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    • 1. 发明授权
    • 미역폐기물을 이용한 지렁이 먹이
    • 从废棕色海藻的蠕虫的食物
    • KR100318288B1
    • 2001-12-22
    • KR1019990042448
    • 1999-10-01
    • 박권필성낙준
    • 박권필성낙준
    • A23K1/18
    • 본발명은바다에버려지는미역폐기물에서알긴산을추출하고남은폐기물인디알기네이트와다른유기성폐기물인분뇨슬러지를재활용하여자원의절감과환경오염을방지하기위한디알기네이트의지렁이먹이화공법에관한것으로써, 미역의알긴산추출과정에서적합한알카리를선택하여디알기네이트의알카리성과수분함유율을조절해지렁이먹이조건을맞추고, 이디알기네이트에고형분뇨슬러지를혼합해분뇨슬러지내의미생물에의해겔상태의디알기네이트분해를촉진시켜지렁이먹이를만드는것을특징으로하는본 발명은미생물의호기성유기물분해를이용한폐기물처리방법으로써, 상기의먹이로지렁이를사육해이용할수 있고또 사육과정에서발생하는지렁이분변토는유기질비료또는토양개량제로서이용될수 있어버리는폐기물이하나없는경제적이고, 환경보전에기여하는발명이다. [대표도] 미역폐기물을이용한알긴산제조및 붉은지렁이의양식
    • 6. 发明公开
    • 원적외선 발생 전기전도성 발열몰탈 패널
    • 电导率和超高温微粒面板发射红外线
    • KR1020020079289A
    • 2002-10-19
    • KR1020010020299
    • 2001-04-10
    • 박권필정보홍
    • 박권필정보홍
    • C04B14/02
    • C04B41/009C04B28/04C04B28/06C04B38/02C04B41/4838C04B41/4884C04B41/5037C04B41/508C04B2111/00241C04B2111/00482C04B2111/26C04B2111/94Y02W30/92Y02W30/94C04B14/022C04B14/06C04B14/10C04B18/08C04B18/146C04B40/0204C04B40/0263
    • PURPOSE: Provided is an electrical conductive and exothermic mortar panel emitting far infrared rays by adding carbon and quartz porphyry to mortar, and coating mortar with insulation materials. The resultant panel has improved thermal efficiency, the uniformed temperature distribution, saved production cost and safety in use. CONSTITUTION: The mortar panel is produced by the following steps of: mixing raw materials, 5-20wt.% of carbon such as graphite, cokes, carbon black, etc., cement(alumina or portland cement), 30-50wt.% of fine aggregates(3-5mm sized sand), and powder admixture such as silica hume or fly ash, and 3-15wt.% of materials emitting far infrared rays such as quartz porphyry and yellow earth, wherein the amount of each material is based on the total weight of mortar; forming to a panel shape; coating the panel with one or more insulation materials, which is selected from urethane, alumina cement, yellow earth and water glass ceramic binder, containing hydrophobic materials such as teflon solution or a waterproofing agent; drying and evaporating solvent at 70-150deg.C for 2-4hrs by applying current, which results in the formation of pores emitting far infrared rays and preventing water permeation.
