11 resultados para poly(phenylene vinylene) and derivatives

em Universidad Politécnica de Madrid


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The rheological and tribological properties of single-walled carbon nanotube (SWCNT)-reinforced poly(phenylene sulphide) (PPS) and poly(ether ether ketone) (PEEK) nanocomposites prepared via melt-extrusion were investigated. The effectiveness of employing a dual-nanofiller strategy combining polyetherimide (PEI)-wrapped SWCNTs with inorganic fullerene-like tungsten disulfide (IF-WS2) nanoparticles for property enhancement of the resulting hybrid composites was evaluated. Viscoelastic measurements revealed that the complex viscosity ?, storage modulus G?, and loss modulus G? increased with SWCNT content. In the low-frequency region, G? and G? became almost independent of frequency at higher SWCNT loadings, suggesting a transition from liquid-like to solid-like behavior. The incorporation of increasing IF-WS2 contents led to a progressive drop in ? and G? due to a lubricant effect. PEEK nanocomposites showed lower percolation threshold than those based on PPS, ascribed to an improved SWCNT dispersion due to the higher affinity between PEI and PEEK. The SWCNTs significantly lowered the wear rate but only slightly reduced the coefficient of friction. Composites with both nanofillers exhibited improved wear behavior, attributed to the outstanding tribological properties of these nanoparticles and a synergistic reinforcement effect. The combination of SWCNTs with IF-WS2 is a promising route for improving the tribological and rheological performance of thermoplastic nanocomposites.

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Novel poly(phenylene sulphide) (PPS) nanocomposites reinforced with an aminated derivative (PPS-NH2) covalently attached to acid-treated single-walled carbon nanotubes (SWCNTs) were prepared via simple melt-blending technique. Their morphology, viscoelastic behaviour, electrical conductivity, mechanical and tribological properties were investigated. Scanning electron microscopy revealed that the grafting process was effective in uniformly dispersing the SWCNTs within the matrix. The storage and loss moduli as a function of frequency increased with the SWCNT content, tending to a plateau in the low-frequency regime. The electrical conductivity of the nanocomposites was considerably enhanced in the range 0.1?0.5 wt% SWCNTs; electrical and rheological percolation thresholds occurred at similar nanotube concentrations. Mechanical tests demonstrated that with only 1.0 wt% SWCNTs the Young's modulus and tensile strength of the matrix improved by 51 and 37%, respectively, without decrement in toughness, ascribed to a very efficient load transfer. A moderate decrease in the friction coefficient and a 75% reduction in wear rate were found for the abovementioned nanotube loading, indicating that PPS-NH2-g-SWCNTs are good tribological additives for thermoplastic polymers. Based on the promising results obtained in this work, it is expected that these nanofillers will be used to develop high-performance thermoplastic/CNT nanocomposites for structural applications.

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Novel carbon fiber (CF)-reinforced poly(phenylene sulphide) (PPS) laminates incorporating inorganic fullerene-like tungsten disulfide (IF-WS2) nanoparticles were prepared via melt-blending and hot-press processing. The influence of the IF-WS2 on the morphology, thermal, mechanical and tribological properties of PPS/CF composites was investigated. Efficient nanoparticle dispersion within the matrix was attained without using surfactants. A progressive rise in thermal stability was found with increasing IF-WS2 loading, as revealed by thermogravimetric analysis. The addition of low nanoparticle contents retarded the crystallization of the matrix, whereas concentrations equal or higher than 1.0 wt% increased both the crystallization temperature and degree of crystallinity compared to those of PPS/CF. Mechanical tests indicated that with only 1.0 wt% IF-WS2 the flexural modulus and strength of PPS/CF improved by 17 and 14%, respectively, without loss in toughness, ascribed to a synergistic effect between the two fillers. A significant enhancement in the storage modulus and glass transition temperature was also observed. Moreover, the wear rate and coefficient of friction strongly decreased, attributed to the lubricant role of the IF-WS2 combined with their reinforcing effect. These inorganic nanoparticles show great potential to improve the mechanical and tribological properties of conventional thermoplastic/CF composites for structural applications.

