4 resultados para Power to decide process

em RUN (Repositório da Universidade Nova de Lisboa) - FCT (Faculdade de Cienecias e Technologia), Universidade Nova de Lisboa (UNL), Portugal


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RESUMO - O decisor hospitalar tem como função decidir os recursos de uma organização de saúde, sejam estes financeiros, materiais ou humanos, sendo decisivo o conhecimento e informação que o apoiem na aplicabilidade nas tomadas de decisão e na solução dos problemas. As tomadas de decisão suportam-se em modelos reproduzidos pelos decisores, em processos, modelos, e em princípios, que podem ou não assumir intuição, objetividade, racionalidade e ética, bem como de técnicas várias que podem ser limitativas ou condicionadas, por força de fatores vários, como: a falta de informação inerente de uma multidisciplinaridade do processo; de condicionalismos organizacionais, internos ou externos, associados à envolvente e cultura organizacional e influências políticas e macroeconómicas; ao fator tempo; a tecnologia; a estrutura e desenho organizacional; a autoridade/poder e a autonomia para decidir; a liderança, e do estatuto jurídico que o hospital possui. Este último ponto será esmiuçado, mais profundamente, neste estudo. Iremos, através do estudo, compreender se os elementos componentes das decisões tomadas nos hospitais, são ou não adaptadas em consonância com diferentes políticas de governação hospitalar, em contextos e dinâmicas organizacionais diferenciadas, por diferentes Estatutos Jurídicos Hospitalares - EPE, SPA, PPP e Privados. Foi realizado um estudo de caráter exploratório, descritivo-correlacional e transversal, baseou-se num questionário aplicado a decisores hospitalares, incidindo nos dois vetores centrais do estudo, na tomada de decisão e no estatuto jurídico hospitalar. A decisão é então, um valiosíssimo veículo na persecução das estratégias e planos formulados pelo hospital, esperando-se destes produzir consequentes resultados eficientes, eficazes e efetivos na sua aplicação.

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The purpose of the following study is to analyze the relevance of the principle of confidentiality concerning mediation on civil and commercial matters developed in Portugal. We will, essentially, try to determine just how pivotal is this principle and how it affects the effectiveness of that method of alternative dispute resolution. We believe it is fundamental to understand the true extent of this principle and its goals, emphasizing the protection given to those who decide to resort to mediation and its impact on this process. For this dissertation, we have based our analysis on the interpretation of the set rules assembled by Law nr 29/2013, April 19th, while combining it with data gathered from other laws and regulations that had also addressed mediation. Furthermore, given the fact that this subject has been regulated by Directive 2008/52/EC, we deem pertinent to include references to other European mediation regulations, namely from Germany, Spain and France. With this study, we have established that, even though the Portuguese mediation law is based on a European Directive, we have determined a more restrictive regulation for the principle of confidentiality. We have concluded that the rules regarding this principle try to preserve, above all, the trust and honesty established during the course of the mediation, while restricting the possibility of using the information disclosed during these sessions on other cases. Additionally, we believe confidentiality is such a distinctive and relevant feature that its legal framework leads us to deem it as a true obstacle to the parties’ private autonomy and their power to determine how the mediation should be carried out.

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Dissertation presented to obtain a Ph.D. degree in Engineering and Technology Sciences, Biotechnology at the Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa

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Pharmaceuticals and personal care products (PPCPs) are widely used on a daily basis. After their usage they reach the wastewater treatment plants (WWTPs). These compounds have different physico-chemical characteristics, which makes them difficult to completely remove in the WWTPs, througth conventional treatments. Currently, there is no legislation regarding PPCPs thresholds in effluent discharge. But, even at vestigial concentrations, these compounds enclose environmental risks due to, e.g., endocrine disruption potential. There is a need of alternative techniques for their removal in WWTPs. The main goal of this work was to assess the use of electrodialytic (ED) process to remove PPCPs from the effluent to be discharged. A two-compartment ED cell was used testing (i) the effluent position in the cell (anode and cathode compartment); (ii) the use of anion (AEM) and cation exchange membrane (CEM); (iii) the treatment period (6, 12 and 24 hours); (iv) effluent recirculation and current steps; (v) the feasibility of sequential treatments. Phosphorus (P) removal from effluent and energetic costs associated to the process were also evaluated. Five PPCPs were studied – caffeine (CAF), bisphenol A (BPA), 17 β-estradiol (E2), ethinyl estradiol (EE2) and oxybenzone (MBPh). The ED process showed to be effective in the removal when effluent is in the anode compartment. Oxidation is suggested to be the main removal process, which was between 88 and 96%, for all the compounds, in 6 hours. Nevertheless, the presence of intermediates and/or by-products was also observed in some cases. Effluent recirculation should have a retention time in the ED cell big enough to promote removal whereas the current steps (effluent in anode compartment) slightly increased removal efficiencies (higher than 80% for all PPCPs). The sequential set of ED treatment (effluent in anode compartment) showed to be effective during both periods with a removal percentage between 80 and 95% and 73 to 88% in the case of AEM and CEM, respectively. Again, the main removal process is strongly suggested to be oxidation in the anode compartment. However, there was an increase of BOD5 and COD, which might be explained by effluent spiking, these parameters limiting the effluent discharge. From these treatments, the use of AEM, enhanced the P removal from effluent to minimize risk of eutrophication. Energetic costs of the best set-up (6 hours) are approximately 0,8€/m3 of wastewater, a value considered low, attending to the prices of other treatment processes.