4 resultados para Paint, Antifouling

em AMS Tesi di Laurea - Alm@DL - Università di Bologna


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I poriferi rappresentano un importante campo di ricerca anche in ambito applicativo in quanto potenzialmente utili come fonte di metaboliti secondari da impiegarsi in ambito clinico (antitumorali, antibiotici, antivirali, ecc.) e industriale (antifouling). I processi di biosilicificazione interessano invece per aspetti legati alle biotecnologie marine. Questo Phylum ha un importante ruolo strutturale e funzionale nell’ecologia dei popolamenti bentonici, in quanto può essere dominante in numerosi habitat e svolgere un ruolo ecologico fondamentale nelle dinamiche degli ecosistemi marini. Per questo, la variazione spaziale e temporale della loro abbondanza può avere effetti considerevoli su altri membri della comunità. Lo studio delle dinamiche di popolazione e del ciclo riproduttivo dei poriferi potrebbe permettere di valutare come i cambiamenti climatici ne influenzino la crescita e la riproduzione e potrebbe quindi fornire una base per lo sviluppo di corrette tecniche di gestione ambientale. La spugna Axinella polypoides è inserita all’interno delle liste di protezione della Convenzione di Berna e di Barcellona, dove sono elencate le specie da proteggere perché minacciate o in pericolo di estinzione. Questa specie, avendo una morfologia eretta, è fortemente minacciata soprattutto da attività antropiche quali pesca e ancoraggi, ma nonostante questo la letteratura relativa ad essa è scarsa, La sua importanza è legata soprattutto al recente utilizzo come modello per numerosi esperimenti. A. polypoides rappresenta, infatti, il più basso livello nella scala evolutiva in cui sono stati rinvenuti meccanismi biochimici cellulari di reazione all’aumento di temperatura (incremento dell’attività ADP-ribosil ciclasica, sintesi di ossido nitrico) tipici degli organismi superiori. Lo scopo di questa tesi è di aumentare le conoscenze sull’ecologia e sulla biologia di questo porifero, al fine di consentire una migliore predisposizione di eventuali piani di tutela. Dallo studio delle colonie effettuato presso l’Isola Gallinara (SV), emerge una dinamica di crescita lenta ed un ciclo riproduttivo estivo, coerentemente con quanto osservato per altre specie mediterranee del genere Axinella. Le analisi istologiche effettuate hanno mostrato variabilità temporale nella densità e nella dimensione di particolari cellule sferulose, che si ipotizza siano collegate a fenomeni di proliferazione cellulare e rigenerazione in seguito a danni. È stata individuata inoltre la presenza di una particolare tipologia cellulare dendritica la cui funzione si ritiene abbia affinità con le funzioni sensoriali di Phyla superiori. Queste osservazioni, e l’evidente vulnerabilità della specie agli impatti antropici, hanno evidenziato la necessità di sviluppare adeguati piani di monitoraggio e di conservazione.

