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Navegando por Data de Publicação, começando com "2024-09-26"

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    “Quem fala que não leva o trabalho pra casa ‘tá’ mentindo”: o processo de subjetivação das/os policiais penais
    (Universidade Federal de São Carlos, 2024-09-26) Araújo, Isabela Cristina Alves de; Ribeiro, Ludmila Mendonça Lopes; https://lattes.cnpq.br/3513195789991271; https://orcid.org/0000-0003-4304-2254; Sinhoretto, Jacqueline; https://lattes.cnpq.br/7743699562476490; https://orcid.org/0000-0002-8718-779X; https://lattes.cnpq.br/1251611779076821; https://orcid.org/0000-0002-2526-4825
    This thesis seeks to understand how the process of subjectivation of male and female prison officers occurs based on their work in correctional institutions, using the concept of “prisonization” developed by Clemmer as a theoretical basis. In addition, the work seeks to uncover whether there are differences in the perceptions of women and men. In other words, the aim is to articulate gender and the construction of a prisonized subjectivity. For that purpose, a mixed-methods methodology was employed. From a qualitative perspective, 57 interviews were conducted with prison officers based in the Metropolitan Region of Belo Horizonte, where 22 were women and 35 were men. From a quantitative perspective, 91 structured questionnaires were answered, 53 by male prison officer and 38 by female prison officer. The analyses indicated that custodial techniques are transformed into a self-techniques, in which the officers guide their conduct both inside and outside the prison. A prisonized subjectivity is the construction and adoption of the prison culture that is supported by distrust, fear, violence, hostility, hyper-vigilance, valorization of the performances of masculinity.
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    Remoção de calor e controle de temperatura da fermentação alcoólica extrativa empregando CO₂
    (Universidade Federal de São Carlos, 2024-09-26) Campos, Brenda Gomes; Badino Júnior, Alberto Colli; https://lattes.cnpq.br/6244428434217018; https://orcid.org/0000-0001-8350-9846; Cruz, Antonio José Gonçalves da; https://lattes.cnpq.br/1812806190521028; https://orcid.org/0000-0001-6830-9512; https://lattes.cnpq.br/2450752404711741; https://orcid.org/0000-0001-8317-9103
    Brazil is the world’s largest producer of sugarcane ethanol. However, alcoholic fermentation still faces significant challenges, such as the inhibitory effect of ethanol and the difficulty in temperature control. Extractive fermentation with carbon dioxide (CO₂) stripping has shown promise, as it allows for the use of more concentrated sugar musts, resulting in a higher total ethanol concentration. This process also facilitates the removal of heat generated by the yeasts. In this context, the present work proposes an innovative approach by investigating temperature control through the manipulation of CO₂ volumetric flow rates in extractive fed-batch fermentations. A mathematical model of the process was developed, and simulations were performed to identify ideal flow rate values that would maintain a constant broth fermentation temperature throughout the process. The following control strategies were investigated: 1) Feedback control using an on/off controller in closed loop, adjusting the CO₂ flow rate to maintain fermentation temperature at 34 °C; 2) Optimization of CO₂ volumetric flow rates (one flow rate per subinterval), by dividing the stripping interval into different subintervals (1, 2, 4, 8, 16, and 32), in simulated fermentations at temperatures of 30, 32, and 34 °C; and 3) Optimization of CO₂ volumetric flow rates inspired by model predictive control. Experimental results confirmed the effectiveness of the proposed strategies. In the first strategy, the temperature was maintained close to the desired value (34 °C) using a constant CO₂ flow rate of 12 L/min. In the second strategy, the temperature deviation was 0.5 °C, using eight optimal CO₂ flow rates. In the third strategy, the temperature was maintained at 35 °C with a deviation of less than 1 °C, employing 84 CO₂ flow rates values. This final strategy resulted in the lowest total CO₂ amount, with a reduction of approximately 14.7% compared to the others. The approach demonstrated that the use of CO₂ is effective in removing heat generated during the process and in temperature control, overcoming one of the limitations of fermentation, especially in units located in hot climates. Additionally, this approach may reduce or even eliminate the need for water for cooling fermentation vats.
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