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The thermal and thermomechanical properties of poly(phenylene sulphide) (PPS) based nanocomposites incorporating a polymer derivative covalently anchored onto single-walled carbon nanotubes (SWCNTs) were investigated. The grafted fillers acted as nucleating agents, increasing the crystallization temperature and degree of crystallinity of the matrix. They also enhanced its thermal stability, flame retardancy, glass transition (Tg) and heat deflection temperatures while reduced the coefficient of thermal expansion at temperatures below Tg. A strong rise in the thermal conductivity, Young?s modulus and tensile strength was found with increasing filler loading both in the glassy and rubbery states. All these outstanding improvements are ascribed to strong matrix-filler interfacial interactions combined with a compatibilization effect that results in very homogeneous SWCNT dispersion. The results herein offer useful insights towards the development of engineering thermoplastic/CNT nanocomposites for high-temperature applications.

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Carbon fiber (CF)-reinforced high-temperature thermoplastics such as poly(phenylene sulphide) (PPS) are widely used in structural composites for aerospace and automotive applications. The porosity of CF-reinforced polymers is a very important topic for practical applications since there is a direct correlation between void content and mechanical properties. In this study, inorganic fullerene-like tungsten disulphide (IF-WS2) lubricant nanoparticles were used to manufacture PPS/IF-WS2/CF laminates via melt-blending and hot-press processing, and the effect of IF-WS2 loading on the quality, thermal and mechanical behaviour of the hybrid composites was investigated. The addition of IF-WS2 improved fiber impregnation, resulting in lower degree of porosity and increased delamination resistance, compression and flexural properties; their reinforcement effect was greater at temperatures above the glass transition (Tg). IF-WS2 contents higher than 0.5 wt % increased Tg and the heat deflection temperature while reduced the coefficient of thermal expansion. The multiscale laminates exhibited higher ignition point and notably reduced peak heat release rate compared to PPS/CF. The coexistence of micro- and nano-scale fillers resulted in synergistic effects that enhanced the stiffness, strength, thermal conductivity and flame retardancy of the matrix. The results presented herein demonstrate that the IF-WS2 are very promising nanofillers to improve the thermomechanical properties of conventional thermoplastic/CF composites.

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Polymer/inorganic nanoparticle nanocomposites have garnered considerable academic and industrial interest over recent decades in the development of advanced materials for a wide range of applications. In this respect, the dispersion of so-called inorganic fullerene-like (IF) nanoparticles, e.g., tungsten disulfide (IF-WS2) or molybdenum disulfide (IF-MoS2), into polymeric matrices is emerging as a new strategy. The surprising properties of these layered metal dichalcogenides such as high impact resistance and superior tribological behavior, attributed to their nanoscale size and hollow quasi-spherical shape, open up a wide variety of opportunities for applications of these inorganic compounds. The present work presents a detailed overview on research in the area of IF-based polymer nanocomposites, with special emphasis on the use of IF-WS2 nanoparticles as environmentally friendly reinforcing fillers. The incorporation of IF particles has been shown to be efficient for improving thermal, mechanical and tribological properties of various thermoplastic polymers, such as polypropylene, nylon-6, poly(phenylene sulfide), poly(ether ether ketone), where nanocomposites were fabricated by simple melt-processing routes without the need for modifiers or surfactants. This new family of nanocomposites exhibits similar or enhanced performance when compared with nanocomposites that incorporate carbon nanotubes, carbon nanofibers or nanoclays, but are substantially more cost-effective, efficient and environmentally satisfactory. Most recently, innovative approaches have been described that exploit synergistic effects to produce new materials with enhanced properties, including the combined use of micro- and nanoparticles such as IF-WS2/nucleating agent or IF-WS2/carbon fiber, as well as dual nanoparticle systems such as SWCNT/IF-WS2 where each nanoparticle has different characteristics. The structure–property relationships of these nanocomposites are discussed and potential applications proposed ranging from medicine to the aerospace, automotive and electronics industries.

