780 resultados para plásticos HDPE
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Resumen de la comunicación presentada en el XIII Congreso Nacional de Ingeniería Química, Madrid, 18-20 noviembre 2010.
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Dissertação para obtenção do grau de Mestre no Instituto Superior de Ciências da Saúde Egas Moniz
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As implicações ambientais dos plásticos convencionais, produzidos através de combustíveis fósseis, não permitem a sua utilização de forma sustentável pela sociedade devido aos seus problemas de degradabilidade e à sua dependência de matérias-primas não renováveis. Surgem então os polihidroxialcanoatos (PHA) como uma alternativa ambientalmente sustentável, já que conseguem reproduzir grande parte das aplicações dos plásticos ditos normais, tendo as grandes vantagens de serem biodegradáveis e produzidos a partir de uma fonte de carbono renovável. Mais recentemente, de forma a tornar a produção do PHA mais sustentável, tem-se desenvolvido o conceito de associar a produção destes polímeros ao tratamento de efluentes líquidos através do processo de lamas ativadas. Apesar destas vantagens todo o processo que envolve a produção do PHA é ainda dispendioso. Esta dissertação insere-se na estratégia de tentar minorar esses custos. Uma das formas de o fazer será na otimização de técnicas de quantificação do PHA em culturas mistas. Neste trabalho o principal objetivo reside na avaliação da capacidade da metodologia de análise de imagem, acoplada a microscopia de fluorescência, como método de quantificação de PHA. Pretende-se também explorar a produção de PHA a partir da simulação de um sistema de tratamento de águas residuais implementado num reator descontínuo sequencial (SBR) em regimes cíclicos de feast/famine, aliando assim a função de tratamento de efluentes líquidos com a produção de um produto de valor acrescentado como é o PHA. Deste modo, foi montada uma instalação com um sistema de lamas ativadas num SBR cujo principal objetivo era produzir PHA. Este objetivo de produzir PHA através do regime de alimentação dinâmica aeróbia com uma alimentação com acetato como fonte de carbono, e sem controlo do pH foi conseguido, atingindo-se um máximo de concentração mássica de 0,37 mg PHA/mg SST e de concentração volumétrica de 1785 mg PHA/L. Em relação à capacidade de tratamento, comprovou-se a adequabilidade do sistema utilizado para a remoção da carga orgânica devido a uma elevada captação de nutrientes do afluente pela biomassa. Foram encontradas algumas limitações na metodologia de análise de imagem ao nível da transformação da bidimensionalidade da área projetada dos grânulos de PHA nas imagens para a sua tridimensionalidade real, na gama de concentração de PHA na qual a metodologia é válida e na amostragem relativamente curta. Contudo, foi possível comprovar a potencialidade deste método obtendo-se um R2 de 0,80 para o modelo de previsão da concentração mássica de PHA. Deste modo, pode-se concluir que esta é uma metodologia promissora para quantificar PHA em amostras de licor misto.
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O presente trabalho tem por objetivo verificar a perspectiva de possível substituição do plástico oriundo dos combustíveis fósseis não renováveis e esgotáveis pelo Plástico Verde, fabricado a partir do etanol de cana-de-açúcar, recurso renovável. O estudo consiste em uma pesquisa exploratória com abordagem qualitativa, realizada mediante análise de artigos técnicos, informações disponíveis no site da empresa Braskem e entrevistas com atores empresariais envolvidos com o tema. Como um dos resultados da análise, a substituição tende a se tornar realidade, mas a característica de o Plástico Verde não ser biodegradável foi apontado pelos respondentes como um desafio a ser resolvido. A maioria dos respondentes afirma que, não somente o Plástico Verde, mas todos os plásticos poderiam ter o aspecto da reciclagem melhor explorado, o que implica investimento em educação e em políticas públicas. As empresas percebem a utilização do Plástico Verde como um diferencial mercadológico e uma forma de colaboração com o meio ambiente, haja vista ele ser fabricado com 100% de fontes renováveis. Os resultados da pesquisa indicam que a melhoria da eficiência das plantações e de políticas de reciclagem tornam-se fundamentais para o sucesso deste processo, já que há demanda por diversos setores da economia, que começam a utilizá-lo em ampla escala. Segundo a maioria dos respondentes, o Plástico Verde originado da cana-de-açúcar alcançou relevante capacidade inovativa para mitigar a extração de petróleo.
