New PDF release: Progress in Petroleum Technology

Petroleum

By Gould R.F. (ed.)

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5 kPa (≈5 cm H2O) below atmospheric pressure. Inspiratory flow: All gas-powered resuscitators should be capable of delivering 40 L/min ± 10% inspiratory flow against a back pressure of 2 kPa (≈20 cm H2O) when tested by the method described in relevant standards. Note: Devices with fixed flows should be set to this value. Devices with operatoradjustable flows should include this value in their range of adjustment. To minimize the risk of gastric distension, 40 l/min is considered to be the maximum flow that should be used when resuscitating with a mask.

The airflow is regulated by a flow-control valve from a source of compressed air. The most extreme condition requiring respiratory equipment is that in which rescue and emergency repair work must be done in atmospheres extremely corrosive to the skin and mucous membranes, in addition to being actually poisonous and immediately hazardous to life. Where high ambient temperature may be encountered or where body heat may build up, the hose line supplying the air should be connected to the suit itself, as well as to the helmet, and personal airconditioning devices utilizing a vortex tube should be used.

Devices with operatoradjustable flows should include this value in their range of adjustment. To minimize the risk of gastric distension, 40 l/min is considered to be the maximum flow that should be used when resuscitating with a mask. This is in accordance with the recommendations of the American Heart Association (AHA Standards for CPR and ECC), and these recommendations are generally accepted worldwide. Higher flows may be used with intubated patients because of the decreased risk of gastric distension.

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Progress in Petroleum Technology by Gould R.F. (ed.)


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