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    • 3. 发明授权
    • 액체 정제 장치 및 방법
    • 液体净化装置及方法
    • KR101399807B1
    • 2014-05-27
    • KR1020097006479
    • 2007-08-28
    • 스트라우스 워터 엘티디.
    • 윌더,하임돔,아브라함제이.
    • B01D35/00C02F1/00C02F103/02
    • C02F1/003C02F1/688C02F1/766C02F2101/103C02F2201/006C02F2303/04C02F2307/02C02F2307/04
    • 공급원 또는 저장용기로부터 정제된 액체 용기로 중력에 의해 흐르는 액체를 정제하는 액체 정제 시스템이 제공된다. 상기 시스템은 액체 처리 매질을 포함하는 전체적으로 수평의 여과 공간과 최상부 및 바닥을 갖는 하우징을 포함한다. 상기 필터의 최상부에 하나 이상의 액체 주입구가 있고 상기 필터의 바닥 부분에 하나 이상의 액체 배출구가 있다. 상기 하우징 내부에서, 상기 액체는 상기 액체 처리 매질을 통해 전체적으로 측면방향으로 흐른다. 하나의 실시태양에 따르면 여과 공간의 바닥 벽으로부터 상기 여과 공간 속으로 위쪽으로 연장하여 정점에서 끝나는 두 개 이상의 제1 벽들 및 상기 여과 공간의 최상부 벽으로부터 상기 여과 공간 속으로 아래쪽으로 연장하는 하나 이상의 제2 벽이 상기 하우징 내부에 형성된다. 상기 벽들 각각은 폐쇄 경로를 형성한다. 상기 제1 및 제2 벽들이 함께 상기 액체가 상기 주입구로부터 상기 배출구까지 곡선형 유로로 흐르게 한다. 상기 액체 유로를 따라 더 멀리 위치한 각 정점(apex)이 상기 유로를 따라 더 가까이에 위치한 제1 벽의 정점보다 더 낮게 위치하도록 상기 제1 벽들의 정점들이 형성된다. 다른 실시태양들도 설명된다.
      액체 필터, 여과 공간,
    • 4. 发明公开
    • 중금속 흡착제 및 이를 포함하는 필터장치
    • 吸收重金属和过滤装置,包括它们
    • KR1020130081012A
    • 2013-07-16
    • KR1020120001952
    • 2012-01-06
    • 삼성전자주식회사
    • 김현석강효랑권복순정준선함동진
    • B01J20/04B01J20/06B01J20/18B01D39/06
    • C02F1/283B01J20/06B01J20/18B01J20/28007B01J20/2803B01J20/28057B01J20/30B01J20/3204B01J20/3248B82Y30/00C02F1/281C02F2101/103C02F2101/20C02F2103/06
    • PURPOSE: A heavy metal absorbing agent, a method for manufacturing the same, and a filtering device comprising the same are provided to supply edible water by selectively absorbing and removing heavy metal ions from water containing minerals. CONSTITUTION: A heavy metal absorbing agent comprises heavy metal absorbing particles and a nitrogen oxide (NOx) functional group. The heavy metal absorbing particles are selected among inorganic oxides, graphite-based carbon, and a combination thereof. The nitrogen oxide functional group is applied to the surfaces of the heavy metal absorbing particles. In the NOx functional group, x is between 1 and 2, inclusively. The inorganic oxides are oxides containing atoms selected among transition metals, rare-earth metals, alkaline metals, alkaline earth metals, 13-group atoms, 14-group atoms, and a combination thereof. The heavy metal absorbing agent is nanoparticles with 1-100nm particle sizes. [Reference numerals] (AA) Permeability (%); (BB) Wave number (cm^-1); (CC) Example 1
    • 目的:提供重金属吸收剂及其制造方法以及包含该金属吸收剂的过滤装置,以通过选择性吸收和除去含有矿物质的重金属离子来提供食用水。 构成:重金属吸收剂包括重金属吸收颗粒和氮氧化物(NOx)官能团。 重金属吸收粒子选自无机氧化物,石墨基碳及其组合。 将氮氧化物官能团施加到重金属吸收粒子的表面。 在NOx官能团中,x在1和2之间,包括。 无机氧化物是含有选自过渡金属,稀土金属,碱金属,碱土金属,13-基原子,14-基原子以及它们的组合的原子的氧化物。 重金属吸收剂是粒径为1-100nm的纳米颗粒。 (标号)(AA)渗透性(%) (BB)波数(cm ^ -1); (CC)实施例1
    • 5. 发明公开
    • 폐수 처리용 유기-견운모를 제조하는 방법
    • 生产有机废水在废水中去除砷的方法
    • KR1020120139890A
    • 2012-12-28
    • KR1020110059423
    • 2011-06-20
    • 가톨릭관동대학교산학협력단
    • 이승목김무늬
    • B01J20/10C02F1/28C02F1/58
    • B01J20/22C02F1/285C02F2101/103
    • PURPOSE: A manufacturing method of organic sericite for wastewater treatment is provided to implement manufacturing processes for a short period of time under room temperature. CONSTITUTION: A manufacturing method of organic sericite for wastewater treatment includes the following steps: 0.3-0.5g of tetramethyl ammonium chloride-based synthetic organic materials are dissolved in 1 liter of distilled water; 4g of sericite is added into the dissolved product, and the mixture are stirred for 12 hours under room temperature to obtain a surface treated sericite solution; the surface treated sericite solution is poured onto a filtering medium; surface treated pure sericite is separated; and the sericite is dried to obtain surface treated sericite particles.
