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Effects of ambient temperature and water vapor on chamber pressure and oxygen level during low atmospheric pressure stunning of poultry

机译:家禽低大气压剧中腔压力和氧气水平环境温度和水蒸气的影响

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The characteristics of the vacuum used in a low atmospheric pressure stunning system to stun (render unconscious) poultry prior to slaughter are described. A vacuum chamber is pumped by a wet screw compressor. The vacuum pressure is reduced from ambient atmospheric pressure to an absolute vacuum pressure of similar to 250 Torr (similar to 33 kPa) in similar to 67 sec with the vacuum gate valve fully open. At similar to 250 Torr, the sliding gate valve is partially closed to reduce effective pumping speed, resulting in a slower rate of decreasing pressure. Ambient temperature affects air density and water vapor pressure and thereby oxygen levels and the time at the minimum total pressure of similar to 160 Torr (similar to 21 kPa) is varied from similar to 120 to similar to 220 sec to ensure an effective stun within the 280 seconds of each cycle. The reduction in total pressure results in a gradual reduction of oxygen partial pressure that was measured by a solid-state electrochemical oxygen sensor. The reduced oxygen pressure leads to hypoxia, which is recognized as a humane method of stunning poultry. The system maintains an oxygen concentration of 5% for at least 2 minutes, which ensures that birds are irreversibly stunned. Calculated pump down (pressure versus time) data match experimental data very closely because the programmable logic controller and the human machine interface enable precise and accurate control. The vacuum system operates in the turbulent viscous flow regime, and is best characterized by absolute vacuum pressure rather than gauge pressure. Neither the presence of broiler chickens nor different fore-line pipe designs of four parallel commercial systems affected the pressure-time data. Water in wet air always reduces the oxygen concentrations to a value lower than in dry air. The partial pressure of water and oxygen were found to depend on the pump down parameters due to the formation of fog in the chamber and desorption of water from the birds and the walls of the vacuum chamber.
机译:描述了低大气压令人惊叹的系统中使用的真空的特点,以在屠宰之前击晕(呈现无意识)家禽。真空室通过湿螺杆压缩机泵送。真空压力从环境大气压降低到绝对真空压力与250托(类似于33kPa)类似于67秒,真空闸阀完全打开。在类似于250托,滑动闸阀部分闭合以降低有效的泵送速度,从而导致压力降低速度较慢。环境温度影响空气密度和水蒸汽压力,从而从类似于120秒的120秒改变为220秒的氧气水平和相似的最小总压力的氧气水平和最小总压力的时间。每个周期的280秒。总压力的降低导致通过固态电化学氧传感器测量的氧分压的逐渐降低。降低的氧气压力导致缺氧,其被认为是令人惊叹的家禽的人道方法。该系统保持氧浓度的氧浓度。 5%至少2分钟,确保鸟类不可逆转地震惊。计算泵向下(压力与时间)数据匹配实验数据,因为可编程逻辑控制器和人机界面使得能够精确和准确。真空系统在湍流粘性流动状态下运行,最佳地具有绝对真空压力而不是测量压力。肉鸡鸡的存在既不存在四个并行商业系统的不同前线管道设计影响了压力时间数据。湿空气中的水总是将氧气浓度降低到低于干燥空气的值。发现水和氧气的分压依赖于泵向下参数,因为腔室中的雾形成和从鸟类和真空室的壁的吸附。

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