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    • 4. 发明授权
    • Pigment and filler and a method of manufacturing it
    • 颜料和填料及其制造方法
    • US08597422B2
    • 2013-12-03
    • US10573041
    • 2004-10-01
    • Soili PeltonenHannu MikkonenPia Qvintus-LeinoPetri VarjosKirsi Kataja
    • Soili PeltonenHannu MikkonenPia Qvintus-LeinoPetri VarjosKirsi Kataja
    • C08L3/00C09D103/00C09J103/00
    • C08J3/14C08J2303/04C08L3/06
    • The present invention relates to a light, biodegradable, organic pigment and filler, and a method of manufacturing it. According to the present invention, a solution comprising a starch derivative is first prepared by dissolving the starch derivative into a suitable solvent, and, after that, the solution is brought into contact with a non-solvent to precipitate the starch derivative from the solvent, and, as a result, a dispersion is obtained, one which comprises a precipitate consisting of starch derivative and a liquid phase formed of the solvent and the non-solvent, after which the solvent is removed from the liquid phase and the precipitate is separated from the non-solvent and recovered. The present invention can be used to manufacture both a product comprising 100-300 nm spherical particles, which is suitable for use as a pigment, and a coral-like, porous product which is particularly suitable as a filler.
    • 本发明涉及轻质,可生物降解的有机颜料和填料,及其制造方法。 根据本发明,首先通过将淀粉衍生物溶解在合适的溶剂中制备包含淀粉衍生物的溶液,然后使溶液与非溶剂接触以从溶剂中沉淀淀粉衍生物, 结果得到分散体,其中包含由淀粉衍生物和由溶剂和非溶剂形成的液相组成的沉淀物,然后从液相中除去溶剂,并将沉淀物从 非溶剂并回收。 本发明可以用于制造包含适合用作颜料的100-300nm球形颗粒的产品和特别适合作为填料的珊瑚状多孔产品。
    • 5. 发明申请
    • Pigment and filler and a method of manufacturing it
    • 颜料和填料及其制造方法
    • US20070101904A1
    • 2007-05-10
    • US10573041
    • 2004-10-01
    • Soili PeltonenHannu MikkonenPia Qvintus-LeinoPetri VarjosKirsi Kataja
    • Soili PeltonenHannu MikkonenPia Qvintus-LeinoPetri VarjosKirsi Kataja
    • C08K5/00
    • C08J3/14C08J2303/04C08L3/06
    • The present invention relates to a light, biodegradable, organic pigment and filler, and a method of manufacturing it. According to the present invention, a solution comprising a starch derivative is first prepared by dissolving the starch derivative into a suitable solvent, and, after that, the solution is brought into contact with a non-solvent to precipitate the starch derivative from the solvent, and, as a result, a dispersion is obtained, one which comprises a precipitate consisting of starch derivative and a liquid phase formed of the solvent and the non-solvent, after which the solvent is removed from the liquid phase and the precipitate is separated from the non-solvent and recovered. The present invention can be used to manufacture both a product comprising 100-300 nm spherical particles, which is suitable for use as a pigment, and a coral-like, porous product which is particularly suitable as a filler.
    • 本发明涉及轻质,可生物降解的有机颜料和填料,及其制造方法。 根据本发明,首先通过将淀粉衍生物溶解在合适的溶剂中制备包含淀粉衍生物的溶液,然后使溶液与非溶剂接触以从溶剂中沉淀淀粉衍生物, 结果得到分散体,其中包含由淀粉衍生物和由溶剂和非溶剂形成的液相组成的沉淀物,然后从液相中除去溶剂,并将沉淀物从 非溶剂并回收。 本发明可以用于制造包含适合用作颜料的100-300nm球形颗粒的产品和特别适合作为填料的珊瑚状多孔产品。
    • 9. 发明申请
    • DIFFRACTIVE MICROSTRUCTURE AND A METHOD OF PRODUCING THE SAME
    • 衍射微结构及其生产方法
    • US20100327485A1
    • 2010-12-30
    • US12809510
    • 2008-12-17
    • Arto MaaninenPia Qvintus-LeinoSoili Peltonen
    • Arto MaaninenPia Qvintus-LeinoSoili Peltonen
    • B29C59/02B32B3/30B44F1/00B28B11/08
    • Diffractive microstructure comprising micro-protrusions or microgrooves or a combination thereof and method of producing the same. The microstructure is formed in a layer of a thermoplastic carbohydrate polymer or a polymer derived from a carbohydrate material, said polymer having a glass transition point of less than 210° C. The thermoplastic polymer is preferably selected from the group of native starch, dextrin, native hemicellulose, native cellulose, poly(lactic acid), polylactides, polycaprolactone, starch derivatives, dextrin derivatives, hemicellulose derivatives, cellulose derivatives, and mixtures thereof. The invention provides an inexpensive and reliable way of incorporating into the products safety markings, which allow for visual inspection or detection, such as holograms and barcodes.
    • 包含微突起或微槽或其组合的衍射微结构及其制造方法。 微结构形成在热塑性碳水化合物聚合物层或衍生自碳水化合物材料的聚合物中,所述聚合物的玻璃化转变点小于210℃。热塑性聚合物优选选自天然淀粉,糊精, 天然半纤维素,天然纤维素,聚(乳酸),聚丙交酯,聚己内酯,淀粉衍生物,糊精衍生物,半纤维素衍生物,纤维素衍生物及其混合物。 本发明提供了一种便宜且可靠的方式,将产品安全标记整合到允许目视检查或检测的产品中,例如全息图和条形码。