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The influence of singlewalled carbon nanotubes (SWCNT) and inorganic fullerenelike tungsten disulfide nanoparticles (IFWS2) on the morphology and thermal, mechanical and electrical performance of multifunctional fibrereinforced polymer composites has been investigated. Significant improvements were observed in stiffness, strength and toughness in poly (ether ether ketone) (PEEK) / (SWCNT) / glass fibre (GF) laminates when a compatibilizer was used for wrapping the CNTs. Hybrid poly(phenylene sulphide) (PPS)/IFWS2/ carbon fibre (CF) reinforced polymer composites showed improved mechanical and tribological properties attributed to a synergetic effect between the IF nanoparticles and CF.

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This paper reports on the thermal behavior and mechanical properties of nanocomposites based on unsaturated polyester resin (UP) modified with poly(ɛ-caprolactone) (PCL) and reinforced with an organically modified clay (cloisite 30B). To optimize the dispersion of 30B and the mixing of PCL in the UP resin, two different methods were employed to prepare crosslinked UP–PCL-30B hybrid nanocomposites. Besides, two samples of poly(ɛ-caprolactone) of different molecular weight (PCL2: Mn = 2.103g.mol−1 and PCL50: Mn = 5.104g.mol−1) were used at several concentrations (4, 6, 10 wt%). The 30B concentration was 4 wt% in all the nanocomposites. The morphology of the samples was studied by scanning electron microscopy (SEM). The analysis of X-ray patterns reveals that intercalated structures have been found for all ternary nanocomposites, independently of the molecular weight, PCL concentration and the preparation method selected. A slight rise of the glass transition temperature, Tg, is observed in UP/PCL/4%30B ternary nanocomposites regarding to neat UP. The analysis of the tensile properties of the ternary (hybrid) systems indicates that UP/4%PCL2/4%30B nanocomposite improves the tensile strength and elongation at break respect to the neat UP while the Young modulus remains constant

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La pataca (Helianthus tuberosus L.) es una especie de cultivo con un alto potencial en la producción de hidratos de carbono de reserva en forma de polifructanos, especialmente inulina, que se acumulan temporalmente en los tallos en forma de polisacáridos para translocarse posteriormente a los tubérculos, donde son almacenados. Aunque tradicionalmente el producto de interés del cultivo son los tubérculos, que acumulan gran cantidad de hidratos de carbono fermentables (HCF) cuando se recogen al final del ciclo de desarrollo, en este trabajo se pretende evaluar el potencial de la pataca como productor de HCF a partir de los tallos cosechados en el momento de máximo contenido en HCF, mediante un sistema de cultivo plurianual. Se han realizado los siguientes estudios: i) Determinación del momento óptimo de cosecha en ensayos con 12 clones ii) Potencial del cultivo plurianual de la pataca en términos de producción anual de biomasa aérea y de HCF en cosechas sucesivas, iii) Ensayos de conservación de la biomasa aérea, iv) Estimación de los costes de las dos modalidades de cultivo de pataca para producción de HCF y v) Estimación de la sostenibilidad energética de la producción de bioetanol mediante la utilización de los subproductos. Para la determinación del momento óptimo de la cosecha de la biomasa aérea se ensayaron 12 clones de diferente precocidad en Madrid; 4 tempranos (Huertos de Moya, C-17, Columbia y D-19) y 8 tardíos (Boniches, China, K-8, Salmantina, Nahodka, C-13, INIA y Violeta de Rennes). El máximo contenido en HCF tuvo lugar en el estado fenológico de botón floral-flor que además coincidió con la máxima producción de biomasa aérea. De acuerdo con los resultados obtenidos, la cosecha de los clones tempranos se debería realizar en el mes de julio y en los clones tardíos en septiembre, siendo éstos últimos más productivos. La producción media más representativa entre los 12 clones, obtenida en el estado fenológico de botón floral fue de 23,40 t ms/ha (clon INIA), con un contenido medio en HCF de 30,30 % lo que supondría una producción potencial media de 7,06 t HCF/ha. La producción máxima en HCF se obtuvo en el clon Boniches con 7,61 t/ha y 22,81 t ms/ha de biomasa aérea. En el sistema de cultivo plurianual la cantidad de tallos por unidad de superficie aumenta cada año debido a la cantidad de tubérculos que van quedando en