W. de Boer, J. Raaijmakers, and P. Garbeva. “Volatile affairs in microbial interactions”, ISME J, vol. 9, n° 11, pp. 2329–2335, 2015. DOI: https://doi.org/10.1038/ismej.2015.42 [6] M. Kai, U. Effmert, and B. Piechulla. “Bacterial-Plant-Interactions: Approaches to Unravel the Biological Function of Bacterial Volatiles in the Rhizosphere”, Front Microbiol., vol. 7, n° 108, 2016. DOI: https://doi.org/10.3389/fmicb.2016.00108 [7] C. N. Kanchiswamy, M. Malnoy, and M. E. Maffei. “Bioprospecting bacterial and fungal volatiles for sustainable agriculture”, Trends Plant Sci., vol. 20, pp. 206-221, 2015. DOI: https://doi.org/10.1016/j.tplants.2015.01.004 [8] S. Schulz and J. S. Dickschat. “Bacterial volatiles: the smell of small organisms”, Nat Prod Rep., vol. 24, pp. 814–842, 2007. DOI: https://doi.org/10.1039/b507392h [9] S. Schulz, J. S. Dickschat, B. Kunze, I. Wagner-Dobler, R. Diestel, and F. Sasse. “Biological activity of volatiles from marine and terrestrial bacteria”, Mar. Drugs, vol. 8, n° 12, pp. 2976-2987, 2010. DOI: https://doi.org/10.3390/md8122976 [10] D. Rybakova, T. Cernava, M. Köberl, S. Liebminger, M. Etemadi, and G. Berg. “Endophytes-assisted biocontrol: novel insights in ecology and the mode of action of Paenibacillus”. Plant Soil, vol. 405, pp. 125–140, 2016. DOI: https://doi.org/10.1007/s11104-015-2526-1 [11] D. Rybakova, et al., “Kill or cure? The interaction between endophytic Paenibacillus and Serratia strains and the host plant is shaped by plant growth conditions”, Plant Soil, vol. 405, pp. 65–79, 2016. DOI: https://doi.org/10.1007/s11104-015-2572-8 [12] D. Rybakova, U. Rack-Wetzlinger, T. Cernava, A. Schaefer, M. Schmuck, and G. Berg. “Aerial Warfare: A Volatile Dialogue between the Plant Pathogen Verticillium longisporum and Its Antagonist Paenibacillus polymyxa”, Front. Plant Sci., vol. 8:1294, 2017. DOI: https://doi.org/10.3389/fpls.2017.01294 [13] C. A. Schneider, W. S. Rasband, and K.W. Eliceiri. “NIH Image to ImageJ: 25 years of image analysis”, Nat. Methods, vol. 9, n° 7, pp. 671-675, 2012. DOI: https://doi.org/10.1038/nmeth.2089. [14] L. M. Pérez, M. J. Saquero, and J. D. Beltrán. “Caracterización morfológica y patogénica de Colletotrichum sp. como agente causal de la antracnosis en ñame Dioscorea sp.”, Rev Colomb Biotecnol., vol. 5, n° 1, pp. 24-35, 2003. [15] M. C. Lemfack, J. Nickel, M. Dunkel, R. Preissner and B. Piechulla. “mVOC: a database of microbial volatiles”. Nucleic Acids Res., vol. 42, pp. 744–748, 2014. DOI: https://doi.org/10.1093/nar/gkt1250 [16] N. Giraldo Marroquín, S. L. Bustamante Rodríguez, Y. A. Pinzón Gutiérrez, and G. Buitrago Hurtado, “Caracterización molecular de Colletotrichum gloeosporioides aislado de plantas de ñame de la Costa Atlántica Colombiana utilizando la técnica ‘DNA Amplification Fingerprinting (DAF)”, Rev. Colomb. Biotecnol., vol. 18, n° 1, pp. 95–103, 2016. [17] E. N. Grady, J. Macdonald, L. Liu, A. Richman, and Z. Yuan. “Current Knowledge and perspectives of Paenibacillus: A review”, Microb. Cell Fact., vol. 15, n° 1, pp. 1-18, 2016. DOI: https://doi.org/10.1186/s12934-016-0603-7 [18] Z. Hao, et al., “Biocontrol of Grapevine Aerial and Root Pathogens by Paenibacillus Sp. Strain B2 and Paenimyxin in Vitro and in Planta”, Biol. Control, vol. 109, pp. 42-50, 2017. DOI: https://doi.org/10.1016/j.biocontrol.2017.03.004 [19] D. Martínez, M. Laiton-Fonseca, F.A. Rodríguez, C. Duque and L. Castellanos. “Screening of marine bacterial strains as source of quorum sensing inhibitors (QSI): first chemical study of Oceanobacillus profundus (RKHC-62B)”, VITAE, vol. 23, n° 1, pp. 30-47, 2016. DOI: http://dx.doi.org/10.17533/udea.vitae.v23n1a04 [20] W. G. Fernando, R. Ramarathnama, A. S. Krishnamoorthy, and S. Savchuk. “Identification and use of potential bacterial organic antifungal volatiles in biocontrol”, Soil Biol Biochem., vol. 37, n° 5, pp. 955–964, 2005. DOI: https://doi.org/10.1016/j.soilbio.2004.10.021 [21] U. Effmert, J. Kalderás, R. Warnke, and B. Piechulla. “Volatile mediated interactions between bacteria and fungi in the soil”, J Chem Ecol., vol. 38, n° 6, pp. 665-703, 2012. DOI: https://doi.org/10.1007/s10886-012-0135-5 [22] L. J. Zhao, X. N. Yang, X. Y. Li, and W. Mu. “Antifungal, insecticidal and herbicidal properties of volatile components from Paenibacillus polymyxa Strain BMP-11”, Agric Sci China, vol. 10, n° 5, pp. 728-736, 2011. DOI: https://doi.org/10.1016/S1671-2927(11)60056-4 [23] H. D. Bean, J. M. Dimandja, and J. E. Hill. “Bacterial volatile discovery using solid phase microextraction and comprehensive two-dimensional gas chromatography–time-of flight mass spectrometry”, J Chromatogr B Analyt Technol Biomed Life Sci., vol. 901, pp. 41–46, 2012. DOI: https://doi.org/10.1016/j.jchromb.2012.05.038 [24] J. Chen, J. Tang, H. Shi, C. Tang, and R. Zhang. “Characteristics of volatile organic compounds produced from five pathogenic bacteria by headspace-solid phase micro-extraction/gas chromatography-mass spectrometry”, J Basic Microbiol., vol. 57, n° 3, pp. 228–237. 2017. Doi:10.1002/jobm.201600505.; https://revistas.unal.edu.co/index.php/rcolquim/article/view/81996

  17. 17
    Academic Journal
  18. 18
  19. 19
    Academic Journal
  20. 20
    Academic Journal