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        Spirulina sp. biomass dried/disrupted by different methods and their application in biofilms production

        Ana P. Q. Larrosa,Alisson S. Camara,Jaqueline M. Moura,Luiz A. A. Pinto 한국식품과학회 2018 Food Science and Biotechnology Vol.27 No.6

        Arthrospira Spirulina biomass is a source of intracellular compounds with great commercial interest, such as phycocyanin and phenolic compounds. In this work, different cell disruption methods of the microalgae biomass dried in spouted bed and in conventional tray were performed, aiming lead to the better extraction yields of these compounds. The samples of both drying techniques with the most suitable cell disruption were used to biofilms production. FTIR, DSC, and SEM for all samples were performed. The samples dried in spouted bed with cell disruption by milling and by microwave showed the best results for the powder products, with phycocyanin contents of 75.0 and 85.4 mg g-1, and total phenolic compounds of 41.6 and 41.9 mg g-1, respectively. However, the tray drying/milling produced the biofilms with the best characteristics (tensile strength of 3.69 MPa and water vapor permeability of 1.67 9 10-11 g m s-1 m-2 Pa-1) and the highest thermal stability.

      • Blunt defect assessment in the framework of the failure assessment diagram

        Han, J.J.,Larrosa, N.,Kima, Y.J.,Ainsworth, R.A. Applied Science Publishers ; Elsevier Science Ltd 2016 The International journal of pressure vessels and Vol.146 No.-

        <P>In order to reduce over-conservatism in fitness-for-service assessment procedures, experimental evidence and recent analytical developments recognise the importance of considering the actual shape of non-sharp flaws and/or the real geometric constraint conditions at the crack tip. This paper addresses the effect of blunt defects on the structural integrity assessment of reactor pressure vessel (RPV) and pipeline steels. Parametric studies for compact tension specimens with various notch root radii are performed using finite element analysis. The notch fracture toughness, the resistance to the onset of ductile cracking and the J-integral, quantifying the notch driving force, are evaluated. A stress-modified fracture strain model is used as a virtual testing method. The results are analyzed in the framework of the failure assessment diagram (FAD), showing that the existing shape of the FAD is also suitable for assessments of blunt defects and how the concepts introduced can be used to reduce the conservatism in defect assessment, define margins on failure and indicate when plastic collapse is the dominant failure mechanism. (C) 2016 Elsevier Ltd. All rights reserved.</P>

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