    • 目的:提供通过向砂浆中加入碳和石英斑岩发射远红外线的导电和放热砂浆板,并用绝缘材料涂覆砂浆。 所得面板具有改善的热效率,均匀的温度分布,节省生产成本和使用安全性。 构成:砂浆板通过以下步骤制造:混合原料,5-20重量%的碳如石墨,焦炭,炭黑等,水泥(氧化铝或波特兰水泥),30-50重量%的 细骨料(3-5mm尺寸的砂)和粉末混合物如二氧化硅休谟或飞灰,以及3-15重量%的发射远红外线的物质,如石英斑岩和黄土,其中每种材料的量基于 砂浆总重量; 形成面板形状; 用选自聚氨酯,氧化铝水泥,黄土和水玻璃陶瓷粘合剂中的一种或多种绝缘材料涂覆面板,其含有疏水材料如聚四氟乙烯溶液或防水剂; 通过施加电流在70-150℃干燥和蒸发溶剂2-4小时,这导致形成发射远红外线并防止水渗透的孔。
    • 9. 发明公开
    • 석회 및 유리섬유-함유 복합재료 조성물과 그 제조방법
    • 含氟玻璃纤维复合组合物及其制造方法
    • KR1020010001814A
    • 2001-01-05
    • KR1019990021268
    • 1999-06-08
    • 이정식박권필
    • 이정식박권필
    • C04B28/22C04B14/42
    • C04B14/42C01F11/18C04B22/143C04B28/10C04B2103/0092
    • PURPOSE: Provided is a manufacturing method of lime, glass fiber and gypsum-contained composite composition having porosity, and improved strength and durability. The resultant lime composite can be widely used for white construction materials. CONSTITUTION: The composite composition comprises 45-98wt.% of lime containing Ca(OH)2 and CaO, 1-7wt.% of glass fiber(0.5-3cm length) as a reinforcing material, and 0-50wt.% of gypsum as a binder. The more than 10wt.% or less than 10wt.% of gypsum-contained composite is manufactured by forming, then reacting with 0.5-2 atmospheric pressure of CO2 at up to 100°C for 12-30hrs. or at 100-500°C for 3-24hrs., respectively.
    • 目的:提供具有孔隙率,强度和耐久性提高的石灰,玻璃纤维和石膏复合组合物的制造方法。 所得石灰复合材料可广泛用于白色建筑材料。 构成:复合组合物包含45-98重量%的含Ca(OH)2和CaO,1〜7重量%的玻璃纤维(0.5-3cm长)作为增强材料的石灰和0-50重量%的石膏作为 粘合剂 通过在高达100℃下形成,然后与0.5-2大气压的CO 2反应12-30小时来制造含有10重量%或小于10重量%的含石膏复合材料。 或在100-500℃下分别3-24小时。
    • 10. 发明公开
    • 블럭 고분자의 미세상 분리에 의한 연료전지용 고분자전해질 막 제조
    • 聚合物薄膜聚合物薄膜分离聚合物电解薄膜制备方法
    • KR1020000058489A
    • 2000-10-05
    • KR1020000030511
    • 2000-05-17
    • 조규진박권필장종관
    • 조규진장종관박권필
    • H01M8/10B82Y30/00
    • Y02P70/56
    • PURPOSE: A method of fabricating a polymer electrolyte is provided to enhance proton conductivity and reduce influence of moisture content to the proton conductivity by fabricating a nano-tube shaped proton conduction path using fine phase separation of a block polymer. CONSTITUTION: A block polymer is fabricated by anion living polymerization to have suitably controlled fine phases. A polymer having high proton conductivity is fabricated by adding a substance which can be ionized to a hydrophilic phase of a block polymer suitably controlled in a nano-tube structure to closely compact proton clusters in hydrophilic phase parts of the fine phases, thereby to obtain the shortest passage required for movement of the proton clusters. This polymer electrolyte is used for a polymer electrolyte fuel cell so that a moisture supply is not required and high efficiency can be expected from high proton conductivity.
    • 目的:提供一种制备聚合物电解质的方法,以通过使用嵌段聚合物的细相分离制造纳米管形的质子传导路径来增强质子传导性并降低水分含量对质子传导性的影响。 构成:通过阴离子活性聚合制造嵌段聚合物以具有适当控制的细相。 具有高质子传导性的聚合物通过将适当控制在纳米管结构中的嵌段聚合物的亲水相加入到精细相的亲水相部分中的质子簇,从而得到 质子簇运动所需的最短通道。 该聚合物电解质用于聚合物电解质燃料电池,从而不需要水分供应,并且可以从高质子传导性预期高效率。