Method for producing hydrogen by hydroboron and portable hydrogen generator
A technology of borohydride and borohydrogenation, which is applied in the production of hydrogen, etc., can solve the problems of slow hydrolysis and self-depletion of hydrogen, potential safety hazards, difficulty in miniaturization and safety of hydrogen production equipment, and achieve omission of safety precautions. Parts, reaction Completely and completely eliminate the effect of product agglomeration
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Embodiment 1
[0031] Embodiment 1: with 1.0g NaBH 4 According to the B atom molar ratio is 1:1 and H 3 BO 3 Mix, add 100 microliters of water each time at normal temperature and pressure until 1500 microliters of water is added, a total of about 1.2 liters of hydrogen is generated, and the reaction is complete. Each reaction was completed within 3-7 seconds after each addition of 100 microliters of water. The results show that the reaction process can be controlled by adding water ( figure 2 ).
[0032] The same reaction starting material, when all 1.5ml of water is added at one time, the reaction ends within 10 seconds, and the measured maximum instantaneous hydrogen desorption rate> 3 liters / second.
[0033] When the NaBH 4 and H 3 BO 3 After ball milling to about 100 microns and mixing, the reaction speed is faster after adding water. After adding 100 microliters of water each time, the reaction is completed within 3 seconds, and the average hydrogen production rate is 33.3ml / s. ...
Embodiment 2
[0036] Embodiment 2: 1.0g NaBH 4 With metaboric acid (boric acid dehydration treatment at 120°C) mixture (B atom molar ratio is 1:1), after adding 1.5g of water at normal temperature and pressure, the reaction process is similar to Example 1, no significant difference. The reaction product is also Na 2 B 4 o 7 ·5H 2 O. The reaction equation is as follows:
[0037] 2HBO 2 (s)+2NaBH 4 (s)+8H 2 O(l)→Na 2 B 4 o 7 ·5H 2 O(s)+8H 2 ↑(g)
Embodiment 3
[0038] Embodiment 3: the NaBH 4 Mix with metaboric acid (or boric acid) powder at a molar ratio of B atoms of 1:0.7, add water under normal temperature and pressure, the experimental phenomenon is similar to Example 1, and the reaction speed has no obvious change.
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