Publications by authors named "K Atmatzidis"

Nano-enhanced dialytic fluid purification is an evolution of biomedical dialysis that has been proposed as a novel method for applying nanomaterials in water treatment. Using nanosized hexagonal birnessite (δ-MnO) in a simplified dialytic system, we demonstrate herein an almost complete removal (98%) of Pb(II) within 3 h of treatment while monitoring environmental variables pH and Eh (redox potential). A mathematical model of the purification process is constructed in COMSOL Multiphysics to demonstrate how nanoadsorption using free-flowing nanoparticles in a dialytic system can be studied theoretically using computational fluid dynamics (CFD).

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The use of nanomaterials has transformed fields such as medicine and electronics. However, aggregation of nanomaterials in aqueous solutions, difficult recovery of spent nano-adsorbents from reactors, and a tremendous pressure loss caused by nano-adsorbents in adsorption columns have prevented the wide-scale use of nano-adsorbents in industrial applications for water purification. An over-reliance on traditional adsorption media for fluid purification practices has slowed innovation in this field.

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Title I of the Americans With Disabilities Act prohibits discrimination in employment; however, 26 years later, employment rates for persons with disabilities hover at 34%. This systematic review investigates the effectiveness of evidence-based interventions to increase employment for people with various disabilities. Forty-six articles met the inclusion criteria for evidence-based interventions.

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A new efficient three-step process to annulate polycyclic aromatic hydrocarbons (PAHs) has been developed, providing access to PAHs with saturated rings that under current chemical methods would be difficult to produce in an efficient manner. This method relies on a palladium-catalyzed cross-coupling reaction of various brominated PAHs with cyclohexanone to yield α-arylated ketones, which are converted to regiospecific vinyl triflates and cyclized by a palladium-catalyzed intramolecular arene-vinyl triflate coupling to produce PAHs with incorporated saturated rings or "tetrahydroindeno-annulated" PAHs.

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Purpose: Chronic postoperative pain is probably the most significant complication of tension-free inguinal hernia repair as its presence can considerably affect the life quality of the patient. Different mesh materials and different surgical techniques for mesh fixation have been applied to reduce chronic postoperative pain, with controversial, nevertheless, results. The aim of this prospective randomized study was to evaluate the effect of a relatively new mesh with self-fixating properties, used to repair inguinal hernia with the Lichtenstein technique, on early and chronic postoperative pain.

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