IONIC WATER SUPPLY DEVICE

PROBLEM TO BE SOLVED: To prevent corrosion of drain metal tools or the like, by separately providing supply pipes separately supplying acidic water and alkaline water from an electrolytic cell, a delivery pipe to use one of ionic water products, and a discharge pipe to discharge the other ionic wate...

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Hauptverfasser: HORIMOTO MIKIO, OSHIMA HIROSHI
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creator HORIMOTO MIKIO
OSHIMA HIROSHI
description PROBLEM TO BE SOLVED: To prevent corrosion of drain metal tools or the like, by separately providing supply pipes separately supplying acidic water and alkaline water from an electrolytic cell, a delivery pipe to use one of ionic water products, and a discharge pipe to discharge the other ionic water. SOLUTION: Potable water is supplied to an electrolytic cell 51 of an ionic water generator 5 through a solenoid valve 31 of a faucet body 30 and salt water is supplied from a salt water tank 53 to the potable water-supply part of the electrolytic cell 51 by a pump 52. And further, acidic water and alkaline ionic water are generated from the potable water with added salt in the electrolytic cell. The acidic water is sent to a delivery pipe 1 of delivery tools A and the alkaline ionic water is sent to a discharge pipe 2. When one's hand is detected by a sensor equipped in the delivery tools A, the valve 31 is opened and the acidic water is delivered from the delivery pipe 1 into a washbowl 3 and the alkaline ionic water is discharged from the discharge pipe 2 into the washbowl 3. In this way, the acidic water is neutralized by the alkaline water and hence, the drain metal tools of the washbowl 3 are prevented from corrosion.
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SOLUTION: Potable water is supplied to an electrolytic cell 51 of an ionic water generator 5 through a solenoid valve 31 of a faucet body 30 and salt water is supplied from a salt water tank 53 to the potable water-supply part of the electrolytic cell 51 by a pump 52. And further, acidic water and alkaline ionic water are generated from the potable water with added salt in the electrolytic cell. The acidic water is sent to a delivery pipe 1 of delivery tools A and the alkaline ionic water is sent to a discharge pipe 2. When one's hand is detected by a sensor equipped in the delivery tools A, the valve 31 is opened and the acidic water is delivered from the delivery pipe 1 into a washbowl 3 and the alkaline ionic water is discharged from the discharge pipe 2 into the washbowl 3. 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SOLUTION: Potable water is supplied to an electrolytic cell 51 of an ionic water generator 5 through a solenoid valve 31 of a faucet body 30 and salt water is supplied from a salt water tank 53 to the potable water-supply part of the electrolytic cell 51 by a pump 52. And further, acidic water and alkaline ionic water are generated from the potable water with added salt in the electrolytic cell. The acidic water is sent to a delivery pipe 1 of delivery tools A and the alkaline ionic water is sent to a discharge pipe 2. When one's hand is detected by a sensor equipped in the delivery tools A, the valve 31 is opened and the acidic water is delivered from the delivery pipe 1 into a washbowl 3 and the alkaline ionic water is discharged from the discharge pipe 2 into the washbowl 3. In this way, the acidic water is neutralized by the alkaline water and hence, the drain metal tools of the washbowl 3 are prevented from corrosion.</abstract><edition>6</edition><oa>free_for_read</oa></addata></record>
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subjects CHEMISTRY
DOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER
FIXED CONSTRUCTIONS
METALLURGY
SEWERAGE
SINKS
TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
WATER SUPPLY
title IONIC WATER SUPPLY DEVICE
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