el terreno, sobre todo a partir del 3er año, lo que produce la disminución del peso unitario de los tallos, con el consiguiente riesgo de encamado. El aclareo de los tallos nacidos a principios de primavera mediante herbicidas tipo Glifosato o mediante una labor de rotocultor rebaja la densidad final de tallos y mejora los rendimientos del cultivo. En las experiencias de conservación de la biomasa aérea se obtuvo una buena conservación por un período de 6 meses de los HCF contenidos en los tallos secos empacados y almacenados bajo cubierta. Considerando que el rendimiento práctico de la fermentación alcohólica es de 0,5 l de etanol por cada kg de azúcar, la producción potencial de etanol para una cosecha de tallos de 7,06 t de HCF/ha sería de 3.530 l/ha. El bagazo producido en la extracción de los HCF de la biomasa aérea supondría 11,91 t/ha lo que utilizado para fines térmicos supone más de 3 veces la energía primaria requerida en el proceso de producción de etanol, considerando un poder calorífico inferior de 3.832,6 kcal/kg. Para una producción de HCF a partir de la biomasa aérea de 7,06 t/ha y en tubérculos al final del ciclo de 12,11 t/ha, los costes de producción estimados para cada uno de ellos fueron de 184,69 €/t para los HCF procedentes de la biomasa aérea y 311,30 €/t para los de tubérculos. Como resultado de este trabajo se puede concluir que la producción de HCF a partir de la biomasa aérea de pataca en cultivo plurianual, es viable desde un punto de vista técnico, con reducción de los costes de producción respecto al sistema tradicional de cosecha de tubérculos. Entre las ventajas técnicas de esta modalidad de cultivo, cabe destacar: la reducción de operaciones de cultivo, la facilidad y menor coste de la cosecha, y la posibilidad de conservación de los HCF en la biomasa cosechada sin mermas durante varios meses. Estas ventajas, compensan con creces el menor rendimiento por unidad de superficie que se obtiene con este sistema de cultivo frente al de cosecha de los tubérculos. Jerusalem artichoke (Helianthus tuberosus L.) (JA) is a crop with a high potential for the production of carbohydrates in the form of polyfructans, especially inulin, which are temporarily accumulated in the stems in the form of polysaccharides. Subsequently they are translocated to the tubers, where they are finally accumulated. In this work the potential of Jerusalem artichoke for fermentable carbohydrates from stems that are harvested at their peak of carbohydrates accumulation is assessed as compared to the traditional cultivation system that aims at the production of tubers harvested at the end of the growth cycle. Tubers are storage organs of polyfructans, namely fermentable carbohydrates. Studies addressed in this work were: i) Determination of the optimum period of time for stem harvesting as a function of clone precocity in a 12-clone field experiment; ii) Study of the potential of JA poly-annual crop regarding the annual yield of aerial biomass and fermentable carbohydrates (HCF) over the years; iii) Tests of storage of the aerial biomass, iv) Comparative analysis of the two JA cultivation systems for HCF production: the poly-annual system for aerial biomass harvesting versus the annual cultivation system for tubers and v) Estimation of the energy sustainability of the bioethanol production by using by-products of the production chain. In order to determine the best period of time for aerial biomass harvesting twelve JA clones of different precocity were tested in Madrid: four early clones (Huertos de Moya, C-17, Columbia and D-19) and eight late clones (Boniches, China, K-8 , Salmantina, Nahodka, C-13, INIA and Violeta de Rennes). Best time was between the phenological stages of floral buds (closed capitula) and blossom (opened capitula), period in which the peak of biomass production coincides with the peak of HCF accumulation in the stems. According to the results, the early clones should be harvested in July and the late ones in September, being the late clones more productive. The clone named INIA was the one that exhibited more steady yields in biomass over the 12 clones experimented. The average potential biomass production of this clone was 23.40 t dm/ha when harvested at the floral buds phenological stage; mean HCF content is 30.30%, representing 7.06 t HCF/ha yield. However, the highest HCF production was obtained for the clone Boniches, 7.61 t HCF/ha from a production of 22.81 t aerial biomass/ha. In the poly-annual cultivation