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    • 2. 发明授权
    • Foaming compositions and methods of making the same
    • 发泡组合物及其制造方法
    • US08980357B2
    • 2015-03-17
    • US11943758
    • 2007-11-21
    • Thomas Philip ImisonPhilip James OxfordStefano CerialiBary Lyn Zeller
    • Thomas Philip ImisonPhilip James OxfordStefano CerialiBary Lyn Zeller
    • A23P1/16A23L1/48A23F5/42A23L1/39A23L1/00A23L2/54
    • A23P1/16A23F5/42A23L2/54A23L23/00A23P30/40
    • A foaming composition is provided comprising a particulate ingredient having a plurality of internal voids containing entrapped supercritical fluid having a critical temperature of at least about 10° C. Additionally, a method is provided for preparing such a foaming composition. A supercritical fluid having a critical temperature of at least about 10° C. is contacted with a particulate ingredient having a glass transition temperature above ambient temperature at a temperature above the glass transition temperature of the particulate ingredient, wherein the particulate ingredient comprises a plurality of internal voids. The particulate ingredient is held at the temperature above the glass transition temperature of the particulate ingredient for a period of time effective to allow transfer of the supercritical fluid into the plurality of internal voids of the particulate ingredient. Subsequently, the temperature is reduced to below the glass transition temperature of the particulate ingredient, thereby entrapping at least a portion of the supercritical fluid in the plurality of internal voids of the particulate ingredient.
    • 提供了一种发泡组合物,其包含具有多个内部空隙的颗粒成分,所述内部空隙含有临界温度为至少约10℃的截留的超临界流体。另外,提供了制备这种发泡组合物的方法。 具有至少约10℃的临界温度的超临界流体在高于颗粒成分的玻璃化转变温度的温度下与玻璃化转变温度高于环境温度的颗粒成分接触,其中所述颗粒成分包括多个 内部空隙。 颗粒成分保持在高于颗粒成分的玻璃化转变温度的温度下一段有效时间,以允许超临界流体转移到颗粒成分的多个内部空隙中。 随后,将温度降低至低于颗粒成分的玻璃化转变温度,从而在颗粒成分的多个内部空隙中截留至少一部分超临界流体。
    • 5. 发明申请
    • Foaming Compositions and Methods of Making the Same
    • 发泡组合物和制备方法
    • US20080160139A1
    • 2008-07-03
    • US11943758
    • 2007-11-21
    • Thomas Philip ImisonPhilip James OxfordStefano CerialiBary Lyn Zeller
    • Thomas Philip ImisonPhilip James OxfordStefano CerialiBary Lyn Zeller
    • A23P1/16A23L1/48
    • A23P1/16A23F5/42A23L2/54A23L23/00A23P30/40
    • A foaming composition is provided comprising a particulate ingredient having a plurality of internal voids containing entrapped supercritical fluid having a critical temperature of at least about 10° C. Additionally, a method is provided for preparing such a foaming composition. A supercritical fluid having a critical temperature of at least about 10° C. is contacted with a particulate ingredient having a glass transition temperature above ambient temperature at a temperature above the glass transition temperature of the particulate ingredient, wherein the particulate ingredient comprises a plurality of internal voids. The particulate ingredient is held at the temperature above the glass transition temperature of the particulate ingredient for a period of time effective to allow transfer of the supercritical fluid into the plurality of internal voids of the particulate ingredient. Subsequently, the temperature is reduced to below the glass transition temperature of the particulate ingredient, thereby entrapping at least a portion of the supercritical fluid in the plurality of internal voids of the particulate ingredient.
    • 提供了一种发泡组合物,其包含具有多个内部空隙的颗粒成分,所述内部空隙含有临界温度为至少约10℃的截留的超临界流体。另外,提供了制备这种发泡组合物的方法。 具有至少约10℃的临界温度的超临界流体在高于颗粒成分的玻璃化转变温度的温度下与玻璃化转变温度高于环境温度的颗粒成分接触,其中所述颗粒成分包括多个 内部空隙。 颗粒成分保持在高于颗粒成分的玻璃化转变温度的温度下一段有效时间,以允许超临界流体转移到颗粒成分的多个内部空隙中。 随后,将温度降低至低于颗粒成分的玻璃化转变温度,从而在颗粒成分的多个内部空隙中截留至少一部分超临界流体。
    • 10. 发明申请
    • Enzyme-Assisted Soluble Coffee Production
    • 酶辅助可溶性咖啡生产
    • US20110281013A1
    • 2011-11-17
    • US13155015
    • 2011-06-07
    • Richard S. SilverSian PlumbStefano CerialiAnthony WraggErik Whalen-PedersenDanielle E. Perkins
    • Richard S. SilverSian PlumbStefano CerialiAnthony WraggErik Whalen-PedersenDanielle E. Perkins
    • A23F5/00
    • A23F5/246A23F5/265
    • The invention relates to a coffee beverage composition being devoid of significant contents of oil and insoluble particulates, comprising (a) at least 15% based on the total weight of coffee solids of total mannose, wherein the free mannose content is less than 50% by weight of the total mannose content, and (b) less than 1,000 ppm on a total coffee solids basis of 5-hydroxymethyl furfural, and to a process for producing a soluble coffee extract, comprising the steps: (i) combining roast and ground coffee with water, (ii) adding hydrolase enzymes, (iii) wet-milling to a mean particle size of about 10 to about 250 μm, (iv) treating the reaction mixture by exposing it to a temperature in the range of about 20° C. to about 90° C., preferably about 50° C. to about 60° C., and (v) circulating the reaction mixture through a cross-flow semi-permeable membrane separation device where the soluble coffee extract is obtained as permeate.
    • 本发明涉及一种没有显着含量的油和不溶性颗粒的咖啡饮料组合物,其包含(a)基于总甘露糖的咖啡固体的总重量至少15%,其中游离甘露糖含量小于50% 总胆固醇含量的重量,和(b)基于咖啡固体的5-羟甲基糠醛总量小于1,000ppm,以及生产可溶性咖啡提取物的方法,包括以下步骤:(i)将焙炒和研磨的咖啡 用水,(ii)加入水解酶,(iii)湿研磨至约10至约250μm的平均粒度,(iv)通过将反应混合物暴露于约20℃的温度 至约90℃,优选约50℃至约60℃,和(v)使反应混合物循环通过跨流半透膜分离装置,其中获得可溶性咖啡提取物作为渗透物。