    • 目的:提供一种用于废水处理的有机绢云母的制造方法,以在室温下短时间内实施制造工艺。 构成:用于废水处理的有机绢云母的制造方法包括以下步骤:将0.3-0.5g四甲基氯化铵基合成有机材料溶解在1升蒸馏水中; 将4g绢云母加入溶解的产物中,将混合物在室温下搅拌12小时,得到表面处理的绢云母溶液; 将表面处理的绢云母溶液倒入过滤介质中; 表面处理纯绢云母分离; 将绢云母干燥,得到表面处理绢云母颗粒。
    • 8. 发明公开
    • 냉각탑용 수 처리를 위한 방법과 통합 시스템 및 물로부터 실리카의 제거를 필요로 하는 공정
    • 用于冷却水的方法和整体系统以及需要从水中除去二氧化硅的方法
    • KR1020090024274A
    • 2009-03-06
    • KR1020097001278
    • 2007-06-18
    • 디아즈 곤잘레스 알코세르, 쥬앙 죠르주
    • 디아즈곤잘레스알코세르,쥬앙죠르주
    • C02F1/60C02F1/46C02F5/00
    • C02F9/00C02F1/001C02F1/46C02F1/4602C02F1/463C02F1/5245C02F1/66C02F1/68C02F1/766C02F1/78C02F5/00C02F2001/007C02F2101/103C02F2101/20C02F2103/023C02F2201/46125C02F2201/784C02F2209/05C02F2209/06C02F2303/04Y02E60/366
    • The present invention relates to an integral system for treating the water for cooling towers and other processes such as reverse osmosis rejection, regeneration of the anionic units of demineralization systems, aircraft blue water and wastewater, in which it is desired to reduce and/or eliminate contaminants such as silica, total, of calcium and magnesium hardness, suspended solids, organic matter and microorganisms, heavy metals, detergents or arsenic, for obtaining a water quality that enables it to be reused in different industrial processes, generating savings in terms of water and chemicals. The system is characterized in that the water to be treated passes through an electrochemical cell with plates of aluminium, iron or some other metal, and, when an electric current is applied at an amperage that allows an optimum current density to yield the aluminium required to form a hydroxide of aluminium, iron or some other metal, which, when reacting with the contaminants present in the water to be treated, forms an iodine that is later separated out from the water, enabling the treated water to be reused by this system, by integrating the processes of filtration and ozonization it enables better water quality to be obtained for reuse in cooling towers, industrial processes, general services, irrigation of green areas or any other use. The technological innovation in the present invention is that it totally eliminates the silica present in industrial water, allowing reuse of this water in different processes owing to the quality obtained. In addition to reducing the calcium and magnesium hardness salt concentration, preventing the formation of encrustations and, in cooling-tower systems, making it possible to increase concentration cycles, thereby generating savings of water and chemicals, it reduces microbiological proliferation, which will enable industry in general to replace conventional industrial water-treatment programmes with this new technological alternative. The advantages and benefits of the present invention are that it allows reuse and recycling of 100% of the water that has to be discarded in cooling towers, reverse osmosis rejection, regeneration of the anionic units of demineralization systems and wastewater from industry, generating financial savings by allowing reuse of the water that it is currently necessary to discard, thereby reducing the quantity of required chemicals essential for cooling towers and wastewater, reducing the impact on the environment caused by water being discarded with a contaminants and chemicals content that makes it impossible for it to be reused. Furthermore, it allows the elimination of the contaminants present in the water from wells that contain contaminants such as arsenic, cyanide, iron, manganese and microorganisms, enabling the water to be used for drinking.
    • 本发明涉及一种用于处理冷却塔水的整体系统和其它方法,例如反渗透排除,脱盐系统阴离子单元的再生,飞机蓝水和废水,其中希望减少和/或消除 污染物如二氧化硅,总钙,镁硬度,悬浮固体,有机物和微生物,重金属,洗涤剂或砷,用于获得水质,使其能够在不同的工业过程中重复使用,从而节约了水 和化学品。 该系统的特征在于待处理的水通过具有铝,铁或其他金属的板的电化学电池,并且当电流以电流强度施加以允许最佳电流密度产生所需的铝 形成铝,铁或其他金属的氢氧化物,当与待处理的水中存在的污染物反应时,形成碘,其随后从水中分离出来,使得经处理的水能够被该系统再利用, 通过整合过滤和臭氧化的过程,可以获得更好的水质,以便在冷却塔,工业过程,一般服务,绿地灌溉或任何其他用途中重新使用。 本发明的技术创新是完全消除了工业用水中存在的二氧化硅,由于所获得的质量,可以在不同的工艺中再利用这种水。 除了减少钙和镁的硬度盐浓度外,防止结垢形成,在冷却塔系统中,可以增加浓缩循环,从而节约水和化学物质,从而减少微生物的扩散,从而使行业 一般来说,用这种新的技术替代方案取代传统的工业水处理方案。 本发明的优点和优点是允许在冷却塔中必须丢弃的100%的水的再利用和回收,反渗透排除,脱盐系统的阴离子单元的再生和来自工业的废水,产生经济上的节省 通过允许重新使用目前需要丢弃的水,从而减少冷却塔和废水所必需的化学品的数量,减少由被污染物和化学物质含量丢弃的水造成的对环境的影响,这使得不可能 它被重用。 此外,它允许从含有诸如砷,氰化物,铁,锰和微生物等污染物的井中消除存在于水中的污染物,使得水能够用于饮用。