system the number of stems per unit area increases over the years due to the increase in the number of tubers that are left under ground; this effect is particularly important after the 3rd year of the poly-annual crop and results in a decrease of the stems unit weight and a risk of lodging. Thinning of JA shoots in early spring, by means of an herbicide treatment based on glyphosate or by means of one pass with a rotary tiller, results in a decrease of the crop stem density and in higher crop yields. Tests of biomass storing showed that the method of keeping dried stems packed and stored under cover results in a good preservation of HCF for a period of six months at least. Assuming that the fermentation yield is 0.5 L ethanol per kg sugars and a HCF stem production of 7.06 t HCF/ha, the potential for bioethanol is estimated at 3530 L/ha. The use of bagasse -by-product of the process of HCF extraction from the JA stems- for thermal purposes would represent over 3 times the primary energy required for the industrial ethanol production process, assuming 11.91 t/ha bagasse and 3832.6 kcal/kg heating value. HCF production costs of 7.06 t HCF/ha yield from aerial biomass and HCF production costs of 12.11 t HCF/ha from tubers were estimated at 184.69 €/t HCF and 311.30 €/t HCF, respectively. It can be concluded that the production of HCF from JA stems, following a poly-annual cultivation system, can be feasible from a technical standpoint and lead to lower production costs as compared to the traditional annual cultivation system for the production of HCF from tubers. Among the technical advantages of the poly-annual cultivation system it is worth mentioning the reduction in crop operations, the ease and efficiency of harvesting operations and the possibility of HCF preservation without incurring in HCF losses during the storage period, which can last several months. These advantages might compensate the lower yield of HCF per unit area that is obtained in the poly-annual crop system, which aims at stems harvesting, versus the annual one, which involves tubers harvesting.

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La Asamblea General de la ONU, a solicitud del gobierno peruano, declara en el año 2008 el Año Internacional de la Papa, (AIP). Desde el año 2005, el gobierno peruano ha puesto en marcha estrategias en torno a la importancia de la papa, como la declaración del 30 de Mayo como el Día Nacional de la Papa. El año 2014 es declarado por la FAO, (Food and Agriculture Organization of the United Nations), Año Internacional de la Agricultura Familiar, con un enfoque compartido por esta Tesis Doctoral en el apoyo a la familia campesina peruana. El gobierno peruano utiliza las cadenas de valor como una estrategia de promoción de desarrollo sostenible, que ha permitido contribuir a la inclusión social y económica de productores pobres de zonas alto andinas, como las localizadas en la mancomunidad municipal del Yacus, (MMY), provincia de Jauja, departamento de Junín. Esta estrategia, en la que el mercado incorpora a los pequeños agricultores de las zonas altas de los Andes, (que disponen de recursos económicos muy bajos), en procesos productivos rentables, implica una serie de cambios a realizar, como la transformación de los patrones de producción tradicional hacia aquellos productos o servicios que tienen demanda en el mercado, o la variación de la mentalidad del agricultor pequeño hacia una concepción empresarial de su producción. (Fabián, 2013). Por otra parte, la sostenibilidad de las cadenas de valor depende del eslabón más débil, lo que obliga a conocer la situación de todos los eslabones para poder integrar y reforzar la cadena. Se requiere un sistema de transparencia adecuado que facilite el flujo de la información entre los distintos eslabones. (Briz et al., 2012). Además, el establecimiento de la cadena de valor debe hacerse con cuidado, ya que la eficacia y supervivencia de las empresas están cada vez más ligadas a la cadena de valor a la que pertenece y a la coordinación de la misma. (Briz, 2011). En esta situación, adquiere importancia el estudio de la cadena de valor de la papa nativa, para una vez establecidas sus características, poder determinar la viabilidad o no de una cadena de valor de este producto que repercuta parte de la riqueza generada en los pequeños agricultores alto andinos, e incluso, de su extensión hasta España. Existen estudios sobre las papas nativas, realizadas por diferentes universidades de distintos