Publications by authors named "J Cosme"

Article Synopsis
  • This research introduced a new sustainable adsorbent called PF-Aq, made by adding amino groups to palm oil fibers (PF), which enhances its ability to remove phosphate and Cr(VI) ions from water.
  • Experimental techniques confirmed the successful modification of the fibers, showing PF-Aq has a high adsorption capacity, with maximum values of 151.07 mg/g for phosphate and 206.08 mg/g for Cr(VI).
  • The findings indicate PF-Aq is not only effective and recyclable but also cost-efficient, with optimal performance at pH 4.0 and different thermal behaviors during adsorption for the two ions.
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Discrete (DTCs) and continuous time crystals (CTCs) are novel dynamical many-body states, that are characterized by robust self-sustained oscillations, emerging via spontaneous breaking of discrete or continuous time translation symmetry. DTCs are periodically driven systems that oscillate with a subharmonic of the external drive, while CTCs are continuously driven and oscillate with a frequency intrinsic to the system. Here, we explore a phase transition from a continuous time crystal to a discrete time crystal.

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Vespula spp. and Polistes spp. are relevant species in South Europe, with Vespa velutina nigrithorax (VVN) being considered a public health problem.

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Grass and olive pollens have overlapping pollination periods and are common allergens in the Iberian Peninsula. The objective is to determine the sensitization pattern to major Phleum pratense and Olea europaea pollens in the Portuguese population with pollen allergic rhinitis (AR) using molecular allergen diagnosis (MAD). Seasonal AR patients (≥ 12 years), with positive skin prick tests (SPT) to Phleum and Olea were recruited from 16 centers.

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Direct sample introduction thermal desorption (TD) coupled to GC-MS was investigated for the analysis of paraffinic hydrocarbons (HCs) from polluted sediments. TD-GC-MS is sometimes used for analysing paraffinic HCs from atmospheric particles but rarely for their direct desorption from sediments. So, the new TD methodology, applied to sediments, required development, optimization and validation.

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