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Estudos em ambiente laboral acerca do comportamento humano e saúde no trabalho, bem como a melhor forma de se aplicar as competências e habilidades do trabalhador, vêm ganhando maior corpo devido à crescente busca por melhores resultados organizacionais, ao aumento da competitividade no mercado e à necessidade empresarial de atingir melhor desempenho de suas equipes. Gestores procuram por recursos e inovações a fim de tornar possível o alcance das metas organizacionais. Empregados mais capacitados, satisfeitos e envolvidos com seu trabalho são também aqueles que têm maior comprometimento afetivo com a organização. Para a empresa, isto pode significar um aumento da produtividade, o rebaixamento do número de absenteísmo e turnover. A dimensão saúde no trabalho ganha relevância porque bem-estar no trabalho significa também empregado mais feliz, com menor probabilidade de adoecimento físico, psíquico ou moral, reduzindo custos relativos à restituição da saúde do trabalhador. Por outro lado, estudo realizado sobre a inteligência emocional em gestores sugere que pessoas com alto nível deste tipo de inteligência são capazes de ter relacionamentos mais profundos e constituir uma rede social mais segura, ajudar os outros de seu grupo, bem como desenvolver uma liderança onde se possa construir uma equipe coesa e uma comunicação mais efetiva com os outros e levar a cabo planos estratégicos empresariais com mais eficiência. Este estudo teve como objetivo geral analisar as relações entre as habilidades da inteligência emocional e as dimensões de bem-estar no trabalho. A pesquisa foi realizada em uma empresa do setor de plásticos e metalurgia, em uma amostra constituída por 386 participantes dos sexos masculino e feminino, com faixa etária entre 18 e 58 anos. Foi utilizado para a coleta de dados um questionário composto de quatro escalas que mediram os três componentes de bem-estar no trabalho e as habilidades da inteligência emocional. Os resultados do estudo revelaram que apenas três habilidades da inteligência emocional tiveram correlações significativas com as dimensões de bem-estar no trabalho: empatia, sociabilidade e automotivação. Foram observadas correlações mais significativas entre sociabilidade e bem-estar no trabalho. Portanto, o bem-estar no trabalho parece associar-se às habilidades intelectuais e emocionais dos trabalhadores de serem empáticos, manterem-se automotivados e, especialmente, de estabelecerem e conservarem suas amizades (sociabilidade)
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We investigate the gradual changes of the microstructure of two blends of high-density polyethylene (HDPE) and polyamide 6 (PA6) at opposite composition filled with increasing amounts of an organomodified clay. The filler locates preferentially inside the polyamide phase, bringing about radical alterations in the micron-scale arrangement of the polymer phases. When the host polyamide represents the major constituent, a sudden reduction of the average sizes of the polyethylene droplets was observed upon addition of even low amounts of organoclay. A morphology refinement was also noticed at low filler contents when the particles distributes inside the minor phase. In this case, however, keep increasing the organoclay content eventually results in a high degree of PA6 phase continuity. Rheological analyses reveal that the filler loading at which the polyamide assembles in a continuous network corresponds to the critical threshold for its rheological transition from a liquid- to a gel-like behaviour, which is indicative of the structuring of the filler inside the host PA6. On the basis of this finding, a schematic mechanism is proposed in which the role of the filler in driving the space arrangement of the polymer phases is discussed. Finally, we show that the synergism between the reinforcing action of the filler and its ability to affect the blend microstructure can be exploited in order to enhance relevant technological properties of the materials, such as their high temperature structural integrity.