países, e incluso, de diferentes continentes. Sin embargo, la mayoría de los estudios se centran en la mejora de la producción de la papa nativa. La novedad de la investigación realizada en la presente Tesis Doctoral radica en el estudio de la viabilidad de la comercialización de la papa nativa, mediante el establecimiento de una cadena de valor que se inicie en la provincia de Jauja, Perú, y finalice tanto en los mercados peruanos de las regiones de Junín y Lima, como en España. El objetivo planteado en esta investigación es la mejora de las condiciones económicas y sociales de las comunidades agrícolas de la provincia de Jauja en el Perú, así como fomentar su desarrollo tecnológico e industrial, mediante el fomento de la cadena de valor de la papa nativa y sus derivados. Se establecen como objetivos específicos la caracterización de los eslabones de la cadena de valor de la papa nativa y sus derivados en la provincia de Jauja del Perú y en España, de manera que se determine el valor agregado en los mismos; el fortalecimiento de las organizaciones de productores de papas nativas para la comercialización de sus producciones y para el fomento de la cultura empresarial; y el desarrollo de una cadena de comercialización papas nativas y sus derivados con origen en la Provincia de Jauja, Perú, y que finalice en España, con la venta al consumidor español. Para alcanzar estos objetivos la metodología utilizada es la cadena de valor agroalimentaria, utilizando como herramientas de análisis el análisis DAFO de la cadena de valor de la papa nativa. Las fuentes de información primarias utilizadas proceden en parte del proyecto de cooperación de UPM, “Mejora de la cadena de valor de la patata andina como impulso al desarrollo rural. Caso de tres Comunidades Campesinas en la Provincia de Jauja del Perú”, en el que participó el doctorando, y en parte proceden de la batería de encuestas específicamente diseñadas para los diferentes eslabones de la cadena de valor de la papa nativa. Las fuentes de información secundarias proceden de artículos académicos publicados, de artículos publicados por revistas especializadas del sector y de informes realizados por diferentes instituciones gubernamentales, tanto españolas como peruanas. Las conclusiones de la investigación son las siguientes. La creación de la mancomunidad del Yacus ha beneficiado a los pequeños agricultores. Estos consiguen mejores condiciones de venta y mejores precios para sus productos, lo que repercute en la mejora de sus condiciones de vida. Estas mejoras en las condiciones de venta de los productos se deben a su pertenencia a una cadena de valor de papa nativa que está funcionando de forma eficaz. Las empresas consideradas para constituir la cadena de valor han mostrado interés por formar parte de ella: los campesinos para obtener mejores precios por sus productos y unas mejores condiciones de venta; los distribuidores para asegurarse una calidad determinada de unas variedades fijas de papa nativa; la industria transformadora por disponer de un suministro de producto adecuado al derivado de papa nativa correspondiente, (hojuelas, tunta, etc.); las empresas exportadoras para tener suministro garantizado de los productos que ellos requieren en los volúmenes adecuados. Es una situación ventajosa para todas las empresas participantes. A pesar de trabajar con un producto tradicional, la cadena de valor de la papa nativa presenta innovación en los productos comercializados, tanto en la papa nativa fresca como en sus derivados, en los formatos de los productos, en la red de distribución, en las instituciones peruanas y en el consumidor final. Se percibe una demanda de papa nativa y de sus productos derivados en aquellos países donde existen comunidades de latinoamericanos que han emigrado de sus países de origen. España está entre los países que han acogido a un importante número de personas de origen latinoamericano. A pesar de la fuerte crisis económica sufrida por España, que ha llevado consigo la vuelta a sus países de origen de parte de su comunidad latinoamericana, el tamaño de esta población sigue siendo importante. Esta población demanda productos originarios de sus propios países, y los consumirían de forma frecuente si los precios son adecuados a su capacidad de consumo. El precio de venta de la papa nativa y sus derivados en España es de gran importancia. La importación de estos productos desde Perú hace que este eleve a niveles que le resta competitividad, en especial en la papa