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    • 93. 发明申请
    • Renewably buoyant, self-protective floating habitat
    • 可再生浮力,自保浮动栖息地
    • US20070124995A1
    • 2007-06-07
    • US10595735
    • 2004-12-09
    • Bruce KaniaFrank StewartRussell SmithThomas ColemanAlfred Cunningham
    • Bruce KaniaFrank StewartRussell SmithThomas ColemanAlfred Cunningham
    • A01G31/00A01K61/00
    • A01K67/033A01G9/00A01K31/14A01K61/60A01K61/70Y02A40/826Y02A40/83Y02P60/642
    • A floating habitat designed to be renewably buoyant, self-sustaining and optionally specialized for waterfowl nesting. The first embodiment comprises one or more flotation units, a source of compressed air, and a means for connecting the source of compressed air to the flotation units. Each flotation unit comprises an individual supply hose, an inflatable bladder, a relief valve, a diffusing manifold, bottom mesh, top mesh, and buoyant growth medium. An alternative embodiment comprises a self-compensating buoyancy system. In the waterfowl nesting embodiment, the floating habitat includes one or more waterfowl nesting structures and construction material selected to optimize the nesting habitat. The floating habitat can be comprised of scrap pieces or layers of polyester mesh material. The floating habitats can be combined to provide safe habitat for juvenile waterfowl, encourage colony nesting, or allow a variety of waterfowl or shore bird species to enjoy suitable habitat on the same floating habitat.
    • 一个漂浮的栖息地,设计为可再生浮力,自我维持,并可选择专门为水禽筑巢。 第一实施例包括一个或多个浮选单元,压缩空气源和用于将压缩空气源连接到浮选单元的装置。 每个浮选单元包括单独的供应软管,可充气囊,安全阀,扩散歧管,底部网,顶部网和浮力生长介质。 替代实施例包括自补偿浮力系统。 在水禽嵌套实施例中,浮动栖息地包括一个或多个水禽嵌套结构和被选择用于优化嵌套栖息地的建筑材料。 浮动栖息地可以由废料片或聚酯网材料层组成。 浮游栖息地可以组合起来,为少年水鸟提供安全栖息地,鼓励殖民地筑巢,或允许各种水鸟或岸鸟类物种在相同的浮动栖息地享受合适的栖息地。
    • 94. 发明申请
    • Method and device for cultivating and maintaining aquatic crustaceans
    • 栽培和维护水生甲壳类动物的方法和装置
    • US20050072368A1
    • 2005-04-07
    • US10738045
    • 2003-12-18
    • Shyh Hsiao
    • Shyh Hsiao
    • A01K61/00
    • A01K61/70A01K61/59Y02A40/824Y02A40/83
    • A device for cultivating and maintaining aquatic crustaceans and the method for the same are provided, whereby aquatic crustaceans are cultured in a culture tank having at least one effective resting and/or hiding area that provides visual only or both visual and tactile sensations for aquatic crustaceans. The present invention creates effective resting and/or hiding areas by utilizing the sensitivity of aquatic crustaceans to physical environment, thereby allowing aquatic crustaceans to live within confined spaces in high densities without cannibalizing those fall outside the effective resting and/or hiding areas (the non-effective habitat areas). The device of the present invention can cultivate and maintain aquatic crustaceans successfully in shallow waters and a plurality of which may be vertically incorporated into a multi-layered culture system to bring about higher culture and maintenance densities per unit floor area.
