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    • 3. 发明授权
    • Forming of cable splice closures
    • 形成电缆接头闭合
    • US4629597A
    • 1986-12-16
    • US752750
    • 1985-07-08
    • Leonard J. CharleboisAllan P. BrownJames R. Scott
    • Leonard J. CharleboisAllan P. BrownJames R. Scott
    • B29C33/12B29C39/00B29C70/74H02G1/14B29C39/18H01B13/32H01R43/00
    • H02G1/145B29C33/123B29C70/74B29C39/00Y10T29/49194
    • A method of forming a molded encapsulation around a sealed spliced region between two cables in which the cables pass through a mold with the splice region in the mold cavity and correctly centered before molding. To allow for the centering operation to be performed, apertures are provided in the mold. Hook members are passed through the apertures. These hook members are caused to engage both inner and outer mold surfaces and they also engage tie means at two circumferentially spaced positions around the splice region to centralize the region within the cavity. The mold is then filled with molten material and the hooks removed from the apertures with the material still molten. Hook removal may take place either when the cavity is completely filled or after sufficient molten material has entered the mold to hold the splice region in fixed position. The method is applicable to low pressure molding, i.e. below 100 psi and preferably below 50 psi.
    • 在两个电缆之间的密封接合区域周围形成模制封装的方法,其中电缆通过具有模腔中的接合区域并且在模制之前正确居中的模具。 为了允许执行定心操作,在模具中提供孔。 钩构件穿过孔。 引起这些钩构件与内模和外模表面接合,并且它们还在接合区域周围的两个周向间隔位置处接合连接装置,以将腔内的区域集中。 然后用熔融材料填充模具,并且使钩子从孔中移除,材料仍然熔化。 当空腔完全填充或者在足够的熔融材料进入模具中以将接合区域保持在固定位置之后,可以进行钩除去。 该方法适用于低压成型,即低于100psi,优选低于50psi。
    • 5. 发明授权
    • Methods for growing and harvesting algae and methods of use
    • 生长和收获藻类的方法和使用方法
    • US08281515B2
    • 2012-10-09
    • US12824948
    • 2010-06-28
    • Everett J. NicholsJames R. Scott
    • Everett J. NicholsJames R. Scott
    • A01G7/00A01H13/00
    • C12N1/12C12M21/02C12M23/18C12M35/08C12N1/38C12P7/6463C12P7/649Y02E50/13Y02W10/37
    • Methods for increasing the growth and biomass of algae and algae lipids by growing the algae in the presence of a polycationic substance such as soluble or insoluble chitosan and/or chitin are disclosed. Also disclosed are methods of harvesting algae from an aqueous environment by growing the algae in aggregated clumps and/or mats (formed by the inclusion of soluble or insoluble chitosan and/or chitin or other polycationic or cationic substances) that can be easily removed from the aqueous environment either by filtration, surface skimming, and/or growing in a porous containment device, such as a natural or synthetic fabric, and removing the fabric from the aqueous environment containing the aggregated algae. The methods disclosed have direct applications in biofuel and energy production, agricultural feedstock production, nutrient production, greenhouse gas reduction, removal of microconstituents from water, and water reclamation.
    • 公开了通过在聚阳离子物质如可溶性或不溶性壳聚糖和/或壳多糖存在下生长藻类来增加藻类和藻类脂质的生长和生物量的方法。 还公开了通过在聚集的块和/或垫(通过包含可溶或不溶性壳聚糖和/或几丁质或其它聚阳离子或阳离子物质形成的)中生长藻类而从水环境中收获藻类的方法,其可以容易地从 通过过滤,表面撇去和/或在多孔容纳装置(例如天然或合成织物)中生长,以及从含有聚集藻类的含水环境中除去织物的水性环境。 所公开的方法直接用于生物燃料和能源生产,农业原料生产,营养生产,温室气体减排,微生物从水中的去除和开采。
    • 6. 发明授权
    • Formulations and methods for solid chitosan-containing blends
    • 固体含壳聚糖混合物的配方和方法
    • US08168767B2
    • 2012-05-01
    • US12852098
    • 2010-08-06
    • Everett J. NicholsJames R. Scott
    • Everett J. NicholsJames R. Scott
    • C08B37/08
    • C08L5/08C08K5/101
    • Chitosan-containing blends and methods of dissolving and using chitosan are disclosed. A blend includes a solid acid or a solid agent that generates a proton in situ in the presence of water mixed together with a dry solid chitosan, and may optionally contain other components. The blends are in a dry, free-flowing, particulate form. Methods of dissolving a blend typically comprise adding a quantity of the blend to a low volume of water and mixing until the chitosan and solid acid or solid agent are dissolved and then further diluting this mixture by the addition of water, or used as-is. Devices containing the blends are also described along with methods of using the devices, such as for controlled release of solubilized chitosan in a body of water, such as a stream, containing impurities (e.g., particles, sediment, or suspended matter or dissolved substances) to cause flocculation or precipitation of such impurities.
    • 公开了含壳聚糖的共混物和溶解和使用壳聚糖的方法。 共混物包括固体酸或固体剂,其在与干燥固体壳聚糖混合在一起的水的存在下原位产生质子,并且可以任选地含有其它组分。 混合物为干燥,自由流动的颗粒形式。 溶解共混物的方法通常包括将一定量的共混物加入到低体积的水中并混合直到壳聚糖和固体酸或固体剂溶解,然后通过加入水进一步稀释该混合物,或按原样使用。 还描述了含有共混物的装置以及使用这些装置的方法,例如用于控制释放水体中的溶解的壳聚糖,例如含有杂质的流(例如,颗粒,沉积物或悬浮物质或溶解物质) 引起这种杂质的絮凝或沉淀。
    • 9. 发明授权
    • Bracket for supporting fence posts
    • 支架围栏柱
    • US5444951A
    • 1995-08-29
    • US207292
    • 1994-03-07
    • James R. ScottAndrew R. Hrytsak
    • James R. ScottAndrew R. Hrytsak
    • E04H12/22F02D5/54
    • E04H12/2261
    • A bracket is provided that is rigid and can be attached to a solid surface. The bracket allows a vinyl fence post to be fitted over and locked in place thus avoiding the necessity of pouring concrete into the post to provide a rigid post. The bracket has a base plate with bolts or anchor bolts that connects to a solid surface, an elongated member extends up from the base plate and has a cross-section to provide a sliding fit within a fence post. An expansion mechanism is provided at the top of the longitudinal member with tapered sides extending from within the longitudinal member to a larger cross-section than within the longitudinal member, and a tensioning bolt between the expansion basket and the bracket to force the expansion basket within the longitudinal member and expand the bracket to grip a fence post positioned over the longitudinal member.
    • 提供了一种刚性的支架,可以固定在固体表面上。 支架允许将乙烯栅栏柱安装在其上并锁定到位,从而避免了将混凝土浇注到柱中以提供刚性柱。 该支架具有一个带有螺栓或者地脚螺栓的基板,该固定螺栓连接到一个固体表面,一个细长构件从基板向上延伸,并具有横截面以在挡板柱内提供滑动配合。 在纵向构件的顶部设置有膨胀机构,其中锥形侧面从纵向构件延伸到比纵向构件内部更大的横截面,以及在膨胀篮和支架之间的张紧螺栓,以将膨胀篮向内 所述纵向构件并且使所述支架膨胀以夹紧位于所述纵向构件上方的挡板柱。