KR20130026112A - Hydrogen water purifying device - Google Patents

Hydrogen water purifying device Download PDF

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KR20130026112A
KR20130026112A KR1020110089524A KR20110089524A KR20130026112A KR 20130026112 A KR20130026112 A KR 20130026112A KR 1020110089524 A KR1020110089524 A KR 1020110089524A KR 20110089524 A KR20110089524 A KR 20110089524A KR 20130026112 A KR20130026112 A KR 20130026112A
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water
active hydrogen
hydrogen
adjusting means
acidic
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KR101318577B1 (en
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정명자
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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/68Treatment of water, waste water, or sewage by addition of specified substances, e.g. trace elements, for ameliorating potable water
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • C02F1/002Processes for the treatment of water whereby the filtration technique is of importance using small portable filters for producing potable water, e.g. personal travel or emergency equipment, survival kits, combat gear
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/66Treatment of water, waste water, or sewage by neutralisation; pH adjustment

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Health & Medical Sciences (AREA)
  • Medicinal Chemistry (AREA)
  • Water Treatment By Sorption (AREA)

Abstract

PURPOSE: A hydrogen water purifier is provided to provide hydrogen water with a pH which is appropriate for potable water while having a high concentration of active hydrogen; and to utilize an existing purifier as a hydrogen water purifier by simply and additionally installing an active hydrogen generation means and a pH control means. CONSTITUTION: A hydrogen water purifier comprises a purifying means(10); an active hydrogen generation means(20); a pH control means(30); a water storage tank(40); and a discharge cock(50). The active hydrogen generation means is arranged at the back of the purifying means, and a metal(22) with a higher ionization tendency than hydrogen is equipped inside of the active hydrogen generation means. The hydrogen generation means increases the active hydrogen concentration in water that passes through the purifying means. The water storage tank stores the water that passed through the pH control means to lower the ph of water that passed through the active hydrogen generation means. The pH control mean is installed at the back of the active hydrogen generation means. The discharge cock discharges the water that is stored in the water storage tank.

Description

수소수 정수기{Hydrogen water purifying device}Hydrogen water purifier

본 발명은 수소수 정수기에 관한 것으로서, 보다 상세하게는 활성수소의 농도가 높으면서도 음용수 수질 기준에 적합한 pH를 가지는 수소수를 제조할 수 있는 새로운 구성의 소수수 정수기에 관한 것이다.
The present invention relates to a hydrogen water purifier, and more particularly, to a hydrophobic water purifier having a new configuration capable of producing hydrogen water having a high concentration of active hydrogen and having a pH suitable for drinking water quality standards.

활성산소는 체내 대사과정에서 발생되는 산화력이 높은 산소로서, 각종 질병과 노화의 원인이 된다. 따라서 질병을 예방하고, 노화를 방지하기 위해 체내의 활성산소를 제거해 줄 필요가 있다.Free radicals are highly oxidative oxygen generated in the body's metabolic processes, causing various diseases and aging. Therefore, it is necessary to remove free radicals in the body to prevent disease and prevent aging.

최근에는 이러한 활성산소를 없애는 항산화물질로 활성수소가 주목받고 있다. 통상, 수소는 수소원자가 2개 결합한 분자상태(H2)로 존재하나, 드물게 수소원자의 분자결합이 와해되어 수소원자가 단독으로 존재하는 경우가 발생한다. 이렇게 단독으로 존재하는 수소원자(H)를 활성수소라고 부른다. 이러한 활성수소는 인체 내의 활성산소와 결합하여 물을 생성함으로써 체내의 활성산소를 제거한다. Recently, active hydrogen is attracting attention as an antioxidant that removes such active oxygen. Typically, the hydrogen is molecular bonding of the one present in the molecular state (H 2) that combines the two hydrogen atoms, a hydrogen atom is rarely collapse occurs when present alone a hydrogen atom. The hydrogen atom (H) that exists alone is called active hydrogen. Such active hydrogen removes free radicals in the body by generating water in combination with free radicals in the human body.

