H

Hydreliox

Mixture

Hydreliox or helihydrox is a breathing gas mixture of hydrogen, helium, and oxygen. It is used primarily for research and scientific deep diving, usually below 130 metres (430 ft). Below this depth, extended breathing of heliox gas mixtures may cause high pressure nervous syndrome (HPNS).

Nº Q904352 ★

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Hydreliox

Mixture

Hydreliox or helihydrox is a breathing gas mixture of hydrogen, helium, and oxygen. It is used primarily for research and scientific deep diving, usually below 130 metres (430 ft). Below this depth, extended breathing of heliox gas mixtures may cause high pressure nervous syndrome (HPNS).

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From Wikipedia

Hydreliox or helihydrox is a breathing gas mixture of hydrogen, helium, and oxygen. It is used primarily for research and scientific deep diving, usually below 130 metres (430 ft). Below this depth, extended breathing of heliox gas mixtures may cause high pressure nervous syndrome (HPNS). Two gas mixtures exist that attempt to combat this problem: trimix and hydreliox. Like trimix, hydreliox contains helium and oxygen and a third gas to counteract HPNS. The third gas in trimix is nitrogen and the third gas in hydreliox is hydrogen. Because hydrogen is the lightest gas, it is easier to breathe than nitrogen under high pressure. To avoid the risk of explosion, as a rule of thumb hydrogen is only considered for use in breathing mixtures if the proportion of oxygen in the mixture is less than 5%. However, the pressure during the dive must be such that the partial pressure of 5% oxygen is sufficient to sustain the diver. (The flammability of the mixture also depends to some degree on the pressure). Hydrogen can reduce the effects of high pressure nervous syndrome (HPNS), reduce work of breathing, and may be a partial alternative to helium. Use of hydrogen can make it possible to dive deeper, descend faster, and stay at depth longer. Lower work of breathing allows higher levels of exertion by the diver. Hydrogen is limited to below 4% in normoxic environments or oxygen content is limited to below 6% in high-hydrogen environments.

Text: Wikipédia, CC BY-SA 4.0. ·

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