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- W998278536 abstract "An optical study of satinated Pittsburgh glass wafers was conducted and special attention was paid to their applications in greenhouse industry. They included: specular reflectance spectra in the range 300-1100 nm, using a reflection probe, resolve angle scattering, diffuse reflectance by means of an integrating sphere, X-Y optical profile measurements and ellipsometric investigation by means of a spectroscopic ellipsometer. Additionally, a surface topography study of investi- gated samples was carried out by means of atomic force microscopy (AFM) measurements. The obtained results allowed us to describe surface topography of chemically and mechanically modified surfaces. A fundamental property of glass is transmissibility which is directly associated with reflectance in a glass wafer. A transmissibility increase may be obtained by the depo- sition of an antireflective thin film on glass or by a chemical or mechanical modifi- cation of its surface (1, 2). For most dielectric materials such as glass with a flat surface, the increase in roughness causes the decrease in total reflectance on the surface, thus increasing the absorption of light due to internal reflections in a studied material. This property may be applied in the production of glass in greenhouse industry. In many evaluations, the reduction of 1% of total reflectance causes 3% growth of plants vegetation (3). The total light energy value coming from the sun trapped in a green- house depends on topographical parameters of a glass wafer surface. The topography of the surface may be modified by satination (special chemical treatments) or sanding. From the technological point of view, glass with high transmissibility and susceptible to surface modification is needed. These criteria are fulfilled by glasses obtained through old Pittsburgh technology as well as water glasses obtained by means of the newest technologies of glass production. Pittsburgh glass shows very good trans- missibility (T is about 91%). The surface of Pittsburgh glass is particularly easy to modify by mechanical and chemical processes. Mechanical sanding or chemical" @default.
- W998278536 created "2016-06-24" @default.
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- W998278536 date "2013-01-01" @default.
- W998278536 modified "2023-09-26" @default.
- W998278536 title "Optical properties of Pittsburgh glass subjected to mechanical and chemical treating" @default.
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