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    • 71. 发明授权
    • Rotating and oscillating breaching device with reactive material
    • 具有反应性材料的旋转和摆动破裂装置
    • US09365463B1
    • 2016-06-14
    • US14929767
    • 2015-11-02
    • Darrel BarnetteEric Bleicken
    • Darrel BarnetteEric Bleicken
    • B23K7/10C05F11/02C05B17/00
    • C05F11/02B23K7/00B23K7/10B23K20/06B23K23/00C05B17/00F41C9/06F42B3/006F42B3/08C05G1/00C05C11/00C05D1/00C05D5/00C05D9/02
    • A breaching device for cutting through a substrate. There are several embodiments of the breaching device. In one embodiment, the device includes a hub assembly with a rotatable ring and a plurality of RM feed assemblies attached to the ring. In another embodiment, the device includes a disc, wherein the disc is rotatable and includes a plurality of slots, a shaft joined to the disc about which the disc rotates and a plurality of RM feed assemblies attached to the disc and arranged in the slots thereof. In another embodiment, the device includes a plurality of carts linked together, wherein each of the carts includes a cart body to which is coupled to an idler wheel, a wheel with an in-wheel motor and a platform and for each cart, a RM feed assembly retained on the platform. The RM feed assemblies include ejecta nozzles that may be positioned at selectable angles.
    • 用于切割基板的破裂装置。 破裂装置的几个实施例。 在一个实施例中,该装置包括具有可旋转环的轮毂组件和连接到该环的多个RM进给组件。 在另一个实施例中,该装置包括盘,其中该盘是可旋转的并且包括多个狭槽,连接到该盘周围的盘的一个轴以及连接到该盘并布置在该槽中的多个RM进给组件 。 在另一个实施例中,该装置包括连接在一起的多个推车,其中每个推车包括一个车体,该主体与一个惰轮相连,一个车轮具有一个轮内电动机和一个平台,每个车都有RM 饲料组件保留在平台上。 RM进料组件包括可以以可选角度定位的喷射喷嘴。
    • 73. 发明授权
    • Plant nutrient coated nanoparticles and methods for their preparation and use
    • 植物营养包衣纳米颗粒及其制备和使用方法
    • US09359265B2
    • 2016-06-07
    • US13825661
    • 2012-08-07
    • Nilanjan Deb
    • Nilanjan Deb
    • C05D9/02C05G3/00
    • C05D9/02C05G3/0041
    • Embodiments described herein provide for nanofertilizers having at least one plant nutrient coated onto a metal nanoparticle. Some embodiments provide for a method of making a nanofertilizer including providing a metal nanoparticle and coating the metal nanoparticle with at least one plant nutrient or precursor thereof. In some embodiments, a method of making a nanofertilizer may include mixing a metal salt and a plant nutrient in an aqueous medium to form a solution and adding a reducing agent to the solution to form a coated metal nanoparticle. Some embodiments provide for a boron nanofertilizer and methods of making the same. Some embodiments provide for a method of treating a plant nutrient deficiency, such as, for example, a boron deficiency. Some embodiments also provide for a kit for making a plant nutrient coated nanoparticle.
    • 本文所述的实施方案提供了具有涂覆在金属纳米颗粒上的至少一种植物营养物的纳米肥料。 一些实施方案提供了一种制备纳米肥料的方法,包括提供金属纳米颗粒并用金属纳米颗粒涂覆至少一种植物营养物或其前体。 在一些实施方案中,制备纳米肥料的方法可以包括在水性介质中混合金属盐和植物营养物以形成溶液,并向溶液中加入还原剂以形成涂覆的金属纳米颗粒。 一些实施方案提供硼纳米肥料及其制备方法。 一些实施方案提供了治疗植物营养缺乏症的方法,例如硼缺乏症。 一些实施方案还提供用于制备植物营养包被的纳米颗粒的试剂盒。
    • 80. 发明授权
    • Pelletized fertilizer and method for manufacturing the same
    • 造粒肥料及其制造方法
    • US09284233B2
    • 2016-03-15
    • US13783716
    • 2013-03-04
    • CHUNGHWA PICTURE TUBES, LTD
    • Chou-Chiang KuoMin-Lun WuChe-Wei Chang
    • C05D5/00C05G3/00C05B7/00C05C5/02C05C9/00C05D9/02
    • C05G3/0082C05B7/00C05C5/02C05C9/005C05D5/00C05D9/02C05G3/0047C05F11/00
    • A method for manufacturing a pelletized fertilizer includes the following steps. A water-soluble manure and a colloidal solution are mixed, to form an aqueous solution of a fertilizer, wherein the water-soluble manure is selected from the group consisting of monopotassium phosphate, epsomite, manganous sulfite, boric acid, borax, copper sulfate pentahydrate, white vitriol, ammonium molybdate, urea, ferric ethylenediaminetetraacetic acid and potassium nitrate, the colloidal solution is selected from the group consisting of agar, xanthan gum, shellac, guar gum, natto gum, pectin, synthetic hydrogel and PLGA, and the weight percentage of the colloidal solution in the aqueous solution of the fertilizer is between 1.5 and 15%. The aqueous solution of the fertilizer is added into a water within a temperature range between 0 and 4° C., whereby the aqueous solution of the fertilizer is solidified to the pelletized fertilizer.
    • 造粒肥料的制造方法包括以下步骤。 混合水溶性肥料和胶体溶液以形成肥料的水溶液,其中所述水溶性肥料选自磷酸二氢钾,亚硫酸氢盐,亚硫酸氢盐,硼酸,硼砂,五水合硫酸铜 ,白色硫酸铵,钼酸铵,尿素,亚乙基二胺四乙酸铁和硝酸钾,胶体溶液选自琼脂,黄原胶,虫胶,瓜尔胶,纳豆胶,果胶,合成水凝胶和PLGA,重量百分比 的化合物水溶液中的胶体溶液的含量在1.5至15%之间。 将肥料的水溶液加入到0至4℃的温度范围内的水中,由此将肥料的水溶液固化至造粒的肥料。