한편, 활성소수의 농도를 높인 물을 '수소수'라 칭하며, 수소수를 생성하는 수소수 정수기가 제공되고 있다. 수소수를 생성하는 방식에는 물을 전기분해하는 전해방식과, 수소보다 이온화경향이 큰 금속을 이용하는 무전해방식이 있는데, 무전해방식은 전해조가 요구되는 전해방식에 비해 정수기의 구성이 간단한 장점이 있다. On the other hand, water with a high concentration of active hydrogen is called 'hydrogen water', and a hydrogen water purifier for generating hydrogen water is provided. There are two methods of generating hydrogen water: an electrolysis method of electrolyzing water and an electroless method using a metal having a larger ionization tendency than hydrogen. The electroless method has a simpler structure than a electrolytic method requiring an electrolytic cell. have.

무전해방식은 마그네슘이나 칼슘 등의 수소보다 이온화경향이 큰 금속을 이용하는 것으로서, 이들 금속이 물과 접촉되면, 수소보다 이온화경향이 큰 금속이 양이온으로 산화되고, 물은 OH-와 H+로 해리된다. 그리고 해리된 H+의 일부는 이온상태 또는 수소원자상태로 물속에 잔존되어 활성수소의 농도가 상승되고, 일부는 수소가스로 되어 이탈된다. 한편, 이러한 과정에서 OH-가 생성됨에 따라 물의 pH가 상승된다. The electroless method uses metals having a larger ionization tendency than hydrogen such as magnesium or calcium. When these metals come into contact with water, metals having a larger ionization tendency than hydrogen are oxidized to cations, and water is dissociated into OH - and H + . do. Part of the dissociated H + remains in the water in an ionic state or a hydrogen atom state to increase the concentration of active hydrogen, and part of the H + is released as hydrogen gas. On the other hand, as OH is generated in this process, the pH of water is increased.

음용수 수질 기준에 따르면, 음용수의 pH를 5.8~8.5로 규정하고 있다. 그러나 전술한 바와 같이 활성수소가 생성됨에 따라 수소수의 pH가 상승되기 때문에, 상대적으로 높은 수준으로 활성수소를 생성시키면, 물의 pH가 음용수 수질 기준 보다 높게 되어 음용수로 활용하지 못하게 된다. 이러함에도 불구하고, 종래에는 수소수의 pH를 조절하는 방법이 제안되지 못하였다.
According to drinking water quality standards, drinking water has a pH of 5.8 to 8.5. However, since the pH of the hydrogen water is increased as the active hydrogen is generated as described above, when the active hydrogen is generated at a relatively high level, the pH of the water is higher than the drinking water quality standard, and thus cannot be used as drinking water. Despite this, conventionally, a method of adjusting the pH of hydrogen water has not been proposed.

대한민국 실용신안공보 제20-0372282호(2004. 12. 29.)Republic of Korea Utility Model Publication No. 20-0372282 (2004. 12. 29.)

본 발명은 상기의 문제점을 해결하기 위한 것으로서, 본 발명의 목적은 활성수소의 농도가 상대적으로 높으면서도 음용수 수질 기준에 적합한 pH를 가지는 수소수를 제조할 수 있으며, 구성도 간단한 새로운 수소수 정수기를 제공하는 것이다.
The present invention is to solve the above problems, an object of the present invention is to produce a hydrogen water purifier having a relatively high concentration of active hydrogen and having a pH suitable for drinking water quality standards, simple configuration also new hydrogen water purifier To provide.

본 발명의 특징에 따르면, 외부로부터 유입되는 물을 정수하는 정수수단(10)과; 상기 정수수단(1))의 후단에 배치되며, 수소보다 이온화경향이 큰 금속(22)이 하우징(29)에 내장되어 이루어져서 상기 정수수단(10)을 통과한 물의 활성수소 농도를 증가시키는 활성수소생성수단(20)과; 상기 활성수소생성수단(20)의 후단에 배치되며, 상기 활성수소생성수단(20)을 통과한 물의 pH를 저하시키는 pH조절수단(30)과; 상기 pH조절수단(30)을 통과한 물이 저장되는 저수탱크(40)와; 상기 저수탱크(40)에 저장된 물을 외부로 배출시키는 배출콕(50);을 포함하여 이루어진 것을 특징으로 하는 수소수 정수기가 제공된다.According to a feature of the invention, the water purifying means 10 for purifying water introduced from the outside; An active hydrogen disposed at the rear end of the water purification means 1 and having a metal 22 having a larger ionization tendency than hydrogen is embedded in the housing 29 to increase the active hydrogen concentration of water passing through the water purification means 10. Generating means 20; A pH adjusting means (30) disposed at a rear end of the active hydrogen generating means (20), the pH adjusting means (30) of reducing the pH of the water passing through the active hydrogen generating means (20); A water storage tank 40 in which water passing through the pH adjusting means 30 is stored; It is provided with a hydrogen water purifier comprising a; discharge cock 50 for discharging the water stored in the water storage tank 40 to the outside.

