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Textiles natural

Textiles (natural/synthetic) Reduced tensile strength, deterioration... [Pg.501]

Within the suit, communication is currently realised by either optical fibres or conductive yarns. They both clearly have a textile nature and can be seamlessly built into the textile. Communication with the wearer is possible, for instance, by the following technologies ... [Pg.239]

Textiles - natural or synthetic, to prevent sparks and clinging... [Pg.443]

Uses Solvent for inorg. salts, plasticizers, syn. fibers, polymers, pigments, dyes, paints extraction solvent plar process solvent intermediate for organic syntheses reactive diluent for urethane foams and coatings foundry sand binders textiles natural gas purification bento-nite/montmorillonite gellant (greases, cosmetics) hydraulic fluid additive plasticizer cosmetics lubricant, solvent flavor for pharmaceuticals antifoam for antifreeze in food-pkg. adhesives Features Medicinal, minty flavor... [Pg.1321]

Even if alizarin had served its time as a dyestuff for textiles, natural cochineal still finds broad application as a colourant for foodstuffs. Given the high expenditure required for isolation of the natural product, a ftiUy synthetic preparation of nature-identical kermesic and carminic acids can be attractive if one takes into account that higher prices can be realised for food colourants than for textile dyes. In this connection, the first total synthesis of carminic acid has been described by John Tyman and Pietro AUevi. [62,63]... [Pg.41]

See also Amperometry. Atomic Emission Spectrometry Flame Photometry. Chemiiuminescence Overview Liquid-Phase. Flow Injection Analysis Principles. Fluorescence Quantitative Analysis. Ion Exchange Ion Chromatography Instrumentation. Liquid Chromatography Overview. Ozone. Sampling Theory. Sulfur. Textiles Natural Synthetic. [Pg.304]

See FORENSIC SCIENCES Fibers. TEXTILES Natural Synthetic... [Pg.1231]

See also Asbestos. Color Measurement. Forensic Sciences Thin-Layer Chromatography. Gas Chromatography Pyrolysis Mass Spectrometry Fourier Transform Infrared Spectroscopy. Microscopy Applications Forensic. Spectrophotometry Diode Array. Textiles Natural Synthetic. X-Ray Absorption and Diffraction X-Ray Diffraction - Powder. X-Ray Fluorescence and Emission X-Ray Fluorescence Theory Energy Dispersive X-Ray Fluorescence Total Reflection X-Ray Fluorescence. [Pg.1672]

See also Chemometrics and Statistics Statistical Techniques Multivariate Classification Techniques Multivariate Calibration Techniques. Food and Nutritional Analysis Overview. Fourier Transform Techniques. Fuels Oil-Based. Infrared Spectroscopy Overview. Pharmaceutical Analysis Drug Purity Determination. Process Analysis Ovenriew. Proteins Foods. Quality Assurance Ouality Control. Textiles Natural Synthetic. [Pg.2255]

See also Infrared Spectroscopy Overview Sample Presentation Industrial Applications. Liquid Chromatography Size-Exclusion. Microscopy Overview Microscopy Techniques Light Microscopy Scanning Electron Microscopy. Nuclear Magnetic Resonance Spectroscopy Overview. Textiles Natural. [Pg.4749]

On the other hand, the fibrous transistor-based circuit takes advantage of this miniature size and pure textile nature. Particularly for the WECT, they can be used to develop a basic digital or analogical circuit. The technical difficulties reside in the low work rate and flexibility. By using smaller ion-based electrolytes, the WECT will obtain a higher work rate. Meanwhile, the aging of sol—gel of electrolytes should be investigated. [Pg.593]

Companies such as BASF, DSM, and Degussa not only develop biocatalysts for their own manufacturing processes but also lend their expertise to other industries, which include paper and pulp, textile, natural fiber, and animal feed. These industries are generally plagued with old chemical-based processes that generate large quantities of effluent, toxic metals that need expensive treatment (Anastas et ah, 1998 Binns et ah, 1999). [Pg.284]

Folyvinyl butyral is the acetal usually selected for adhesion to natural surfaces. Application to wood " confers good holdout, intercoat adhesion, moisture resistance, flexibility, toughness, impact resistance, and protection against discoloration. Application to textiles, natural and synthetic improves stain and water resistance without noticeably affecting feel, drape, or color. Textiles with improved fire resistance, dyeability, or leatherlike char-... [Pg.433]

A.B. Dalton, S. Collins, E. Munoz, J.M. Razal, V.H. Ebron, J.P. Ferraris, J.N. Coleman, B.G. Kim, R.H. Baughman, Super-tough carbon-nanotube fibres these extraordinary composite fibres can be woven into electronic textiles. Nature 423(6941), 703 (2003)... [Pg.453]

Dalton, A. B., Collins, S., Munoz, E., Razal, J. M., Ebron, V. H., Ferraris, J. R, Coleman, J. N., Kim, B. G. and Baughman, R. H. (2003) Super-tough carbon nanotube fibres -these extraordinary composite fibres can be woven into electronic textiles. Nature, 423, 703. [Pg.276]


See other pages where Textiles natural is mentioned: [Pg.501]    [Pg.343]    [Pg.501]    [Pg.350]    [Pg.137]    [Pg.16]    [Pg.343]    [Pg.3337]    [Pg.599]    [Pg.766]    [Pg.421]    [Pg.4734]    [Pg.4735]    [Pg.4736]    [Pg.4737]    [Pg.4738]    [Pg.4739]    [Pg.121]   
See also in sourсe #XX -- [ Pg.154 ]




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Contributions of textile materials to reduce the operational energy demand, and comparisons with examples from nature

Dyeing textile fibers natural

Natural and man-made textiles

Natural products textile sizing

Textile continuous natural fiber-reinforced

Textiles natural cellulose fibers: cotton

Textiles, degradation natural fibers

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