Sieber Arne, Baumann Rainer, Fasoulas Stefanos, Krozer Anatol
IMEGO AB, Göteborg, Sweden.
Diving Hyperb Med. 2011 Jun;41(2):90-6.
Recently developed prototypes of zirconium dioxide and NASICON-based micro solid-state electrolyte oxygen (O2) and carbon dioxide (CO2) sensors were tested for their potential suitability in rebreathers. The O2 sensor has a quasi-indefinite lifetime, whilst that of the CO2 sensor is approximately 700 h. This is a preliminary report of a new technological application.
The O2 sensor was tested in a small pressure chamber to a partial pressure of oxygen (PO2) of 405 kPa (4 bar). The CO2 sensor was tested up to 10 kPa CO2. The response times to a step change of pressure were measured, and cross-sensitivity for helium tested using trimix. A rebreather mouthpiece was modified so that breath-by-breath gas recordings could be observed. Power consumption to heat the sensors was measured.
The O2 sensor demonstrated non-linearity, particularly above 101.3 kPa (1 bar) PO2, whereas the output of the CO2 sensor showed an inverse logarithmic relationship. Cross-sensitivity to helium was observed. The mean t90 response times were 90 (SD 10) ms for the O2 sensor, and 100 (SD 10) ms for the CO2 sensor. Breath-by-breath recordings showed slight damping of the CO2 trace due to electronic filtering. Power consumption was 1.5-2 W per sensor.
The fast response times would allow accurate breath-by-breath measurement. Even though the O2 sensor has a non-linear response, measurement is possible using multi-point calibration. Further design is necessary to allow trimix to be used as the diluent. A major disadvantage is the high power consumption needed to heat the sensors to high temperatures.
最近开发的基于二氧化锆和NASICON的微型固态电解质氧气(O₂)和二氧化碳(CO₂)传感器原型,已针对其在再呼吸面罩中的潜在适用性进行了测试。O₂传感器具有近似无限的使用寿命,而CO₂传感器的使用寿命约为700小时。这是一项关于新技术应用的初步报告。
O₂传感器在一个小型压力室中进行测试,氧气分压(PO₂)达到405 kPa(4 bar)。CO₂传感器测试至10 kPa CO₂。测量了压力阶跃变化的响应时间,并使用混合气测试了对氦气的交叉敏感性。对一个再呼吸面罩进行了改装,以便能够观察逐次呼吸的气体记录。测量了加热传感器的功耗。
O₂传感器表现出非线性,特别是在PO₂高于101.3 kPa(1 bar)时,而CO₂传感器的输出呈现出对数反比关系。观察到对氦气的交叉敏感性。O₂传感器的平均t90响应时间为90(标准差10)毫秒,CO₂传感器为100(标准差10)毫秒。逐次呼吸记录显示,由于电子滤波,CO₂曲线略有衰减。每个传感器的功耗为1.5 - 2瓦。
快速的响应时间将允许进行准确的逐次呼吸测量。尽管O₂传感器具有非线性响应,但使用多点校准仍可进行测量。需要进一步设计以允许使用混合气作为稀释剂。一个主要缺点是将传感器加热到高温所需的高功耗。