يعرض 1 - 20 نتائج من 165 نتيجة بحث عن '"Pruebas de Toxicidad"', وقت الاستعلام: 1.19s تنقيح النتائج
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    المساهمون: Producción Científica UCH 2019, UCH. Departamento de Farmacia, UCH. Departamento de Matemáticas, Física y Ciencias Tecnológicas

    وصف الملف: application/pdf

    Relation: Virulence, vol. 10, n. 1 (26 aug.); Suay-García, B., Alemán-López, PA., Bueso-Bordils, JI., Falcó, A., Antón-Fos, G. & Pérez-Gracia, MT. (2019) New solvent options for "in vivo" assays in the "Galleria mellonella" larvae model. Virulence, vol. 10, n. 1 (26 aug.), pp. 776-782. DOI: https://doi.org/10.1080/21505594.2019.1659663; 2150-5594.; 2150-5608 (Electrónico).; http://hdl.handle.net/10637/10964; https://doi.org/10.1080/21505594.2019.1659663

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    المؤلفون: Vargas Mamani, Juan José

    المصدر: Revista Médica Basadrina; Vol. 10 No. 2 (2016): Revista Médica Basadrina; 14-18 ; Revista Médica Basadrina; Vol. 10 Núm. 2 (2016): Revista Médica Basadrina; 14-18 ; 2617-6068 ; 2077-0014 ; 10.33326/26176068.2016.2

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    المصدر: Science and Development; No. 10 (2006): Ciencia & Desarrollo; 35-38 ; Ciencia & Desarrollo; Núm. 10 (2006): Ciencia & Desarrollo; 35-38 ; Ciência e Desenvolvimento; n. 10 (2006): Ciencia & Desarrollo; 35-38 ; 2617-6033 ; 2304-8891 ; 10.33326/26176033.2006.10

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    وصف الملف: application/pdf

    Relation: Sharma, K. A comparative study on characterization of textile wastewaters (untreated and treated) toxicity by chemical and biological tests. Chemosphere [en línea], Vol 69, 1, pp 48-54, Junio, 2007. [2] Rand, G. Fundamentals of Aquatic Toxicology: Effects, Environmental Fate, and Risk Assesment. Segunda edición. Estados unidos, Ed. Taylor & Francis, 1995. pp 3-18.; Bae, J.; Freeman, H. Aquatic toxicity evaluation of new direct dyes to the Daphnia magna. Dyes and Pigments [en línea]. Vol 73, 1, pp 81-85, Diciembre, 2005.; Verma, Y. Toxicity assessment of dye containing industrial effluents by acute toxicity test using Daphnia magna. Toxicology and industrial health. [en línea]. Vol 27, 1, pp 41-49, India, 2011.; Gupta, V. Application of low-cost adsorbents for dye removal- A review. Journal of Environmental Management [en línea]. Vol 90, 8, pp 2313-2342, Junio, 2009. [6] Methods for Measuring the Acute Toxicity of Effluents and Receiving Waters to Freshwater and Marine Organisms. United States Environmental Protection Agency, EPA. Quinta edicion. Octubre, 2002. [7] Wang, K. Treatment and toxicity evaluation of methylene blue using electrochemical oxidation, fly ash adsorption and combined electrochemical oxidation-fly ash adsorption. Journal of Environmental Management [en línea]. Vol 91, 8, pp 1778-1784, 2010. [8] Rosenkranz, H. Similarities in the mechanisms of antibacterial activity (Microtox assay) and toxicity to vertebrates. Food and Agriculture Organization of the United Nations. [en línea] 1993. [9] Bafana, A. Azo Dyes: past, present and the future. Nagpur, India, NRC Research Press, 2011. Environmental NRC Research Press. [en línea]. Vol 19, pp 350-370, Septiembre, 2011. [10b] Resolución 0062 de 2007. Bogotá, Colombia. Marzo, 2007. [11] Verma, Y. Toxicity Evaluation of Effluents from Dye and Dye Intermediate Producing Industries Using Daphnia Bioassay. Journal of Toxicology [en línea]. Vol 4, 2, 2008. [12] Dave, G.; Aspegren, P. Comparative toxicity of leachates from 52 textiles to Daphnia magna. Ecotoxicology and Environmental Safety. [en línea]. Vol 73, 7, pp 1629-1632, 2010. [13] Immich, A. Removal of Remazol Blue RR dye from aqueous solutions with Neem leaves and evaluation of their acute toxicity with Daphnia magna. Journal of Hazardous Materials. [en línea]. Vol 164, 2–3, pp 1580-1585. 2009. [14] Aruoja, V., Dubourguiera, H. Toxicity of nanoparticles of CuO, ZnO and TiO2 to microalgae Pseudokirchneriella subcapitata. [en línea]. Vol 407, 4, pp 1461–1468, 2009. [15] Franklin, N., Rogers, N., Apte, S. (2007). Comparative toxicity of nanoparticulate ZnO, bulk ZnO, and ZnCl2 to a freshwater microalga (Pseudokirchneriella subcapitata): the importance of particle solubility. Environ Sci Technol, [en línea]. Vol 41, 24, pp 8484–8490, 2007. [16] Baveye, P., Laba, M. Aggregation and toxicology of titanium dioxide nanoparticles. Environmental Health Perspectives, [en línea]. Vol 116, 4, 2008. [17] Sponza, D. Toxicity studies in a chemical dye production industry in Turkey. Journal of Hazardous Materials [en línea]. Vol 138, 3, pp 438-447, 2006. [18] Novotny, C. Comparative use of bacterial, algal and protozoan tests to study toxicity of azo- and anthraquinone dyes. Chemosphere [en línea]. Vol 63, 9, pp 1436-1442, 2006. [19] Tigini, V. Evaluation of toxicity, genotoxicity and environmental risk of simulated textile and tannery wastewaters with a battery of biotests. Ecotoxicology and Environmental Safety, [en línea]. Vol 74, pp 866-873, 2011.; Cámara de Comercio de Medellín para Antioquia. Las 500 empresas más grandes de Antioquia, 2011.RAED. Revista Antioqueña de Economía y Desarrollo. Ed. 4. Oct 2012. [21] Design Expert Software, Versión 9. Stat – Ease. Disponible en http://www.statease.com/software/dx9-trial.html. 2014; https://revistas.eia.edu.co/index.php/reveia/article/download/742/989; Núm. 26 , Año 2016; 74; 26; 61; 13; Revista EIA; https://repository.eia.edu.co/handle/11190/4940; https://doi.org/10.24050/reia.v13i26.742