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The effect of organically modified clay on the morphology, rheology and mechanical properties of high-density polyethylene (HDPE) and polyamide 6 (PA6) blends (HDPE/PA6 = 75/25 parts) is studied. Virgin and filled blends were prepared by melt compounding the constituents using a twin-screw extruder. The influence of the organoclay on the morphology of the hybrid was deeply investigated by means of wide-angle X-ray diffractometry, transmission and scanning electron microscopies and quantitative extraction experiments. It has been found that the organoclay exclusively places inside the more hydrophilic polyamide phase during the melt compounding. The extrusion process promotes the formation of highly elongated and separated organoclay-rich PA6 domains. Despite its low volume fraction, the filled minor phase eventually merges once the extruded pellets are melted again, giving rise to a co-continuous microstructure. Remarkably, such a morphology persists for long time in the melt state. A possible compatibilizing action related to the organoclay has been investigated by comparing the morphology of the hybrid blend with that of a blend compatibilized using an ethylene–acrylic acid (EAA) copolymer as a compatibilizer precursor. The former remains phase separated, indicating that the filler does not promote the enhancement of the interfacial adhesion. The macroscopic properties of the hybrid blend were interpreted in the light of its morphology. The melt state dynamics of the materials were probed by means of linear viscoelastic measurements. Many peculiar rheological features of polymer-layered silicate nanocomposites based on single polymer matrix were detected for the hybrid blend. The results have been interpreted proposing the existence of two distinct populations of dynamical species: HDPE not interacting with the filler, and a slower species, constituted by the organoclay-rich polyamide phase, which slackened dynamics stabilize the morphology in the melt state. In the solid state, both the reinforcement effect of the filler and the co-continuous microstructure promote the enhancement of the tensile modulus. Our results demonstrate that adding nanoparticles to polymer blends allows tailoring the final properties of the hybrid, potentially leading to high-performance materials which combine the advantages of polymer blends and the merits of polymer nanocomposites.
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Here we report on a potential catalytic process for efficient clean-up of plastic pollution in waters, such as the Great Pacific Garbage Patch (CPGP). Detailed catalytic mechanisms of RuO2 during supercritical water gasification of common polyolefin plastics including low-density polyethylene (LDPE), high-density polyethylene (HDPE), polypropylene (PP) and polystyrene (PP), have been investigated in a batch reactor at 450 °C, 60 min. All four plastics gave very high carbon gasification efficiencies (CGE) and hydrogen gasification efficiencies (HGE). Methane was the highest gas component, with a yield of up to 37 mol kg−1LDPE using the 20 wt% RuO2 catalyst. Evaluation of the gas yields, CGE and HGE revealed that the conversion of PS involved thermal degradation, steam reforming and methanation; whereas hydrogenolysis was a possible additional mechanism during the conversion of aliphatic plastics. The process has the benefits of producing a clean-pressurized methane-rich fuel gas as well as cleaning up hydrocarbons-polluted waters.
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Surfactants are versatile organic compounds that have, in a single molecule, double chemical affinity. The surfactant molecule is composed by a hy drophobic tail group, a hydrocarbon chain (linear, branched, or mixed), and by a hydrophilic head group, which contains polar groups that makes it able to be applied in the organophilization process of natural clays. Microemulsions are microheterogeneous b lends composed by: a surfactant, an oily phase (non - polar solvent), an aqueous phase, and, sometimes, a co - surfactant (short - chain alcohol). They are systems with thermodynamic stability, transparent, and have high solubility power. Vermiculite is a clay m ineral with an expandable crystalline structure that has high cation exchange capacity. In this work vermiculite was used to obtain organoclays. The ionic surfactants dodecyl ammonium chlori de (DDAC) and cetyltrimethylammonium bromide (C 16 TAB) were used in the organophilization process. They were used as surfactant aqueous solutions and, for DDAC, as a microemulsion system. The organoclays were used to promote the separation of binary mixtures of xylene isomers (ortho - and meta - xylene). Dif ferent analytical techniques were used to characterize microemulsion systems and also the nanoclays. It was produced a water - rich microemulsion system with 0.92 nm droplet average diameter. The vermiculite used in this work has a cationic exchange capacity of 172 meq/100g and magnesium as main cation (24.25%). The basal spacing of natural vermiculite and organo - vermiculites were obtained by X - ray Diffraction technique. The basal spacing was 1.48nm for natural vermiculite, 4.01nm for CTAB - vermiculite (CTAB 4 ) , and 3.03nm for DDAC - vermiculite (DDAC M1A), that proves the intercalation process. Separation tests were carried out in glass columns using three binary mixtures of xylene (ortho - xylene and meta - xylene). The results showed that the organovermiculite pre sented an enhanced chemical affinity by the mixture of hydrocarbons, when compared with the natural vermiculite, and also its preference by ortho - xylene. A factorial experimental design 2 2 with triplicate at the central point was used to optimize the xylen e separation process. The experimental design revealed that the initial concentration of isomers in the mixture and the mass of organovermiculite were the significant factors for an improved separation of isomers. In the experiments carried out using a bin ary mixture of ortho - xylene and meta - xylene (2:1), after its percolating through the organovermiculite bed (DDAC M1), it was observed the preference of the organoclay by the ortho - xylene isomer, which was retained in greater quantity than the meta - xylene o ne. At the end of the treatment, it was obtained a final concentration in meta - xylene of 47.52%.
