5 resultados para Ciberespaço, Media, Ciberutopia, Poder

em Aquatic Commons


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El Río de la Plata es uno de los cuerpos de agua más importantes de América del Sur. En la actualidad este ambiente es utilizado por el hombre con diferentes propósitos (GARIBOGLIO, 1987; DARRIGRAN, 2002): • Con fines económicos y de recreación (pesca, deportiva y comercial; turismo; deportes; etc.). • Como puerto. • Como fuente de captación de agua para consumo humano. • Como receptor de efluentes industriales. • Como cuerpo receptor de efluentes municipales, sin tratamiento previo. Estos distintos usos que el hombre le da a las aguas del Río de la Plata, muchas veces incompatibles entre ellos, producen un impacto en dicho ambiente difícil de evaluar, debido al escaso conocimiento que existe sobre ese ecosistema. El estudio de la comunidad bentónica, como consecuencia de su limitada movilidad y ciclo de vida apropiado en su duración, es un elemento importante para detectar y evaluar las alteraciones provocadas por la acción humana. En nuestro país no existen estudios específicos sobre el bentos litoral del estuario del Río de la Plata. Referidas a ciertas taxocenosis del macrobentos litoral de la costa argentina del Río de la Plata, se encuentran los trabajos de Darrigran y Rioja (1988), Gullo y Darrigran (1991), relacionados a la distribución de la fauna de isópodos talasoides e hirudíneos, respectivamente. En los 90, existen los trabajos de Darrigran (1991 a y b; 1993; 1998/99); Darrigran y López Armengol (1998), sobre moluscos litorales. Sobre la costa uruguaya del estuario, Scarabino, et al. (1975), realizan un estudio sobre las comunidades bentónicas en el sistema litoral del Departamento de Montevideo. Investigaciones sobre la malacofauna del macrobentos del litoral uruguayo del estuario del Río de la Plata, se encuentran en Sprechmann (1978). En la década de los 90, investigadores del Uruguay, a través de un Programa uruguayo-canadiense orientado hacia la sustentabilidad del estuario Río de la Plata (EcoPlata, 1996), tratan al macrobentos litoral en forma monográfica (Masello & Menafra, 1996). En el presente trabajo se consideran los muestreos de la taxocenosis de moluscos realizados en la zona interna y media de la costa argentina del estuario, antes de la introducción del bivalvo invasor o mejillón dorado, Limnoperna fortunei (Dunker, 1857) a dicha costa (Darrigran & Pastorino, 1995). Cuando se introduce una especie, pueden ocurrir diferentes sucesos: que simplemente se adapte al lugar, en relativo equilibrio con la comunidad pre-existente, o cuando la especie introducida presenta ciertas características (alta tasa de crecimiento, alta capacidad reproductiva-adaptativa, gran poder de dispersión, etc.), sumadas a la falta de enemigos naturales (parásitos, depredadores y/o competidores por los recursos), esta especie está capacitada para realizar una ocupación expansiva, rápida y efectiva del territorio. A esta especie se la denomina “invasora”. A partir de los asentamientos de Limnoperna fortunei, se han detectado severos impactos tanto en el ambiente humano (Darrigran, 1995), como en el ambiente natural (Martín & Darrigran, 1994; Darrigran, et. al, 1998). Estos hechos ponen de manifiesto la importancia de conocer la biodiversidad del bentos en general y de la malacofauna y su distribución en particular, antes de la manifestación de este tipo de contaminación por especies (Rappoport, 1990), como así también, ante el continuo impacto que ejercen las grandes ciudades sobre este cuerpo de agua. Los objetivos de la presente contribución son: 1) Establecer la composición y distribución de la malacofauna del litoral argentino del estuario del Río de la Plata, existente hasta 1991, en relación con dos factores: la salinidad y la contaminación ambiental. 2) Proponer una zonación longitudinal del litoral argentino del Río de la Plata, de acuerdo con los resultados obtenidos a partir del primer objetivo. (Text in Spanish. PDF contains 41 pages.)