본 발명의 다른 특징에 따르면, 상기 pH조절수단(30)은 산성광물로 이루어진 것을 특징으로 하는 수소수 정수기가 제공된다.
According to another feature of the invention, the pH adjusting means 30 is provided with a hydrogen water purifier, characterized in that made of acidic minerals.

본 발명의 또 다른 특징에 따르면, 상기 수소보다 이온화경향이 큰 금속(22)은 활성탄 분말에 혼합되어 파이프(21)로 성형되고, 상기 pH조절수단(30)은 산성광물(32)로 이루어져서 상기 파이프(21)에 혼입되거나 또는 파이프(21) 내부에 충전되어 상기 활성수소생성수단(20)과 pH조절수단(30)이 하나의 유니트로 이루어진 것을 특징으로 하는 수소수 정수기가 제공된다.
According to another feature of the present invention, the metal 22 having a larger ionization tendency than the hydrogen is mixed with the activated carbon powder to be formed into a pipe 21, and the pH adjusting means 30 is made of an acidic mineral 32 Hydrogen water purifier is provided, characterized in that the active hydrogen generation means 20 and the pH adjusting means 30 is composed of one unit is incorporated into the pipe 21 or filled in the pipe 21.

본 발명의 또 다른 특징에 따르면, 상기 pH조절수단(30)은 산성백토 또는 산성제올라이트, 산성규조토 중에서 적어도 하나 이상으로 선택되는 것을 특징으로 하는 수소수 정수기가 제공된다.
According to another feature of the invention, the pH adjusting means 30 is provided with a hydrogen water purifier, characterized in that at least one selected from acidic clay, acid zeolite, acidic diatomaceous earth.

이상과 같은 구성을 가지는 본 발명은 수소수의 pH를 감소시키기 위한 pH조절수단(30)이 구비된다. 따라서 본 발명에 의한 정수기에 의해서는 활성수소의 농도가 높으면서도 pH가 음용수 수질 기준에 적합한 수소수가 제공된다. The present invention having the configuration as described above is provided with a pH adjusting means 30 for reducing the pH of the hydrogen water. Therefore, the water purifier according to the present invention provides hydrogen water having a high concentration of active hydrogen and a pH suitable for drinking water quality standards.

특히, pH조절수단(30)이 산성광물로 이루어지기 때문에, 수소수의 pH가 조절되면서도 이들 산성광물에 의해 수소수의 미네랄이 풍부해진다. 또한, 본 발명은 활성수소생성수단(20)과 pH조절수단(30)을 기존의 정수기에 간단히 추가 설치함으로써, 기존의 정수기를 수소수 정수기로 활용이 가능하다. In particular, since the pH adjusting means 30 is made of an acidic mineral, the acidic minerals are rich in minerals of the hydrogen water while the pH of the hydrogen water is adjusted. In addition, the present invention by simply adding the active hydrogen generating means 20 and the pH adjusting means 30 to the existing water purifier, it is possible to utilize the existing water purifier as a hydrogen water purifier.

뿐만 아니라, pH조절수단(30)이 활성수소생성수단(20)의 하우징(29)에 내장되면, 활성수소생성수단(20)과 pH조절수단(30)이 하나의 유니트를 이루기 때문에 활성수소생성수단(20)과 pH조절수단(30)을 정수기에 설치하고 관리하기가 용이한 장점이 있다. In addition, when the pH adjusting means 30 is embedded in the housing 29 of the active hydrogen generating means 20, the active hydrogen generating means 20 and the pH adjusting means 30 form one unit, thereby generating active hydrogen. The means 20 and the pH adjusting means 30 are easy to install and manage in the water purifier.