fresca. Se aconseja la búsqueda de empresas que puedan adaptar la producción de la papa fresca de forma local, y mantener para los derivados la exportación directa a España. Las preferencias de los consumidores peruanos y españoles en cuanto a formatos y marcas se refieren no son coincidentes. De las encuestas realizadas, se concluye que no puede seguirse la misma estrategia de marketing en ambos países, debiéndose diferenciar los formatos de los paquetes de la papa nativa y de sus derivados en España y en Perú, para así lograr llegar a los consumidores potenciales de ambos países. ABSTRACT At the request of the Peruvian government, the UN General Assembly declared the International Year of the Potato in 2008. Since 2005, the Peruvian government has implemented strategies around the importance of the potato, as the declaration of the 30th of May as the National Day of the Potato. FAO (Food and Agriculture Organization of the United Nations) has declared 2014 as the International Year of Family Farming, with an approach shared by this Ph.D. dissertation about the Peruvian peasant family. The Peruvian government uses value chains as a strategy to promote sustainable development, which has allowed to contribute to the social and economic inclusion of poor farmers in the high Andean regions as those located in the municipal commonwealth of Yacus (MMY) province of Jauja, department of Junín. This strategy, which incorporates small farmers in the high Andean regions, (who have very low income), to the market with profitable production processes, implies a number of changes that should take place, such as changing patterns of traditional production to those products or services that are in demand in the market, or changes in the mentality of the small farmer into a concept of production business. (Fabián, 2013). Moreover, the sustainability of value chains depends on the weakest link, which demands a knowledge of the status of all the links, in order to integrate and strengthen the chain. It is required an adequate transparency to facilitate the flow of information between the various actors. (Briz et al., 2012). Furthermore, the establishment of the value chain should be done carefully, since the effectiveness and the survival of the businesses are increasingly linked to the value chain where the firm is included and to its coordination. (Briz, 2011). In this situation, it becomes important to study the value chain of the native potato, once we establish its features, to be able to determine the feasibility or not of a value chain of this product, which has an impact of the generated wealth in small farms of the high Andean regions, and even the extension of this value chain to Spain. There are studies on native potatoes, made by different universities in several countries and even in more than one continent. However, most studies focus on improving the production of native potato. The originality of the research conducted in this Ph.D. dissertation is the study of the feasibility of commercialization of native potato, by the creation of a value chain that starts in the province of Jauja, Perú, and ends both in Peruvian markets in the region of Lima, and in Spain. The main goal of this research is to improve the economic and social conditions of farming communities in the province of Jauja in Perú, while promoting its technological and industrial development, by the establishment of a value chain of the native potato and derivatives. The specific objectives of the research are the characterization of the links in the value chain of the native potato and its derivatives in the province of Jauja, (Perú) and in Spain, in order to determine the added value; the strengthening of organizations of native potato producers, to commercialize their products and the promotion of enterprise culture; and the development of a chain to market native potato and its derivatives, with its origin in the province of Jauja, (Perú), and its end in Spain, with the sale to the Spanish consumer. In order to achieve these objectives, the used methodology is the agrifood value chain, using as a tool to analysis it the SWOT analysis of the value chain of the native potato. The primary sources of information used in the research come partly from UPM cooperation project, "Improving the value chain of Andean potato as a boost to rural development. Case Three Rural Communities in the Province of Jauja, (Perú)", in which the Ph.D. student was involved, and partly from the surveys, which