transmission electron microscope tem philips tecnai 10 (Philips Healthcare)
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Transmission Electron Microscope Tem Philips Tecnai 10, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Transmission Electron Microscopy:Article Title: Microstructures and thermal properties of municipal solid waste incineration fly ash Article Snippet: To analyze the feasibility of utilization of thermal technology in fly ash treatment, thermal properties and microstructures of municipal solid waste incineration (MSWI) fly ash were studied by measuring the chemical element composition, specific surface area, pore sizes, functional groups, TEM image, mineralogy and DSC-TG curves of raw and sintered fly ash specimens.. The results show that MSWI fly ash particles mostly have irregular shapes and non-typical pore structure, and the supersonic treatment improves the pore structure; MSWI fly ash consists of such crystals as SiO2, CaSO4 and silica-aluminates, and some soluble salts like KCl and NaCl.. During the sintering process, mineralogy changes largely and novel solid solutions are produced gradually with the rise of temperature. Article Title: Utilizing biosynthesized nickel(II) oxide nanoparticles in the synthesis of bis(indolyl)arylmethanes with anti-lung cancer properties Article Snippet: The recently prepared nanophotocatalyst Ni-NiO is introduced as an effective mediator in the one-pot twocomponent synthesis of various substituted bis(indolyl)arylmethanes and as potent anti-lung cancer agent.. The inception of this environmental friendly photocatalyst stems from the biosynthesis process utilizing Glycyrrhiza Glabra (licorice) leaves extract that is an active plant with potential applications in lung cancer treatment.. Familiar characterization techniques including XPS, UV–Vis, XRD, FT-IR, FE-SEM, TEM, and EDS provided a comprehensive information on the physicochemical properties of Ni-NiO nanoparticles. Microscopy:Article Title: Microstructures and thermal properties of municipal solid waste incineration fly ash Article Snippet: To analyze the feasibility of utilization of thermal technology in fly ash treatment, thermal properties and microstructures of municipal solid waste incineration (MSWI) fly ash were studied by measuring the chemical element composition, specific surface area, pore sizes, functional groups, TEM image, mineralogy and DSC-TG curves of raw and sintered fly ash specimens.. The results show that MSWI fly ash particles mostly have irregular shapes and non-typical pore structure, and the supersonic treatment improves the pore structure; MSWI fly ash consists of such crystals as SiO2, CaSO4 and silica-aluminates, and some soluble salts like KCl and NaCl.. During the sintering process, mineralogy changes largely and novel solid solutions are produced gradually with the rise of temperature. Article Title: Utilizing biosynthesized nickel(II) oxide nanoparticles in the synthesis of bis(indolyl)arylmethanes with anti-lung cancer properties Article Snippet: The recently prepared nanophotocatalyst Ni-NiO is introduced as an effective mediator in the one-pot twocomponent synthesis of various substituted bis(indolyl)arylmethanes and as potent anti-lung cancer agent.. The inception of this environmental friendly photocatalyst stems from the biosynthesis process utilizing Glycyrrhiza Glabra (licorice) leaves extract that is an active plant with potential applications in lung cancer treatment.. Familiar characterization techniques including XPS, UV–Vis, XRD, FT-IR, FE-SEM, TEM, and EDS provided a comprehensive information on the physicochemical properties of Ni-NiO nanoparticles. |