도 1은 본 발명의 일 실시예에 따른 정수기의 단면도
도 2는 상기 실시예에 따른 활성수소생성수단 및 pH조절수단의 단면도
도 3은 본 발명의 다른 실시예에 따른 정수기의 단면도
도 4 내지 5는 본 발명의 다른 활성수소생성수단과 pH조절수단의 단면도
1 is a cross-sectional view of a water purifier according to an embodiment of the present invention.
2 is a cross-sectional view of the active hydrogen generating means and the pH adjusting means according to the embodiment
3 is a cross-sectional view of a water purifier according to another embodiment of the present invention.
4 to 5 are cross-sectional views of other active hydrogen generating means and pH adjusting means of the present invention

이하에서 도면을 참조하여 본 발명의 바람직한 실시예를 설명한다.Hereinafter, preferred embodiments of the present invention will be described with reference to the drawings.

도 1은 본 발명의 일 실시예에 따른 정수기 단면도이고, 도 2는 활성수소생성수단과 pH조절수단의 단면도이다. 도시된 바와 같이, 본 발명은 외부로부터 유입되는 물을 정수하는 정수수단(10)과, 상기 정수수단(10)을 통해 정수된 물의 활성수소농도를 증가시키는 활성수소생성수단(20)과, 상기 활성수소생성수단(20)을 통해 처리된 물의 pH를 저하시키는 pH조절수단(30)과, 상기 pH조절수단(30)을 통과한 물이 저장되는 저수탱크(40)와, 상기 저수탱크(40)에 저장된 물을 외부로 배출시키는 배출콕(50)이 순차적으로 연결되어 이루어진다.1 is a cross-sectional view of the water purifier according to an embodiment of the present invention, Figure 2 is a cross-sectional view of the active hydrogen generation means and pH adjusting means. As shown, the present invention is purified water means 10 for purifying the water flowing from the outside, active hydrogen generation means 20 for increasing the active hydrogen concentration of the purified water through the purified water means 10, and PH control means 30 for lowering the pH of the water treated through the active hydrogen generation means 20, the water storage tank 40, the water passing through the pH control means 30 is stored, and the water storage tank 40 A discharge cock 50 for discharging the water stored in the outside to the outside is made in sequence.

상기 정수수단(10)과, 활성수소생성수단(20)과, pH조절수단(30) 및 저수탱크(40)는 급수라인을 통해 연결되어 정수기 외장케이스(2)에 내장되며, 이 외장케이스(2) 전면에는 상기 저수탱크(40)에 연결되어 물을 외부로 배출시키는 배출콕(50)이 설치된다.The water purifying means 10, the active hydrogen generating means 20, the pH adjusting means 30 and the reservoir tank 40 are connected to the water supply line to be embedded in the water purifier outer case (2), the outer case ( 2) The discharge cock 50 is connected to the water storage tank 40 to discharge the water to the outside.

상기 정수수단(10)은 다수개의 필터로 이루어진다. 이러한 필터는 침전필터(12), 프리카본필터(14), 중공사막필터(16) 등으로 이루어진다. 이러한 필터들은 일반적으로 정수기에 사용되는 필터로서 구체적인 설명은 생략한다. The water purifying means 10 is composed of a plurality of filters. Such a filter is composed of a precipitation filter 12, a free carbon filter 14, a hollow fiber membrane filter 16 and the like. These filters are generally used in water purifiers, and detailed descriptions thereof will be omitted.

외부에서 유입되는 물은 이 정수수단(10)을 통해 정수되어 활성수소생성수단(20)으로 유입된다. 수소생성수단(20)은 마그네슘(Mg), 칼슘(Ca) 등과 같이 수소보다 이온화경향이 큰 금속(22)이 하우징(29)에 내장되어 이루어진다. 바람직하게는 도 2에 도시된 바와 같이, 상기 금속(22)은 분말형태로 활성탄분말에 혼합되어 파이프(21)로 성형되어 하우징(29)에 내장되는데, 하우징(29)에는 입수공(27)과 출수공(28)이 형성되어 정수수단(10)을 통과한 물이 상기 입수공(27)을 통해 유입되어 상기 원형관(21)을 외측에서 내측으로 통과하여 배수공(28)으로 배수된다. Water introduced from the outside is purified through this water purification means 10 and flows into the active hydrogen generation means 20. Hydrogen generating means 20 is made of a metal (22) having a larger ionization tendency than hydrogen, such as magnesium (Mg), calcium (Ca) is embedded in the housing 29. Preferably, as shown in FIG. 2, the metal 22 is mixed with activated carbon powder in the form of a powder, molded into a pipe 21, and embedded in the housing 29, and the receiving hole 27 is provided in the housing 29. The water extraction hole 28 is formed and the water passing through the water purifying means 10 is introduced through the water inlet 27 and passes through the circular tube 21 from the outside to the inside is drained to the drain hole (28).

