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    • 1. 发明公开
    • 신설란(조리대)을 이용한 사료제조 및 그 조성물
    • 使用新鲜草的方法制造功能
    • KR1020140036916A
    • 2014-03-26
    • KR1020120103881
    • 2012-09-18
    • 최명부최문규한구희한성익
    • 최명부최문규한구희한성익
    • A23K1/14
    • A23K10/30A23K40/10
    • The present invention relates to the manufacture of feed using Phormium tenax and a composition thereof. The Phormium tenax is a perennial plant growing on the seashores of Jeju Island, which has a lower stem with a 5 cm width and 0.5 mm thickness and forms a sharp shape like a sweet flag as it grows. The lower stem has sticky sap, lots of fiber and nutrients like seaweed, a slightly bitter taste if washed when it is not dried, and salt, thus having nutrients necessary for livestock. The manufacture of hay comprises processes for: cutting the root of the Phormium tenax and putting the root in a fixed-sized container like growing a flower in a vase; adding sugar to water to be absorbed into the root to neutralize the bitter taste; and breaking down the root at regular standards and mixing it with existing hay (corn, barley) at a certain ratio. Phormium tenax, hay, sugar
    • 本发明涉及使用Phormium tenax的饲料的制造及其组合物。 Phormium tenax是在济州岛海滨生长的多年生植物,其具有5厘米宽和0.5毫米厚度的下茎,并形成像甜旗一样长的锋利形状。 下茎具有粘稠的树汁,大量的纤维和营养物质如海藻,如果不干燥时洗涤时具有轻微的苦味,以及盐,因此具有家畜所需的营养。 干草的制造包括以下过程:切割Phormium tenax的根部,将根部放在固定尺寸的容器中,如在花瓶中生长花; 将糖加入水中以吸收到根中以中和苦味; 以正常标准分解根,并以一定的比例将其与现有的干草(玉米,大麦)混合。 <关键词> Phormium tenax,干草,糖
    • 2. 发明公开
    • 새로운 소재를 이용한 기능성 천연 항생사료 그 제조방법
    • 使用自然抗体饲料的方法制造功能
    • KR1020140028897A
    • 2014-03-10
    • KR1020120096256
    • 2012-08-30
    • 최명부최문규한구희한성익
    • 최명부최문규한구희한성익
    • A23K1/14A23K1/16A23K1/18
    • A23K10/30A23K40/10A23K50/00B01J13/006
    • The present invention relates to a manufacturing method of a functional natural antibiotic feed using a novel material. Sasa borealis, which habitats seashore in Jeju island in Korea only, is a perennial plant having about 0.5 mm-1 cm stem thickness under the leaves like a cactus, 5 cm of the width and a narrow leaf end like an iris containing abundant mineral like Salicornia herbacea, and many fibers. When cutting a leaf, resin comes out like a cactus. The present invention is characterized in manufacturing a functional natural antibiotic feed with excellent anti-bacteria and high iron content by using Sasa borealis and making silver (Ag) to colloid with a nanotechnology so that Sasa borealis absorbs and nanoirons and silvers are distributed in the leaf stem cells.
    • 本发明涉及使用新型材料的功能性天然抗生素饲料的制造方法。 仅在韩国济州岛栖息海滨的沙竹北极是一种多年生植物,叶片下方约有0.5毫米-1厘米的茎厚度,如宽5厘米,宽5厘米的狭窄叶端,像含有丰富矿物质的虹膜 Salicornia herbacea和许多纤维。 当切割叶子时,树脂会像仙人掌一样流出。 本发明的特征在于通过使用Sasa borealis制造具有优良抗细菌和高铁含量的功能性天然抗生素饲料,并用纳米技术将银(Ag)制成胶体,使得Sasa borealis吸收,并且纳米和银分布在叶中 干细胞。
    • 3. 发明公开
    • 새로운 소제를 이용한 활성탄제조 및 용도
    • 方法制备功能活化碳和使用
    • KR1020140028896A
    • 2014-03-10
    • KR1020120096254
    • 2012-08-30
    • 최명부최문규한구희한성익
    • 최명부최문규한구희한성익
    • C01B31/12C25B1/04
    • Y02E60/366C01B32/318A01G7/06C01G49/009C25B1/00
    • The present invention relates to manufacture of activated carbons using a novel material and the uses thereof. A technological key point is to provide functional activated carbon matters having a deodorant antibacterial effect, excellent adsorption of various organic matters and sterilizing power by having Shin-sul-lan (Sasa borealis) which is a perennial plant growing wild only on the beach of Jeju island in South korea as a carbonaceous matter; mixing nano-iron and nano-silver in water at a constant ratio using the Shinsullan; grinding Shinsullan which absorbs the nano-metal solution thereby containing nano-metals in the cell membrane of the stem leaves at a constant size; and firing the Shinsullan by blocking supply of oxygen at high-temperature of 500-600°C.