were specifically designed for the different links of the value chain of the native potato. The secondary sources of information come from academic articles, from articles published by magazines of the industry, and from reports of several government institutions, both Spanish and Peruvian. The conclusions of the research are as follows. The creation of the commonwealth of Yacus has benefited small farmers. They get better sales conditions and better prices for their products, which results in the improvement of their living conditions. These improvements are due to a value chain of native potato which is working effectively. All the firms invited to constitute the value chain have shown interest in being part of it: the farmers to get better prices for their products and better sale conditions; the distributors to ensure a certain quality of fixed varieties of native potato, the processing industry in order to have an adequate supply of product to the corresponding derivative of native potato (chips, “tunta”, etc.); exporting firms to have a guaranteed supply of the products that they require with the right volumes. It's a win-win situation for all participating companies. Despite being a traditional product, the value chain of the native potato presents innovation in marketed products, (both fresh native potato and its derivatives), in the formats of products, in the distribution network, in Peruvian institutions and in relation with the consumer. There is a perceived demand of native potato and its products in countries where communities of Latin Americans have settled down. Spain is among the countries that have received a significant number of people from Latin America. Despite the strong economic crisis suffered by Spain, which has lead to a return to their home countries of part of the Latin American community, the size of this population is still considerable. This population demands products from their own countries, and they frequently consume them if the prices are suitable to their standard of living. The selling price of the native potato and its derivatives in Spain is of great importance. The import of these products from Perú makes the prices rise to levels that reduce competitiveness, especially in fresh native potatoes. It is advised to look for companies which can adapt the fresh potato production in our country, and keep direct export to Spain for the derivatives products. The preferences of Peruvian and Spanish consumers in terms of formats and brands are not the same. The surveys concluded that the same marketing strategy cannot be followed in both countries. Packet formats of native potato and its derivatives should be differentiated in Spain and Perú, in order to reach the potential consumers of both countries.

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The aim of this study was to determine if the soils, waters and plants from the Aliaga dump contained polycyclic aromatic hydrocarbons (PAHs) and their quantification.The results showed that PAHs concentrations in soils are in general higher than the reference levels from the Spanish legislation. Waters and plants contained PAHs but in low concentrations. The possible actions for remediation (photodegradation and bioremediation) seem to be unviable here because of the large volume of materials involved, although its use as an additive for the cement industry and derivatives can be considered. It is proposed that fluorantene in waters, and phenanthrene and benzo[ghi]perilene in soils be considered as pollutants as well as to study the incorporation of PAHs to plants. Key-words: Polycyclic aromatic hydrocarbons, soil, plant and water contamination, fly- ash, power plant. RESUMEN: El objetivo de este estudio fue determinar y cuantificar los hidrocarburos policíclicos aromáticos (PAHs) en los suelos, plantas y aguas de la Escombrera de Aliaga. La concentración de PAHs en las cenizas supera, en general, los valores establecidos en la legislación española.Las aguas y plantas contienen PAHs, aunque en concentraciones bajas. La remoción de los materiales para someterlos a fotodegradación y biorremediación es inviable debido al gran volumen de la escombrera, aunque se plantea su uso como aditivo en la fabricación de productos derivados del cemento. Se propone incluir el fenantreno y benzo[ghi]perileno en la normativa de suelos, así como el naftaleno en la de aguas y la elaboración de una legislación sobre la incorporación de estos compuestos a las plantas.