활성수소생성수단(20)으로 물이 유입되면 상기 수소보다 이온화경향이 큰 금속(22)은 양이온으로 산화되고, 물은 OH-와 H+로 해리된다. 그리고 해리된 H+의 일부는 이온상태 또는 수소원자상태로 물속에 잔존되고 일부는 수소가스로 이탈된다. When water is introduced into the active hydrogen generation means 20, the metal 22 having a larger ionization tendency than the hydrogen is oxidized to a cation, and water is dissociated into OH and H + . Part of the dissociated H + remains in the water in an ionic state or a hydrogen atom state, and part of the H + is released into the hydrogen gas.

한편, 활성수소생성수단(20)에서 상기와 같은 반응이 일어남에 따라 물의 OH-농도가 증가되어 물의 pH가 상승된다. 상기 pH조절수단(30)은 활성수소생성수단(20)에서 발생되는 OH-를 중화시켜 물의 pH를 낮추기 위한 것이다. pH조절수단(30)은 산성광물로 이루어진다. 산성광물은 산성을 띄는 광물로서, 광물자체가 산성을 띌 수도 있고, 인위적인 산처리에 의해 산성을 띌 수도 있다. 산처리는 광물을 20~40% 황산에 침지하여 1~5 시간 동안 가열하여 이루어진다. pH조절수단(30)으로는 산성백토(활성백토) 또는 산성제올라이트, 산성규조토 등이 사용된다. On the other hand, as the reaction occurs in the active hydrogen generating means 20, the OH concentration of the water is increased to increase the pH of the water. The pH adjusting means 30 is to lower the pH of water by neutralizing OH generated from the active hydrogen generating means 20. pH adjusting means 30 is made of an acidic mineral. Acid minerals are acidic minerals, and the minerals themselves may be acidic, or may be acidic by artificial acid treatment. The acid treatment is accomplished by immersing the mineral in 20-40% sulfuric acid and heating it for 1-5 hours. As the pH adjusting means 30, acidic clay (active clay) or acidic zeolite, acidic diatomaceous earth, or the like is used.

이러한 pH조절수단(30)은 상기 활성수소생성수단(20) 후단에 연결되는 하우징(39)에 분말상으로 내장되거나 상기 활성수소생성수단(20)을 이루는 금속처럼 활성탄분말과 혼합되어 파이프로 형성되어 하우징(39)에 내장될 수도 있다. 물이 pH조절수단(30)을 통과하면 수중의 OH-가 산성광물에 흡착되어 중화되고, 이에 따라 물의 pH가 저하된다. The pH adjusting means 30 is formed in the housing 39 connected to the rear end of the active hydrogen generating means 20 in powder form or mixed with activated carbon powder as a metal forming the active hydrogen generating means 20 to form a pipe. It may be embedded in the housing 39. When water passes through the pH adjusting means 30, OH in the water is adsorbed by the acidic minerals and neutralized, thereby lowering the pH of the water.

도 3 내지 도 6는 pH조절수단(30)이 활성수소생성수단(20)의 하우징(29)에 내장되어 pH조절수단(30)과 활성수소생성수단(20)이 하나의 유니트로 구성된 것을 보여준다. 도 3에서는 정수수단(10)의 중공사막필터(16)가 활성수소생성수단(20) 및 pH조절수단(30) 후단에 설치된 것으로 도시되었다. 3 to 6 show that the pH adjusting means 30 is embedded in the housing 29 of the active hydrogen generating means 20 so that the pH adjusting means 30 and the active hydrogen generating means 20 are configured as one unit. . In FIG. 3, the hollow fiber membrane filter 16 of the water purifying means 10 is installed at the rear end of the active hydrogen generating means 20 and the pH adjusting means 30.