    • 提供了一种养殖和维护水生甲壳类动物及其方法,其中水生甲壳类动物在具有至少一个有效的休息和/或隐藏区域的培养罐中培养,其对水生甲壳类动物仅提供视觉或视觉和触觉感觉 。 本发明通过利用水生甲壳类动物对物理环境的敏感性而产生有效的休息和/或隐藏区域,从而允许水生甲壳类动物以高密度住在密闭空间内,而不会使那些落在有效休息和/或隐藏区域之外的人 - 有效的栖息地)。 本发明的装置可以在浅水中成功培养和维持水中甲壳类动物,其中多个可以垂直地并入多层培养系统,以达到每单位建筑面积的更高的培养和维护密度。
    • 95. 发明申请
    • Reproductions of aquarium life formed from translucent memory retaining polymers and method for reproducing the same
    • 由半透明记忆保存聚合物形成的水族馆生活的复制品及其再现方法
    • US20040168650A1
    • 2004-09-02
    • US10776067
    • 2004-02-11
    • Jeffrey D. Boschert
    • A01K063/00
    • A01K63/006A01K61/70Y02A40/83
    • An article for use in an aquatic environment comprises a translucent polymer material that is configured to reproduce a form of aquarium life. In embodiments of the invention, the translucent polymer material comprises a highly pliable polymer material capable of substantially retaining its shape, such as, but not limited to, thermoplastics, rubbers, silicones, and Plastigoopnull. In further embodiments of the invention, the form of aquarium life that the translucent polymer material is configured to reproduce can be a sea anemone, a sea plant, a sea weed, live coral, a scallop, a clam, a sea cucumber, a sea apple, a nudibranch, or a jellyfish. In another aspect of the invention, a process for reproducing articles configured to reproduce aquarium life comprises processing an appropriate polymer material, and in other embodiments, further processing one or more additives, such as dyes, whereby an article reproducing one or more types of aquarium life is formed.
    • 用于水生环境的物品包括半透明聚合物材料,其被配置为再现水族馆生活的形式。 在本发明的实施方案中,半透明聚合物材料包括能够基本上保持其形状的高度柔韧的聚合物材料,例如但不限于热塑性塑料,橡胶,硅酮和Plastigoop。 在本发明的另外的实施方案中,半透明聚合物材料被配置为再现的水族馆生活的形式可以是海葵,海洋植物,海杂草,活珊瑚,扇贝,蛤,海参,海 苹果,小枝,或水母。 在本发明的另一方面,一种用于再现被配置为再现水族馆寿命的物品的方法包括处理合适的聚合物材料,并且在其它实施方案中,进一步处理一种或多种添加剂,例如染料,由此再生一种或多种类型的水族箱 生活形成。
    • 99. 发明授权
    • Synthetic aquatic structure
    • 合成水生结构
    • US06171686B2
    • 2001-01-09
    • US09041671
    • 1998-03-13
    • Roderick J. McNeil
    • Roderick J. McNeil
    • A01K6100
    • B32B5/24A01K61/70A01K63/04Y02A40/83Y10T428/249953Y10T428/249981Y10T442/59
    • A synthetic structure is used to simultaneously provide food, shelter and reproductive support for many aquatic species. Synthetic seagrass may be produced in the form of flexible mats with a plurality of ribbons. The lower ends of the ribbons are anchored to the benthos. The other ends of the ribbons are buoyantly supported in the photic zone. The ribbons may be economically produced in plural coextensive layers, with one layer providing buoyancy and the other layer being structured to enhance biological growth. The system may be tailored for use in desired applications by selecting the surface area structure, ribbon spacing and density, and other parameters. The system may be used to remove nutrients and/or toxic materials from water. The invention may be used to simultaneously promote aerobic and anaerobic reactions to control water quality.
    • 使用合成结构同时为许多水生物种提供食物,住所和生殖支持。 合成海草可以以具有多个带的柔性垫的形式生产。 丝带的下端锚固到底栖生物。 丝带的另一端在光泽区域浮力支撑。 带可以在多个共同层中经济地生产,其中一层提供浮力,另一层被构造成增强生物生长。 可以通过选择表面积结构,带间距和密度以及其它参数来定制系统以用于期望的应用。 该系统可用于从水中去除营养物和/或有毒物质。 本发明可用于同时促进需氧和厌氧反应以控制水质。