    • 本发明涉及使用新型材料制造活性炭及其用途。 技术要点是提供具有除臭抗菌效果的功能性活性炭物质,通过使用作为仅在济州海滩生长的多年生植物的Shin-sul-lan(Sasa borealis),可以很好地吸附各种有机物和消毒能力 南韩的岛屿为碳质物质; 使用Shinsullan以恒定比例混合纳米铁和纳米银在水中; 研磨吸收纳米金属溶液的Shinsullan,从而在茎的细胞膜中含有纳米金属以恒定的大小离开; 并通过在500-600℃的高温下阻止氧气供应来烧制Shinsullan。
    • 4. 发明公开
    • 기능성 우렁쉥이 채묘용 로프제조방법 그 용도
    • 方法制造功能ASCIDIAN SEEDING收集绳。
    • KR1020140065628A
    • 2014-05-30
    • KR1020120130847
    • 2012-11-16
    • 최문규심홍득한성익박귀동
    • 최문규심홍득한성익박귀동
    • A01K61/00D07B1/02
    • Y02A40/81
    • The present invention relates to a method for manufacturing a functional rope for collecting ascidian and a use thereof. Currently, a rope made of a coconut feed has been widely used as the rope for collecting ascidian. A chemical fiber yarn is contained in an inner core of the rope, causing environmental pollution; the length of a coconut yarn extracted from the coconut shell needs to be 10-15 cm to manufacture the rope; shortly collected coconut yarn is impossible to use and thus the rope can be manufactured through only manual labor; and even if the work is performed through mechanization, there is no workability, and thus the rope is twisted by hands, causing non-uniform articles and a drop in the economical effect. In order to solve the problems, the present invention provides a technology, in which the chemical fiber yarn contained in the inner core of the rope is developed into an eco-friendly inner core yarn; a short coconut yarn of 10 cm or shorter, which is such a size as not to manufacture the rope at the present, is used as a raw material for a rope and mass production can be realized through mechanization; and, while the rope for collecting ascidian is manufactured by mixing with the coconut yarn as a new natural material at a predetermined ratio, a colloidal solution having a small-grain special photo-material made by nanotechnology, that is, a photo-material having plentiful minerals and excellent far-infrared radiation and anion release, and a protein composition, are allowed to invade the rope at the time of manufacturing the rope, thereby providing a technology for manufacturing a functional rope for collecting ascidian. Further the present invention relates to a development of a rope having excellent durability or the like, which is widely used as a raw material for the technology in public works and landscape industries. ascidian, rope for collecting, coconut yarn, photo-nanomaterial, far-infrared, anion, mineral, protein.
    • 本发明涉及一种用于收集腹水的功能绳索的制造方法及其用途。 目前,由椰子饲料制成的绳索已被广泛用作收集海胆的绳索。 绳索的内芯中含有化纤纱线,造成环境污染; 从椰壳提取的椰子纱的长度需要10-15厘米来制造绳; 短时间收集的椰子纱是不可能使用的,因此绳索只能通过体力劳动制造; 即使通过机械化进行工作,也没有可操作性,因此绳子被手扭转,造成不均匀的物品和经济效果的下降。 为了解决上述问题,本发明提供一种技术,其中包含在绳索的内芯中的化纤纱线被展开成环保的内芯纱线; 作为绳索的原料,目前使用尺寸为不制造绳的10cm以下的短椰子纱可以通过机械化实现,可以实现大量生产。 并且,通过以规定的比例与作为新的天然材料的椰子纱混合来制造用于收集海绵体的绳索,通过纳米技术制造的具有小颗粒特殊光学材料的胶体溶液,即具有 许多矿物质和优良的远红外辐射和阴离子释放以及蛋白质组成在制造绳索时被允许侵入绳索,从而提供了一种用于制造用于收集海绵体的功能绳索的技术。 此外,本发明涉及广泛用作公共工程和景观工业技术的原料的具有优异的耐久性等的绳索的开发。 海绵体,收集绳,椰子纱,光纳米材料,远红外线,阴离子,矿物质,蛋白质。