도 4는 pH조절수단(30)이 활성수소생성수단(20)을 이루는 금속(22)과 함께 활성탄과 혼합되어 파이프(21)로 성형된 것을 보인 것이고, 도 5는 pH조절수단(30)이 활성수소생성수단(20)을 이루는 금속(22)으로 성형된 파이프(21) 내부에 충전된 것을 보인 것이다. 4 shows that the pH adjusting means 30 is mixed with activated carbon together with the metal 22 constituting the active hydrogen generating means 20 and formed into a pipe 21. FIG. 5 shows that the pH adjusting means 30 is It is shown that the inside of the pipe 21 is formed of a metal 22 forming the active hydrogen generating means 20.

그리고 도 6은 활성수소생성수단(20)의 하우징(29)에 pH조절수단(30)을 이루는 산성광물이 순차적으로 충전된 것을 보인 것이데, 활성수소생성수단(20)을 이루는 금속(22)은 활성탄분말과 혼합되어 하우징(29)의 입수공(27)에 근접되는 부분에 채워지고, pH조절수단(30)을 이루는 산성광물의 분말은 하우징(29)의 배수공(28)에 근접되는 부분에 채워진다. 그리고 하우징(29) 내부에는 활성탄분말(23)이 부분적으로 채워진다. 6 shows that the acidic minerals constituting the pH adjusting means 30 are sequentially filled in the housing 29 of the active hydrogen generating means 20, the metal 22 forming the active hydrogen generating means 20. Silver is mixed with activated carbon powder and filled in the portion close to the inlet 27 of the housing 29, and the powder of the acidic minerals forming the pH adjusting means 30 is the portion close to the drain 28 of the housing 29. Is filled in. The activated carbon powder 23 is partially filled in the housing 29.

이와 같이 활성수소생성수단(20)과 pH조절수단(30)의 구성은 다양하게 변형이 가능한데, 정수기의 통수량에 따라 적합한 구성으로 선택된다. 통수량이 분당 200cc 이하 정도로 상대적으로 통수량이 적은 경우에는 도 4에 도시된 바와 같이, pH조절수단(30)이 활성수소생성수단(20)을 이루는 금속과 함께 파이프(21)로 성형되는 구성이 적합하며, 통수량이 분당 700~800cc 정도로 상대적으로 통수량이 많은 경우에는 도 6에 도시된 바와 같이, pH조절수단(30)이 활성수소생성수단(20)의 하우징(29) 일측에 채워지는 구성이 적합하다. 그리고 통수량이 분단 200cc 이상에서 700cc이하인 경우에는 도 5에 도시된 바와 같이 구성하는 것이 바람직하다. Thus, the configuration of the active hydrogen generating means 20 and the pH adjusting means 30 can be modified in various ways, according to the water flow of the water purifier is selected to a suitable configuration. When the amount of water flow is relatively small, about 200 cc or less per minute, as shown in FIG. 4, the pH adjusting means 30 is formed into a pipe 21 together with the metal forming the active hydrogen generation means 20. In this case, if the amount of water flow is relatively high, such as 700 ~ 800cc per minute, as shown in Figure 6, the pH adjusting means 30 is filled on one side of the housing 29 of the active hydrogen generating means 20 The configuration is suitable. And when the amount of water flow is 200cc or more divided by 700cc or less is preferably configured as shown in FIG.

또한, pH조절수단(30)을 이루는 산성광물의 사용량도 통수량에 따라 조절된다. 즉, 원하는 pH와, 통수량 및 활성수소생성수단(20)으로 사용된 금속(22)의 양 등을 고려하여 pH조절수단(30)을 이루는 산성광물의 사용량을 조절한다. In addition, the amount of acidic minerals constituting the pH adjusting means 30 is also adjusted according to the amount of water passed. That is, the amount of acidic minerals constituting the pH adjusting means 30 is adjusted in consideration of the desired pH, the amount of water passed, and the amount of the metal 22 used as the active hydrogen generating means 20.

