Abstract:
본 발명은 산성수와 알칼리수 및 약알칼리수를 얻을 수 있는 전기분해정수기에 적용되는 전해조에 관한 것으로, 특히 전해 효율을 증가토록 하면서 제작의 용이성과 경제성은 물론 전해조의 하자발생을 제거토록 하면서 정수기에 장착의 용이성을 제공하고자 하는 것입니다. 이를 위하여 1차 전기분해에서 발생되어지는 산성수와 2차 전기분해에서 발생되는 산성수를 한곳에서 모아 배출토록 하고, 2차 전기분해과정에서의 전극판을 망체로 구현하여 이온의 흐름을 원활하게 함은 물론 이러한 전극판의 사이에 게재되는 격막의 테두리에 기밀유지요소를 구비하여 이온분리된 물의 정확한 차단이 가능토록 한 것이다. 또한 전해조에 정수기에의 장착을 위한 수단과 전해조의 기밀유지를 위한 수단을 구비함으로서 종전에 발생되는 문제점을 해소토록 한 것이다.
Abstract:
본 발명은 정수기에 관한 것으로, 특히 물을 정수시키는 필터의 장착 및 교환이 용이하면서도 정수기 작동을 위한 전자제어 기판과 물을 정수시키기 위한 필터 등의 부품을 하나의 메인보드 양면으로 각각 장착하여 정수기 케이스의 조립이 용이토록 한 것이다. 종래에는 케이스의 내측에 필터와 솔레노이드밸브와 배관 등의 기구부품과 이를 제어하는 조작부와 기판 등의 전자부품을 일괄적으로 설치토록 함으로써 조립이 어렵고 복잡하였으며 이로 인해 생산성이 저하되는 문제와 필터를 주기적으로 교환할 경우에도 구조가 복잡하고 조립이 어렵기 때문에 상당히 불편하였다. 따라서 본 고안은 케이스의 내측에 일면에 필터가 장착되는 필터하우징이 일체로 형성되고 상기 필터하우징과 연결되어 출수를 위한 배관 및 솔레노이드밸브와 정수된 물을 전기분해하는 전해조 등의 기구부품이 장착되는 장착부가 형성되고 타면에는 솔레노이드밸브와 전해조를 제어하고 조작부를 제어하는 전자제어 기판 등의 전자부품이 장착되는 메인보드를 사용함으로써 케이스 내부에 간단한 조립토록 한 것이다.
Abstract:
PURPOSE: A dual electrolyzer of a water purifier based on electrolysis is provided to obtain the sufficient amount of alkaline water by accurately separating the alkaline water based on electrolysis. CONSTITUTION: A dual electrolyzer of a water purifier separates inflow water into acid water and alkaline water by primary electrolysis. The acid water flows into an acid water storage bath. The alkaline water is secondarily electrolyzed into acid water, strong alkaline water, and weak alkaline water. The acid water and the strong alkaline water are discharged. The weak alkaline water is supplied as drinking water. The acid water is discharged with the acid water which is separated by the secondary electrolysis. The strong and weak alkaline water is respectively discharged. A polar plate is made of a net body in the secondary electrolysis process. A sealing component is arranged on the frame of the polar plate.
Abstract:
The present invention relates to an electrolytic tank for an electrolysis water purifier which is capable of obtaining acidic water, alkaline water, and weak alkaline water, to provide the improvement of electrolysis efficiency, manufacturing availability, economic feasibility, and the removal of malfunctions of the electrolytic tank, and to enable users to easily mount the electrolytic tank to the water purifier. For this, the electrolytic tank collects acidic water generated from first electrolysis and acidic water generated from second electrolysis at one place for discharging, smoothens the flow of ions by forming electrode plates into a net form during the second electrolysis, and accurately blocks the ion-separated water by including an airtight maintaining element on the edge of a partition wall installed among the electrode plates. The electrolytic tank includes a unit for maintaining the air tightness of the electrolytic tank and a unit for mounting the electrolytic tank to the water purifier for preventing exiting problems.
Abstract:
The present invention relates to an electrolytic tank of an electrolysis water purifier which is capable of obtaining acidic water, alkaline water, and weak alkaline water, to provide an improvement in electrolysis efficiency, manufacturing availability, economic feasibility, and the removal of malfunctions of the electrolytic tank, and to enable users to easily mount the electrolytic tank to the water purifier. The electrolytic tank collects acidic water generated from first electrolysis and acidic water generated from second electrolysis in one place for discharging, smoothens the flow of ions by forming electrode plates into a net form during the second electrolysis, and accurately blocks the ion-separated water by including an airtight maintaining element on the edge of a partition wall installed among the electrode plates. The electrolytic tank includes a unit for maintaining the air tightness of the electrolytic tank and a unit for mounting the electrolytic tank to the water purifier for preventing existing problems.
Abstract:
The present invention relates to an electrolytic tank of an electrolysis water purifier which can obtain acidic water, alkaline water, and weak alkaline water, to provide the improvement of electrolysis efficiency, manufacturing availability and economic feasibility, and the removal of malfunctions of the electrolytic tank, and to enable users to easily mount the electrolytic tank to the water purifier. For this, the electrolytic tank collects acidic water generated from first electrolysis and acidic water generated from second electrolysis at one place for discharging, smoothens the flow of ions by forming electrode plates into a net form during the second electrolysis, and accurately blocks the ion-separated water by including an airtight maintaining element on the edge of a partition wall installed among the electrode plates. The electrolytic tank includes a unit for maintaining the air tightness of the electrolytic tank and a unit for mounting the electrolytic tank to the water purifier for preventing exiting problems.
Abstract:
PURPOSE: A breathing lid for a container is provided to receive fresh air from the outside by blocking the inflow of harmful microbe. CONSTITUTION: A partition (11) in which a plurality of grooves is formed is formed on a lid body (10). A middle hole film (20) is exposed to a lower side of the partition. Filling (30) is filled in the partition of the lid body and is matched with an upper surface of the lid body. An anti-return board (40) prevents the back flowing of the content in a container. A protective cap (50) is inserted into the lid body through a penetration hole. A plurality of holes (12) is formed at the partition to ventilate air.
Abstract:
PURPOSE: An electrolysis water purifier capable of adjusting the amount of water which is discharged is provided to minimize problems about the water purifier, and to stably maintain pH of functional electrolytic ionized water. CONSTITUTION: An electrolysis water purifier includes a first electrolytic cell and a second electrolytic cell. The first electrolytic cell is divided into a first cleaning water producing electrode chamber(12) and a cleaning water producing electrode chamber(13). The second electrolytic cell is divided into a second cleaning water producing electrode chamber(23), a cleaning water producing electrode chamber(24), and a drinking water producing electrode chamber(25). A washing water adjusting pine is formed on each cleaning water outlet.