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The improved performance of hydraulic binders, the base of Portland cement, consists in the careful selection and application of materials that promote greater durability and reduced maintenance costs There is a wide variety of chemical additives used in Portland cement slurries for cementing oil wells. These are designed to work in temperatures below 0 ° C (frozen areas of land) to 300 ° C (thermal recovery wells and geothermal); pressure ranges near ambient pressure (in shallow wells) to greater than 200 MPa (in deep wells). Thus, additives make possible the adaptation of the cement slurries for application under various conditions. Among the materials used in Portland cement slurry, for oil wells, the materials with nanometer scale have been applied with good results. The nanossílica, formed by a dispersion of SiO2 particles, in the nanometer scale, when used in cement systems improves the plastic characteristics and mechanical properties of the hardened material. This dispersion is used commercially as filler material, modifier of rheological properties and / or in recovery processes construction. It is also used in many product formulations such as paints, plastics, synthetic rubbers, adhesives, sealants and insulating materials Based on the above, this study aims to evaluate the performance of nanossílica as extender additive and improver of the performance of cement slurries subjected to low temperatures (5 ° C ± 3 ° C) for application to early stages of marine oil wells. Cement slurries were formulated, with densities 11.0;12.0 and 13.0 ppg, and concentrations of 0; 0.5, 1.0 and 1.5%. The cement slurries were subjected to cold temperatures (5 ° C ± 3 ° C), and its evaluation performed by tests rheological stability, free water and compressive strength in accordance with the procedures set by API SPEC 10A. Thermal characterization tests (TG / DTA) and crystallographic (XRD) were also performed. The use of nanossílica promoted reduction of 30% of the volume of free water and increased compression resistance value of 54.2% with respect to the default cement slurry. Therefore, nanossílica presented as a promising material for use in cement slurries used in the early stages of low-temperature oil wells
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The evaluation of seed vigor is an important factor for detection of lots of high quality seeds, so that development of procedures to evaluate the physiological potential has been an important tool in quality control programs seeds. In this sense the study aimed to adapt the methodologies of accelerated aging, electrical conductivity and potassium leaching to evaluate Moringa oleifera seed vigor LAM.. Therefore, four lots of moringa seeds were subjected to the germination tests, seedling emergence, speed of emergence index, emergence first count, length and dry mass of seedlings and cold test for their physiological characterization, in addition to accelerated aging, electrical conductivity and potassium leaching. The experimental design was completely randomized with four replications of 50 seeds and the means compared by Tukey test at 5% probability. For accelerated aging the periods were studied aging 12, 24 and 72 hours at 40, 42 and 45°C. For the electrical conductivity test was used to a temperature of 25°C for periods of 4, 8, 12, 16 and 24 hours of immersion in 75 to 125 mL of distilled water, using 25 to 50 seeds, and for potassium leaching test samples were used 25 to 50 seeds, placed in plastic cups containing 70 and 100 mL of distilled water at 25°C for periods of 1, 2, 3, 4, 5 and 6 hours. From the results obtained, it can be inferred that the methods best fit for the accelerated aging test Moringa seeds were a temperature of 40°C for 12 to 72 hours, 42°C 72 hours 45°C 24 hours . In the electrical conductivity test Moringa seeds, the combination of 50 seeds in 75 mL distilled water for a period of immersion of 4 hours and 50 seeds in 125 mL of 4 hours were efficient for the differentiation of lots of Moringa seeds as to vigor and for potassium leaching test moringa seeds, the combination of 50 seeds in 100mL of distilled water allowed the separation of lots of four levels of vigor, at 2 hours of immersion, showing promise in evaluate the quality of moringa seeds.