활성수소생성수단(20)과 pH조절수단(30)이 하나의 유니트로 구성되면, 정수기의 제조가 용이하면서도 유지, 관리도 용이하다. 사용에 의해 활성수소생성수단(20)과 pH조절수단(30)의 효능이 저하된 경우에는 활성수소생성수단(20)과 pH조절수단(30)을 새것으로 교체해 주는데, 이때 하나의 카트리지만 교체하면 되므로 편리하다. 활성수소생성수단(20)과 pH조절수단(30)은 통수량에 따라서 수명이 연장 또는 단축된다.When the active hydrogen generating means 20 and the pH adjusting means 30 is composed of one unit, the water purifier is easy to manufacture and easy to maintain and manage. When the efficacy of the active hydrogen generating means 20 and the pH adjusting means 30 is lowered by use, the active hydrogen generating means 20 and the pH adjusting means 30 are replaced with new ones, in which only one cartridge is replaced. It is convenient to do. The active hydrogen generating means 20 and the pH adjusting means 30 are extended or shortened in life depending on the amount of water passed.

이상과 같은 구성을 가지는 본 발명은 pH조절수단(30)에 의해 수소수의 pH가 조절되기 때문에 음용수 기준에 적합한 pH를 가지면서도 활성수소의 농도가 높은 수소수를 제조할 수 있다. In the present invention having the above configuration, since the pH of the hydrogen water is adjusted by the pH adjusting means 30, it is possible to produce hydrogen water having a high pH of active hydrogen while having a pH suitable for drinking water standards.

Claims (4)

외부로부터 유입되는 물을 정수하는 정수수단(10)과; 상기 정수수단(1))의 후단에 배치되며, 수소보다 이온화경향이 큰 금속(22)이 하우징(29)에 내장되어 이루어져서 상기 정수수단(10)을 통과한 물의 활성수소 농도를 증가시키는 활성수소생성수단(20)과; 상기 활성수소생성수단(20)의 후단에 배치되며, 상기 활성수소생성수단(20)을 통과한 물의 pH를 저하시키는 pH조절수단(30)과; 상기 pH조절수단(30)을 통과한 물이 저장되는 저수탱크(40)와; 상기 저수탱크(40)에 저장된 물을 외부로 배출시키는 배출콕(50);을 포함하여 이루어진 것을 특징으로 하는 수소수 정수기.
Water purifying means (10) for purifying water introduced from the outside; An active hydrogen disposed at the rear end of the water purification means 1 and having a metal 22 having a larger ionization tendency than hydrogen is embedded in the housing 29 to increase the active hydrogen concentration of water passing through the water purification means 10. Generating means 20; A pH adjusting means (30) disposed at a rear end of the active hydrogen generating means (20), the pH adjusting means (30) of reducing the pH of the water passing through the active hydrogen generating means (20); A water storage tank 40 in which water passing through the pH adjusting means 30 is stored; And a discharge cock (50) for discharging water stored in the water storage tank (40) to the outside.
제1항에 있어서, 상기 pH조절수단(30)은 산성광물로 이루어진 것을 특징으로 하는 수소수 정수기.
The hydrogen water purifier according to claim 1, wherein the pH adjusting means (30) is made of an acidic mineral.
제1항에 있어서, 상기 수소보다 이온화경향이 큰 금속(22)은 활성탄 분말에 혼합되어 파이프(21)로 성형되고, 상기 pH조절수단(30)은 산성광물(32)로 이루어져서 상기 파이프(21)에 혼입되거나 또는 파이프(21) 내부에 충전되어 상기 활성수소생성수단(20)과 pH조절수단(30)이 하나의 유니트로 이루어진 것을 특징으로 하는 수소수 정수기.
The method according to claim 1, wherein the metal 22 having a larger ionization tendency than the hydrogen is mixed with the activated carbon powder to be formed into a pipe 21, and the pH adjusting means 30 is made of an acidic mineral 32 to form the pipe 21. ) Or hydrogenated water purifier, characterized in that the active hydrogen generating means 20 and the pH adjusting means 30 consists of one unit.
제2항 또는 제3항에 있어서, 상기 pH조절수단(30)은 산성백토 또는 산성제올라이트, 산성규조토 중에서 적어도 하나 이상으로 선택되는 것을 특징으로 하는 수소수 정수기.The hydrogen water purifier according to claim 2 or 3, wherein the pH adjusting means is selected from at least one of acidic clay, acidic zeolite and acidic diatomaceous earth.
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