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Nowadays the environmental issues and the climatic change play fundamental roles in the design of urban spaces. Our cities are growing in size, many times only following immediate needs without a long-term vision. Consequently, the sustainable development has become not only an ethical but also a strategic need: we can no longer afford an uncontrolled urban expansion. One serious effect of the territory industrialisation process is the increase of urban air and surfaces temperatures compared to the outlying rural surroundings. This difference in temperature is what constitutes an urban heat island (UHI). The purpose of this study is to provide a clarification on the role of urban surfacing materials in the thermal dynamics of an urban space, resulting in useful indications and advices in mitigating UHI. With this aim, 4 coloured concrete bricks were tested, measuring their emissivity and building up their heat release curves using infrared thermography. Two emissivity evaluation procedures were carried out and subsequently put in comparison. Samples performances were assessed, and the influence of the colour on the thermal behaviour was investigated. In addition, some external pavements were analysed. Albedo and emissivity parameters were evaluated in order to understand their thermal behaviour in different conditions. Surfaces temperatures were recorded in a one-day measurements campaign. ENVI-met software was used to simulate how the tested materials would behave in two typical urban scenarios: a urban canyon and a urban heat basin. Improvements they can carry to the urban microclimate were investigated. Emissivities obtained for the bricks ranged between 0.92 and 0.97, suggesting a limited influence of the colour on this parameter. Nonetheless, white concrete brick showed the best thermal performance, whilst the black one the worst; red and yellow ones performed pretty identical intermediate trends. De facto, colours affected the overall thermal behaviour. Emissivity parameter was measured in the outdoor work, getting (as expected) high values for the asphalts. Albedo measurements, conducted with a sunshine pyranometer, proved the improving effect given by the yellow paint in terms of solar reflection, and the bad influence of haze on the measurement accuracy. ENVI-met simulations gave a demonstration on the effectiveness in thermal improving of some tested materials. In particular, results showed good performances for white bricks and granite in the heat basin scenario, and painted concrete and macadam in the urban canyon scenario. These materials can be considered valuable solutions in UHI mitigation.

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The main goal of this thesis is to report patterns of perceived safety in the context of airport infrastructure, taking the airport of Bologna as reference. Many personal and environmental attributes are investigated to paint the profile of the sensitive passenger and to understand why precise factors of the transit environment are so impactful on the individual. The main analyses are based on a 2014-2015 passengers’ survey, involving almost six thousand of incoming and outgoing passengers. Other reports are used to implement and support the resource. The analysis is carried out by using a combination of Chi-square tests and binary logistic regressions. Findings shows that passengers result to be particularly affected by the perception of airport’s environment (e.g., state and maintenance of facilities, clarity and efficacy of information system, functionality of elevators and escalators), but also by the way how the passenger reaches the airport and the quality of security checks. In relation to such results, several suggestions are provided for the improvement of passenger satisfaction with safety. The attention is then focused on security checkpoints and related operations, described on a theoretical and technical ground. We present an example of how to realize a proper model of the security checks area of Bologna’s airport, with the aim to assess present performances of the system and consequences of potential variations. After a brief introduction to Arena, a widespread simulation software, the existing model is described, pointing out flaws and limitations. Such model is finally updated and changed in order to make it more reliable and more representative of the reality. Different scenarios are tested and results are compared using graphs and tables.

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Owing to their capability of merging the properties of metals and conventional polymers, Conducting Polymers (CPs) are a unique class of carbon-based materials capable of conducting electrical current. A conjugated backbone is the hallmark of CPs, which can readily undergo reversible doping to different extents, thus achieving a wide range of electrical conductivities, while maintaining mechanical flexibility, transparency and high thermal stability. Thanks to these inherent versatility and attracting properties, from their discovery CPs have experienced incessant widespread in a great plethora of research fields, ranging from energy storage to healthcare, also encouraging the spring and growth of new scientific areas with highly innovative content. Nowadays, Bioelectronics stands out as one of the most promising research fields, dealing with the mutual interplay between biology and electronics. Among CPs, the polyelectrolyte complex poly (3,4-ethylenedioxythiophene): poly (styrenesulfonate) (PEDOT:PSS), especially in the form of thin films, has been emphasized as ideal platform for bioelectronic applications. Indeed, in the last two decades PEDOT:PSS has played a key role in the sensing of bioanalytes and living cells interfacing and monitoring. In the present work, development and characterization of two kinds of PEDOT:PSS-based devices for applications in Bioelectronics are discussed in detail. In particular, a low-cost amperometric sensor for the selective detection of Dopamine in a ternary mixture was optimized, taking advantage of the electrocatalytic and antifouling properties that render PEDOT:PSS thin films appealing tools for electrochemical sensing of bioanalytes. Moreover, the potentialities of this material to interact with live cells were explored through the fabrication of a microfluidic trapping device for electrical monitoring of 3D spheroids using an impedance-based approach.