US2010025234A1PendingUtilityA1

System for producing a mixture of hydrogen and oxygen gases

Assignee: HWANG BOO-SUNGPriority: Jul 14, 2008Filed: Jul 9, 2009Published: Feb 4, 2010
Est. expiryJul 14, 2028(~2 yrs left)· nominal 20-yr term from priority
Inventors:Boo-Sung Hwang
C25B 1/02C25B 15/085C25B 1/04C25B 11/00C25B 9/70Y02E60/36Y02E60/32C25B 15/08B01J 35/39
31
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Claims

Abstract

The system for producing hydrogen and oxygen mixture gases is disclosed, which comprises an electrode unit 20 which is formed of a plurality of negative electrodes 25 and a plurality of positive electrodes 26 and further includes first and second lines 21 and 22 connected with a lower side of the electrolyte storage tank 10, and a third line 23 for supplying the produced hydrogen and oxygen mixture gases to the electrolyte storage tank 10; a mixture gas separation filter 50 which is installed in the interior of the electrolyte storage tank 10 for separating the hydrogen and oxygen mixture gases from the electrolyte; a collection part 60 which is formed in an upper side of the mixture gas separation filter 50 for collecting the hydrogen and oxygen mixture gases which are separated by means of the mixture gas separation filter 50; a first filter unit 70 which stores water for preventing the hydrogen and oxygen mixture gas, which is inputted from the collection part 60, reverse-flow into the collection part 60; and a first gas line 75 for connecting the collection part 60 and the first filter unit 70.

Claims

exact text as granted — not AI-modified
1 . A system for producing hydrogen and oxygen mixture gases, comprising:
 an electrode unit  20  which is formed of a plurality of negative electrodes  25  and a plurality of positive electrodes  26  and further includes first and second lines  21  and  22  connected with a lower side of the electrolyte storage tank  10 , and a third line  23  for supplying the produced hydrogen and oxygen mixture gases to the electrolyte storage tank  10 ;   a mixture gas separation filter  50  which is installed in the interior of the electrolyte storage tank  10  for separating the hydrogen and oxygen mixture gases from the electrolyte;   a collection part  60  which is formed in an upper side of the mixture gas separation filter  50  for collecting the hydrogen and oxygen mixture gases which are separated by means of the mixture gas separation filter  50 ;   a first filter unit  70  which stores water for preventing the hydrogen and oxygen mixture gas, which is inputted from the collection part  60 , reverse-flow into the collection part  60 ; and   a first gas line  75  for connecting the collection part  60  and the first filter unit  70 .   
   
   
       2 . The system of  claim 1 , wherein said third line  23  is positioned in the upper sides of the first and second lines  21  and  22 , and a mixture gas input prevention plate  40  is installed between the first and second lines  21  and  22  and the third line  23  for preventing the hydrogen and oxygen mixture gases, which are inputted through the third line  23 , from being inputted into the first and second lines  21  and  22 . 
   
   
       3 . The system of  claim 1 , further comprising a circulation pump  30  which is connected with the first line  21  or the second line  22  for circulating the electrolyte between the electrolyte storage tank  10  and the electrode unit  20 , and a nano particle formation part  35  which is installed in the firs line  21  or the second line  22  for dividing the particles of the electrolyte, which are transferred to the electrode unit  20  by means of the circulation pump  30 , into small parts while providing the same with fine pressure changes. 
   
   
       4 . The system of  claim 1 , wherein said first filter unit  70  comprises a water storing part  71  connected with the first gas line  75  for storing water therein, a first catalyst storing part  72  installed in an upper side of the water storing part  71  for storing catalyst, and a first Venturi part  73  for connecting the water storing part  71  and the first catalyst storing part  72 . 
   
   
       5 . The system of  claim 4 , further comprising a first foreign substance removing filter  76  which is connected with an end of the first gas line  75  disposed in the interior of the water storing part  71 . 
   
   
       6 . The system of  claim 1 , further comprising a second filter unit  80  which stores a certain organic agent therein for enhancing the purity of hydrogen and oxygen mixture gases inputted from the first filter unit  70  and preventing the same from being reverse-flown into the first filter unit  70 , and a second gas line  85  connected with the first filter unit  70 . 
   
   
       7 . The system of  claim 6 , wherein said second filter unit  80  includes an organic agent storing part  81  which stores a certain organic agent therein and is connected with the second gas line  85 , a second catalyst storing part  82  installed in an upper side of the organic agent storing part  81  for storing catalyst, and a second Venturi part  83  for connecting the organic agent storing part  81  and the second catalyst storing part  82 . 
   
   
       8 . The system of  claim 7 , further comprising a second foreign substance removing filter  86  which is connected with an end of the second gas line  85  disposed in the interior of the organic agent storing part  81 . 
   
   
       9 . The system of  claim 1 , wherein the surfaces of said negative and positive electrodes  25  and  26  are nano-polished for an efficient electrolysis and an easier detachment of the bubbles of produced hydrogen and oxygen gases. 
   
   
       10 . The system of  claim 1 , wherein tourmaline photo catalyst is attached to the surfaces of the negative and positive electrodes  25  and  26 . 
   
   
       11 . The system of  claim 1 , wherein said nano particle formation part  35  includes a body  36  installed in the first line  21 , an impeller  37  installed in the interior of the body  36  formed at an inclined angle for thereby being rotated by means of the transferred electrolyte, and a bearing  38  or a bushing which supports the axis of the impeller  37 , and said impeller  37  is configured as getting wider in the direction of the electrode unit  20 . 
   
   
       12 . The system of  claim 1 , wherein said mixture gas input prevention plate  40  is implemented as tourmaline photo catalyst is formed in a plate material with holes or in a mesh type plate member. 
   
   
       13 . The system of  claim 1 , wherein said mixture gas separation filter  50  is formed in a mesh type and is implemented along with photo catalyst.

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