This case report describes a 41-year-old woman with no significant medical history and a normal body mass index (BMI), who presented with ureterohydronephrosis due to a 5.5mm x 9mm calculus composed primarily of calcite (CaCO) at the ureterovesical junction. The kidney stone, associated with cystitis and perirenal fat infiltration, was spontaneously expelled and subsequently analyzed. Optical microscopy revealed a grey homogeneous stone with a rough surface and white crystals upon examination. Fourier-transform infrared spectroscopy (FTIR-ATR) confirmed the stone's composition as pure calcite, displaying characteristic absorption bands indicative of its crystalline structure. The patient reported long-term use of multiple vitamins and plant-based supplements, possibly contributing to stone formation. The discussion includes insights on calcite urolithiasis, highlighting factors such as alkaline urine pH and calcium metabolism that can influence stone formation, underscoring the complexity of managing kidney stone risk in supplement users.
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EJIFCC
March 2025
Pharmacovigilance department, University Hospital Establishment of Oran, EHU-O, Algeria.
This case report describes a 41-year-old woman with no significant medical history and a normal body mass index (BMI), who presented with ureterohydronephrosis due to a 5.5mm x 9mm calculus composed primarily of calcite (CaCO) at the ureterovesical junction. The kidney stone, associated with cystitis and perirenal fat infiltration, was spontaneously expelled and subsequently analyzed.
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YPF Tecnología S.A., Av. del Petróleo s/n, Berisso, Buenos Aires 1923, Argentina.
Underground carbon dioxide storage in confined systems becomes a viable alternative to diminish atmospheric concentrations of this gas. Shale reservoirs exhibit mineralogical and pore size heterogeneities that are not deeply analyzed to evaluate the transport and adsorption capacities of carbon dioxide inside their matrix. Functionalized carbon nanotubes and inorganic nanochannels composed of calcite or silicon dioxide are excellent approximations to model the poral throats of the organic and inorganic matrices of shale reservoirs, respectively.
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March 2025
Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul, 02841 Republic of Korea.
Sodium alginate (SA) was crosslinked by calcium hydrogen phosphate and calcium carbonate (CC), of which the rate was controlled by glucono-delta-lactone to decrease the pH and induce a slow release of Ca ions. The crosslinked SA was coated on oriented polypropylene (OPP). The coated films exhibited a low oxygen transmission rate (OTR) under 0% relative humidity (RH).
View Article and Find Full Text PDFHeliyon
February 2025
Department of Environmental Sciences, College of Agriculture and Environmental Sciences, University of South Africa, Florida Campus, South Africa.
Converting biomass waste into valuable products has recently gained popularity among scientists worldwide. The potential of egg biomass waste as an adsorbent for removing organic and inorganic contaminants from aqueous solutions has been investigated. This review paper assessed the techniques of developing egg waste adsorbents, physicochemical characteristics, and mechanisms underlying the adsorption of pollutants.
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January 2025
Department of Advanced Materials Engineering, Chung-Ang University, Anseong 17546, Republic of Korea.
Inorganic materials used in passive radiative cooling have achieved a commendable level of performance through synthesis, yet they lack sustainability and environmental friendliness as they do not incorporate recycling. This study developed a novel passive radiative cooling (PRC) film utilizing calcium carbonate extracted from discarded oyster shells (D-CaCO) and polyurethane (PU) as the matrix. This sustainable approach leverages the unique properties of CaCO, such as high solar reflectance and strong infrared emissivity, to achieve significant cooling effects.
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