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Retrofit activities, such as improving hydrology and incorporating more advanced treatment methods into systems where feasible, may improve phosphorus (P) removal performance of current Best Management Practices (BMPs). In the recent past, chemical treatment systems such as chemical dosing and the use of adsorptive media have become more prevalent for treating stormwater and hold promise for improving the P removal performance of stormwater treatment BMPs (Bachand et al., 2005; Patel et al., 2005). Our primary objective for this project has been to investigate whether adsorptive media hold any promise for improving P removal performance of stormwater basins and treatment wetlands at Lake Tahoe.... (PDF contains 99 pages)

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Phosphorus removal by wetlands and basins in Lake Tahoe may be improved through designing these systems to filter storm water through media having higher phosphorus removal capabilities than local parent material. Substrates rich in iron, aluminum and calcium oftentimes have enhanced phosphorus removal. These substrates can be naturally occurring, byproducts of industrial or water treatment processes, or engineered. Phosphorus removal fundamentally occurs through chemical adsorption and/or precipitation and much of the phosphorus can be irreversibly bound. In addition to these standard media, other engineered substrates are available to enhance P removal. One such substrate is locally available in Reno and uses lanthanum coated diatomaceous earth for arsenate removal. This material, which has a high positive surface charge, can also irreversibly remove phosphorus. Physical factors also affect P removal. Specifically, specific surface area and particle shape affect filtration capacity, contact area between water and the surface area, and likelihood of clogging and blinding. A number of substrates have been shown to effectively remove P in case studies. Based upon these studies, promising substrates include WTRs, blast furnace slag, steel furnace slag, OPC, calcite, marble Utelite and other LWAs, zeolite and shale. However, other nonperformance factors such as environmental considerations, application logistics, costs, and potential for cementification narrow the list of possible media for application at Tahoe. Industrial byproducts such as slags risk possible leaching of heavy metals and this potential cannot be easily predicted. Fly ash and other fine particle substrates would be more difficult to apply because they would need to be blended, making them less desirable and more costly to apply than larger diameter media. High transportation costs rule out non-local products. Finally, amorphous calcium products will eventually cementify reducing their effectiveness in filtration systems. Based upon these considerations, bauxite, LWAs and expanded shales/clays, iron-rich sands, activated alumina, marble and dolomite, and natural and lanthanum activated diatomaceous earth are the products most likely to be tested for application at Tahoe. These materials are typically iron, calcium or aluminum based; many have a high specific surface area; and all have low transportation costs. (PDF contains 21 pages)

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The findings are presented of a study conducted in the framework of the Nigerian-German Kainji Lake Fisheries Promotion Project to examine the role and structure of communication in fishing villages around Kainji Lake in Nigeria. The major aim was to be able to utilize the knowledge at a later stage in the project cycle to pass on fisheries extension messages to fishing communities. The study had the following terms of reference: 1) describe the structure and processes of communication of fishermen around Kainji Lake; 2) identify the formal and informal media of communication used by the fishermen to communicate information concerning their job; 3) describe the problems inhibiting usage of the different media identified; 4) ascertain the extent of use of mass media by fishermen around the lake; and, 5) identify acceptable ways by which fisheries information can be repackaged for the use of extension workers. (PDF contains 58 pages)

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The purpose of this work is a contribution to the quantitative record of the use of iron by planktonic algae. Preliminary experiments with Chlorella to determine the rate of iron intake in the presence of inorganic sources of iron did not produce the desired result. The crucial point of this work is the investigation of the influence of various external factors on the stability of FeEDTA (FeEDTA = Ferric(III)-compound of ethylene-diamine tetra-acetic acid), since this compound appears to be particularly well-suited as a source of iron for planktonic algae (e.g. TAMIYA et al. 1953). Cultures of Chlorella fusca in a light thermostat were used in experimental research. Methods and results are discussed.