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The evaluation of seed vigor is an important factor for detection of lots of high quality seeds, so that development of procedures to evaluate the physiological potential has been an important tool in quality control programs seeds. In this sense the study aimed to adapt the methodologies of accelerated aging, electrical conductivity and potassium leaching to evaluate Moringa oleifera seed vigor LAM.. Therefore, four lots of moringa seeds were subjected to the germination tests, seedling emergence, speed of emergence index, emergence first count, length and dry mass of seedlings and cold test for their physiological characterization, in addition to accelerated aging, electrical conductivity and potassium leaching. The experimental design was completely randomized with four replications of 50 seeds and the means compared by Tukey test at 5% probability. For accelerated aging the periods were studied aging 12, 24 and 72 hours at 40, 42 and 45°C. For the electrical conductivity test was used to a temperature of 25°C for periods of 4, 8, 12, 16 and 24 hours of immersion in 75 to 125 mL of distilled water, using 25 to 50 seeds, and for potassium leaching test samples were used 25 to 50 seeds, placed in plastic cups containing 70 and 100 mL of distilled water at 25°C for periods of 1, 2, 3, 4, 5 and 6 hours. From the results obtained, it can be inferred that the methods best fit for the accelerated aging test Moringa seeds were a temperature of 40°C for 12 to 72 hours, 42°C 72 hours 45°C 24 hours . In the electrical conductivity test Moringa seeds, the combination of 50 seeds in 75 mL distilled water for a period of immersion of 4 hours and 50 seeds in 125 mL of 4 hours were efficient for the differentiation of lots of Moringa seeds as to vigor and for potassium leaching test moringa seeds, the combination of 50 seeds in 100mL of distilled water allowed the separation of lots of four levels of vigor, at 2 hours of immersion, showing promise in evaluate the quality of moringa seeds.
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Brazil is a country in development, rich in natural resources. In order to grow sustainably, it is necessary to Brazil to preserve its environment, which is an expressive challenge, especially to industries, such as those producing ceramic materials. This study was developed using Porcelain Tile Polishing Residue (RPP) in blends with soil to build compacted fills. This residue is a slurry generated during the polishing process of porcelain tiles and contains powdery material from the polished tile, the abrasives used during the process and cooling water. The RPP was collected from a private company located in Conde/PB and it was mixed with a sandy-clayey soil, to build the fills. Laboratorial tests were conducted with pure soil, pure RPP and blends in proportions of 5%, 10%, 15% and 20% of RPP in addition to the dry mass of pure soil. The Chemical and Physical Characterization tests performed were: specific solid weight, grain size distribution, laser analysis of grain size distribution, Atterberg limits, X ray fluorescence, X ray diffraction, scanning electron microscopy and soil compaction,. The materials and blends were also compacted and direct shear tests and plate load tests were performed. Plate load tests were conducted using a circular plate with 30 cm diameter, on specimens of pure soil and 5% blend, compacted in a metallic box inside the Soil Mechanics Laboratory of the Federal University of Rio Grande do Norte, Brazil. Both mechanical tests performed were conducted under inundated conditions, willing to reduce the influence of soil suction. An evaluation of the results of the tests performed shows that RPP is a fine material, with grain size distribution smaller than 0,015mm, composed mainly of silica and alumina, and particles in angular shape. The soil was characterized as a clayey sand, geologically known as a lateritic soil, with high percentages of alumina and iron oxide, and particles with rounded shape. Both the Soil and the blends presented low plasticity, while the residue showed a medium plasticity. Direct shear tests showed that the addition of RPP did not cause major changes into blends’ friction angle data, however, it was possible to note that, for the proportions studied, that is a tendency of obtain lower shear stresses for higher percentages of RPP in the blends. Both pure soil and 5% mixture showed a punching disruption for the Plate load test. For this same test, the allowable stress for 5% mixture was 44% higher than the pure soil, and smaller vertical settlement results for all stresses.
