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    • 1. 发明申请
    • Debonders for Use in Papermaking
    • 脱水剂用于造纸
    • US20120006499A1
    • 2012-01-12
    • US13178053
    • 2011-07-07
    • Gangadhar JogikalmathLynn ReisScott I. RabinDavid S. Soane
    • Gangadhar JogikalmathLynn ReisScott I. RabinDavid S. Soane
    • D21H17/52
    • D21H17/52D21C9/005D21H17/35D21H17/36D21H17/37D21H21/22D21H21/24
    • Debonding compositions and methods are disclosed for use in fibrous compositions such as paper-based products. In some instances, debonding agents can be combined with fibers (e.g., cellulose-based fibers) to produce a material having substantial wicking properties while decreasing fiber-fiber interactions that can require substantial energy to overcome in materials processing. In some instances, the debonding agent can act to create a paper-based product exhibiting a transition temperature in which the agent has a higher affinity for the fibers at temperatures above the transition temperature, and the product exhibiting enhanced wicking properties at temperatures below the transition temperature. As an example, a debonding agents can include polymers or other material exhibiting a lower critical solution temperature. The disclosed debonding agents can provide benefits over existing debonding agent formulations such as ammonium salts.
    • 公开了脱模组合物和方法用于纤维组合物如纸基产品中。 在一些情况下,脱粘剂可以与纤维(例如基于纤维素的纤维)组合以产生具有相当芯吸性质的材料,同时减少在材料加工中需要大量能量来克服的纤维 - 纤维相互作用。 在一些情况下,脱粘剂可用于产生显示转变温度的纸基产品,其中该试剂在高于转变温度的温度下对纤维具有更高的亲和力,并且该产品在低于转变温度的温度下表现出增强的芯吸性能 温度。 作为示例,脱粘剂可以包括聚合物或具有较低临界溶解温度的其它材料。 所公开的脱粘剂可以提供优于现有脱粘剂配方如铵盐的益处。
    • 2. 发明申请
    • HIGH STRENGTH PAPER
    • 高强度纸
    • US20120152476A1
    • 2012-06-21
    • US13331861
    • 2011-12-20
    • Gangadhar JogikalmathPatrick D. KincaidLynn ReisDavid S. Soane
    • Gangadhar JogikalmathPatrick D. KincaidLynn ReisDavid S. Soane
    • D21H17/33D21H23/00D21H17/63D21H11/00D21H17/29
    • D21H17/455D21H17/29D21H17/375D21H17/41D21H17/42D21H17/44D21H17/56D21H21/18
    • Disclosed herein are systems and methods for attaching particulate additives to a population of cellulose fibers dispersed in an aqueous solution. The cellulose fibers are treated with an activator that forms complexes with them. The particulate additive is attached to a tether that is capable of interacting with the activator, thereby forming a tether-bearing particulate additive. The tether-bearing particulate additive can be added to the activated suspension of cellulose fibers. The resulting interaction between the tether and the activator forms durable complexes that attach the particulate additive to the cellulose fibers. Using these systems and methods, useful additives like starches can be attached to cellulose fibers, imparting advantageous properties such as increased strength to paper products formed thereby. These systems and methods are particularly useful for papermaking involving virgin pulp fibers, recycled fibers, or any combination thereof.
    • 本文公开了用于将微粒添加剂附着到分散在水溶液中的纤维素纤维群体的系统和方法。 纤维素纤维用与它们形成复合物的活化剂处理。 颗粒状添加剂连接到能够与活化剂相互作用的系链上,从而形成带束缚的微粒添加剂。 可将带状的颗粒添加剂加入到纤维素纤维的活化悬浮液中。 所产生的系链和活化剂之间的相互作用形成将颗粒添加剂附着到纤维素纤维上的耐久复合物。 使用这些系统和方法,可以将有用的添加剂如淀粉粘附到纤维素纤维上,赋予有利的性质,例如由此形成的纸产品的强度增加。 这些系统和方法对于涉及原浆纸浆纤维,再循环纤维或其任何组合的造纸特别有用。
    • 5. 发明授权
    • High strength paper
    • 高强度纸
    • US08980059B2
    • 2015-03-17
    • US13331861
    • 2011-12-20
    • Gangadhar JogikalmathPatrick D. KincaidLynn ReisDavid S. Soane
    • Gangadhar JogikalmathPatrick D. KincaidLynn ReisDavid S. Soane
    • D21H21/18D21H17/28D21H17/41D21H17/42D21H17/44D21H17/56
    • D21H17/455D21H17/29D21H17/375D21H17/41D21H17/42D21H17/44D21H17/56D21H21/18
    • Disclosed herein are systems and methods for attaching particulate additives to a population of cellulose fibers dispersed in an aqueous solution. The cellulose fibers are treated with an activator that forms complexes with them. The particulate additive is attached to a tether that is capable of interacting with the activator, thereby forming a tether-bearing particulate additive. The tether-bearing particulate additive can be added to the activated suspension of cellulose fibers. The resulting interaction between the tether and the activator forms durable complexes that attach the particulate additive to the cellulose fibers. Using these systems and methods, useful additives like starches can be attached to cellulose fibers, imparting advantageous properties such as increased strength to paper products formed thereby. These systems and methods are particularly useful for papermaking involving virgin pulp fibers, recycled fibers, or any combination thereof.
    • 本文公开了用于将微粒添加剂附着到分散在水溶液中的纤维素纤维群体的系统和方法。 纤维素纤维用与它们形成复合物的活化剂处理。 颗粒状添加剂连接到能够与活化剂相互作用的系链上,从而形成带束缚的微粒添加剂。 可将带状的颗粒添加剂加入到纤维素纤维的活化悬浮液中。 所产生的系链和活化剂之间的相互作用形成将颗粒添加剂附着到纤维素纤维上的耐久复合物。 使用这些系统和方法,可以将有用的添加剂如淀粉粘附到纤维素纤维上,赋予有利的性质,例如由此形成的纸产品的强度增加。 这些系统和方法对于涉及原始纸浆纤维,再循环纤维或其任何组合的造纸特别有用。