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Brazil is a country in development, rich in natural resources. In order to grow sustainably, it is necessary to Brazil to preserve its environment, which is an expressive challenge, especially to industries, such as those producing ceramic materials. This study was developed using Porcelain Tile Polishing Residue (RPP) in blends with soil to build compacted fills. This residue is a slurry generated during the polishing process of porcelain tiles and contains powdery material from the polished tile, the abrasives used during the process and cooling water. The RPP was collected from a private company located in Conde/PB and it was mixed with a sandy-clayey soil, to build the fills. Laboratorial tests were conducted with pure soil, pure RPP and blends in proportions of 5%, 10%, 15% and 20% of RPP in addition to the dry mass of pure soil. The Chemical and Physical Characterization tests performed were: specific solid weight, grain size distribution, laser analysis of grain size distribution, Atterberg limits, X ray fluorescence, X ray diffraction, scanning electron microscopy and soil compaction,. The materials and blends were also compacted and direct shear tests and plate load tests were performed. Plate load tests were conducted using a circular plate with 30 cm diameter, on specimens of pure soil and 5% blend, compacted in a metallic box inside the Soil Mechanics Laboratory of the Federal University of Rio Grande do Norte, Brazil. Both mechanical tests performed were conducted under inundated conditions, willing to reduce the influence of soil suction. An evaluation of the results of the tests performed shows that RPP is a fine material, with grain size distribution smaller than 0,015mm, composed mainly of silica and alumina, and particles in angular shape. The soil was characterized as a clayey sand, geologically known as a lateritic soil, with high percentages of alumina and iron oxide, and particles with rounded shape. Both the Soil and the blends presented low plasticity, while the residue showed a medium plasticity. Direct shear tests showed that the addition of RPP did not cause major changes into blends’ friction angle data, however, it was possible to note that, for the proportions studied, that is a tendency of obtain lower shear stresses for higher percentages of RPP in the blends. Both pure soil and 5% mixture showed a punching disruption for the Plate load test. For this same test, the allowable stress for 5% mixture was 44% higher than the pure soil, and smaller vertical settlement results for all stresses.
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Como término artístico, denominamos vaciado del natural al procedimiento por medio del cual se obtiene, a través de un proceso de moldes, una copia tridimensional precisa en cuanto a volumen y a texturas de cualquier elemento de la naturaleza, sea vivo o inerte, orgánico o inorgánico. El término también es utilizado para definir el producto resultante de la práctica de este procedimiento. Si aplicamos esta definición en sentido estricto, no podría considerarse vaciado del natural la reproducción por medio de moldes de elementos manufacturados por el hombre. No obstante, en la reproducción de elementos artificiales o manufacturados, se considera aplicable el término vaciado del natural a la reproducción de objetos que han sido creados para una función distinta de la artística que se pretende con su vaciado, como pueda ser una silla o una guitarra. Este procedimiento se ha aplicado habitualmente en la creación escultórica y a este ámbito se dirige el enfoque de la investigación. No obstante, por diversas causas, el procedimiento ha sido muy útil a otras áreas de conocimiento como la arqueología o la medicina y la evolución de su aplicación ha estado intrínsecamente unida a los creadores plásticos con los que se ha producido una estrecha colaboración. Esta se ha producido en las dos direcciones, acudiendo las ciencias que así lo requerían a los artistas como conocedores de la técnica y los procesos e incorporando los artistas a su trabajo las innovaciones desarrolladas por otras áreas e inspirándose en sus resultados. Esta estrecha colaboración hace que en la investigación se traten aspectos que atañen a otras áreas de conocimiento y se analicen sus conexiones con el arte. El objetivo de la presente investigación es desarrollar un estudio desde los posibles orígenes de este procedimiento y analizar su utilización a lo largo de la historia en el entorno socio-cultural de la civilización occidental. Para ello se acude a la documentación escrita que revela y analiza la utilización del vaciado del natural y se investigan las pruebas físicas que la demuestran (moldes, positivos, huellas del natural)...